WO2014131355A1 - 一种drx定时器计数的方法、***和设备 - Google Patents

一种drx定时器计数的方法、***和设备 Download PDF

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Publication number
WO2014131355A1
WO2014131355A1 PCT/CN2014/072591 CN2014072591W WO2014131355A1 WO 2014131355 A1 WO2014131355 A1 WO 2014131355A1 CN 2014072591 W CN2014072591 W CN 2014072591W WO 2014131355 A1 WO2014131355 A1 WO 2014131355A1
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WIPO (PCT)
Prior art keywords
information
tdd configuration
subframe
drx timer
user equipment
Prior art date
Application number
PCT/CN2014/072591
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English (en)
French (fr)
Inventor
付喆
许芳丽
赵亚利
Original Assignee
电信科学技术研究院
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Publication of WO2014131355A1 publication Critical patent/WO2014131355A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0212Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave
    • H04W52/0216Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave using a pre-established activity schedule, e.g. traffic indication frame
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of wireless communication technologies, and in particular, to a method, system, and device for counting DRX timers.
  • Background of the Invention With the deployment of a home base station, a micro cell, etc., a conventional homogeneous network of only a macro cell will gradually evolve into a heterogeneous network in which multiple types of cells coexist.
  • a macro base station (Marco e B) can provide basic coverage
  • a low-power local node (Local eNB/Small Cell) provides small coverage within the coverage of the macro base station, such as shown in FIG. 1, the low-power local node may be a relay node (RN), a home base station (He B ), a pico cell, or the like.
  • RN relay node
  • He B home base station
  • pico cell or the like.
  • LTE-A Long Term Evolution-Advanced
  • LTE-A systems require good compatibility with Long Term Evolution (LTE) systems.
  • CA Carrier Aggregation
  • the carrier aggregation technology is that the user equipment can work simultaneously on multiple cells, and one cell includes a pair of uplink (UL) / downlink (DL) component carriers (CC).
  • each component carrier may be continuous or non-contiguous, and the bandwidth between component carriers may be the same or different.
  • the maximum bandwidth limit of each component carrier is 20 MHz. At present, it is generally considered that the maximum number of cells that a user equipment can aggregate is five.
  • the TDD UL/DL configuration mode of the LTE R8 is static or semi-static.
  • the TDD UL/DL configuration cannot be flexibly adjusted according to service characteristics. Therefore, it is not conducive to improving system resource utilization and better guaranteeing the service transmission of service transmission.
  • QoS Quality of Service
  • the R8 time division duplex (TDD) configuration is notified to the user equipment (UE) through the System Information Block (SIB) 1 , that is, the eNB notifies the TDD configuration (IE: tdd-Config) by broadcast through SystemlnformationBlockTypel. Give the UE.
  • SIB System Information Block
  • the LTE Rll LTE TDD UL/DL Interference Management and Traffic Adaptation (elMTA) project introduces a dynamic TDD UL/DL configuration change mechanism, which will be TDD UL.
  • the frequency of the /DL configuration change is shortened from a thousand days to a thousand milliseconds.
  • LTE introduces a Discontinuous Reception (DRX) mechanism.
  • the DRX mechanism divides the RRC_CO NECTED state of the UE into two different states of activation and silence.
  • the UE When in the active state, the UE needs to continuously monitor and blindly detect the Physical Downlink Control Channel (PDCCH), and the UE can report the Channel Quality Indicator (CQI)/precoding matrix indication (Pre- Coding Matrix Indicator, PMI) I Rank information (Rank Indication, RI) and other information.
  • CQI Channel Quality Indicator
  • PMI Pre- Coding Matrix Indicator
  • I Rank information Rank Indication, RI
  • the UE does not need to monitor the physical downlink control channel (PDCCH) control channel, and does not upload information such as CQI/PMI/RI, thereby achieving the purpose of power saving by the user equipment.
  • the two states are divided in time based on the DRX cycle, as shown in Figure 2.
  • a DRX cycle consists of an "on” state duration and "off, state duration.
  • the UE is active and needs to continuously monitor the PDCCH channel; during "off, state, UE There is an opportunity to be silent, but whether it is in a silent state is determined based on the state of other timers.
  • the UE may only obtain one set of TDD configurations through broadcast, but in the dynamic TDD, the UE may obtain two sets of TDD configurations (one set is acquired through broadcast, and one set is obtained through dedicated signaling or broadcast). For multiple sets of TDD configurations, there is no alternative TDD configuration for DRX timer counting.
  • the present invention provides a method, system and device for counting DRX timers for counting DRX timers in a dynamic TDD scenario.
  • the network side device determines information for the DRX timer count that needs to be notified to the user equipment according to the TDD configuration change status;
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information for counting the DRX timer.
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment determines the PDCCH subframe according to the information for counting the DRX timer, if the multiple sets of TDD configurations can be acquired.
  • the DRX timer is counted, so that the DRX timer is counted in the dynamic TDD scenario, and the network performance is improved.
  • the first specific implementation manner is: the network side device determines information that is to be notified to the user equipment for counting by the DRX timer, and includes:
  • the network side device uses the TDD configuration information notified in the system information block SIB 1 as the DRX timing Information of the device count;
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information used for counting the DRX timer, including:
  • the network side device sends a paging message including the non-TDD configuration change indication information, the SIB1 including the TDD configuration information that needs to be changed, and the location information of the multimedia broadcast multicast service single frequency network MBSFN subframe to the user equipment by broadcast. And determining, by the user equipment, the physical downlink control channel PDCCH in other subframes except the MBSFN subframe according to the TDD configuration information indicated in the received SIB1 corresponding to the paging message that includes the non-TDD configuration change indication information. a subframe, and counting the DRX timer according to the determined PDCCH subframe.
  • the network side device determines the information for the DRX timer to be notified to the user equipment, and includes: the network side device uses the TDD configuration information notified in the system information block SIB1 as the information for counting the DRX timer. ;
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information used for counting the DRX timer, including:
  • the network side device sends a paging message including non-TDD configuration change indication information, and an SIB 1 including TDD configuration information that needs to be changed, to the user equipment by broadcast, so that the user equipment changes only according to the non-TDD configuration included.
  • the TDD configuration information indicated in the received SIB1 corresponding to the paging message indicating the information determines the physical downlink control channel PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the second specific implementation manner is: the network side device determines information that is to be notified to the user equipment for counting by the DRX timer, and includes:
  • the network side device uses TDD configuration information notified in the system information block SIB1 and location information of a specific subframe for downlink transmission, or TDD configuration information MBSFN subframe position information notified in SIB1 as the DRX Timer count information;
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information used for counting the DRX timer, including:
  • the network side device includes a paging message including non-TDD configuration change indication information, SIB1 including the information for DRX timer counting, and location information of a specific subframe for downlink transmission, or may include non- a paging message of the TDD configuration change indication information, the SIB1 and the MBSFN subframe position information including the information for counting the DRX timer, are broadcasted to the user equipment, so that the user equipment only includes non-TDD Configuring the TDD configuration information of the SIB 1 corresponding to the paging message corresponding to the change indication information and the location information of the specific subframe for the downlink transmission, or only according to the paging message including the non-TDD configuration change indication information
  • the TDD configuration information and the MBSFN subframe position information to be changed in the SIB1 determine the PDCCH subframe, and count the DRX timer according to the determined PDCCH subframe.
  • the third specific implementation manner is: the network side device determines information that is to be notified to the user equipment for counting the
  • the network side device uses the changed TDD configuration information as the information for counting the DRX timer; the network side device notifies the user equipment of the information for counting the DRX timer, so that the The user equipment counts the DRX timer according to the information used for counting the DRX timer, including:
  • the network side device sends the changed TDD configuration information to the user equipment by using broadcast or dedicated signaling, so that the user equipment determines the PDCCH subframe according to the received TDD configuration information that needs to be changed, and according to the determined The PDCCH subframe counts the DRX timer.
  • the network side device notifying the user equipment of the information for counting the DRX timer according to the manner in which the network side device notifies the user equipment of the information for counting the DRX timer includes:
  • the network side device sends a paging message including non-TDD configuration change indication information and a SIB1 including TDD configuration information that needs to be changed to the user equipment; or
  • the network side device Transmitting, by the network side device, the MIB that includes the TDD configuration information that needs to be changed to the user equipment; or the network side device sending the paging message that includes the TDD configuration change indication information and the SIB1 that includes the TDD configuration information that needs to be changed. Giving the user equipment; or
  • the network side device sends a paging message including TDD configuration change indication information and a specific SIB including TDD configuration information that needs to be changed to the user equipment; or
  • the network side device sends the TDD configuration information that needs to be changed to the user equipment by using dedicated signaling, such as PDCCH signaling.
  • the fourth specific implementation manner is: the network side device notifying the user equipment of the information for counting the DRX timer, so that the user equipment performs DRX according to the information used for counting the DRX timer.
  • the timer count can further include:
  • the network side device sends the location information of the MBSFN subframe to the user equipment, so that the user equipment determines the PDCCH subframe in other subframes except the MBSFN subframe according to the TDD configuration information that needs to be changed, and Counting the DRX timer according to the determined PDCCH subframe; or
  • the location information determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the fifth specific implementation manner is: the network side device determines information that is to be notified to the user equipment for counting by the DRX timer, and includes:
  • the network side device uses location information of a specific subframe for downlink transmission as the information for counting by the DRX timer;
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the The user equipment counts the DRX timer according to the information used for counting the DRX timer, including:
  • the network side device determines information that is to be notified to the user equipment for counting by the DRX timer, and includes:
  • the network side device uses the cell information of the cell that supports the dynamic TDD configuration as the information for counting the DRX timer, so that the user equipment determines, according to the specific TDD configuration, after accessing the cell supporting the dynamic TDD configuration.
  • the network side device determines information that is to be notified to the user equipment for counting by the DRX timer, and includes:
  • the network side device is configured to notify the TDD that the indication information that needs to be changed is used as information for counting the DRX timer, so that the user equipment, after receiving the indication information for notifying that the TDD configuration needs to be changed, according to the specific
  • the TDD configuration determines a PDCCH subframe and counts the DRX timer based on the determined PDCCH subframe.
  • the network side device further includes:
  • the network side device After the user equipment determines that the TDD configuration needs to be changed according to the information for counting the DRX timer, the network side device performs the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1. Processing, after the subframe n+k, according to the TDD configuration notified by the legacy mode or the TDD configuration after the change or the specific TDD configuration;
  • the subframe n is a subframe carrying the information for counting the DRX timer, and k is a positive integer.
  • the user equipment receives information for the DRX timer count from the network side device, wherein the information for the DRX timer count is determined by the network side device according to the TDD configuration change condition;
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer.
  • the user equipment determines the PDCCH subframe according to the information for counting the DRX timer, and counts the DRX timer according to the information about the DRX timer count, thereby implementing the DRX timer counting in the dynamic TDD scenario. Network performance.
  • the information used for counting the DRX timer is the TDD configuration information notified in the system information block SIB1;
  • the user equipment receives information about a DRX timer count from a network side device, including:
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, including: the user equipment only according to the TDD indicated in the received SIB1 corresponding to the paging message that includes the non-TDD configuration change indication information.
  • the configuration information determines a PDCCH subframe in other subframes than the MBSFN subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the information for the DRX timer is the TDD configuration information that is notified in the system information block SIB1.
  • the user equipment receives the information for the DRX timer count from the network side device, including:
  • the user equipment receives, by broadcast, a paging message including non-TDD configuration change indication information, and SIB1 including TDD configuration information that needs to be changed;
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, including: the user equipment only according to the TDD indicated in the received SIB1 corresponding to the paging message that includes the non-TDD configuration change indication information.
  • the configuration information determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the information used for the DRX timer counting is TDD configuration information in SIB1 and location information of a specific subframe used for downlink transmission, or TDD configuration information and MBSFN in SIB1.
  • the user equipment receives information about a DRX timer count from a network side device, including:
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, and the method includes: the user equipment only needs to change the TDD configuration in the SIB1 corresponding to the paging message that includes the non-TDD configuration change indication information.
  • the TDD configuration information in the SIB1 corresponding to the paging message of the TDD configuration change indication information needs to be changed.
  • the MBSFN subframe position information determines the PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is TDD configuration information that needs to be changed;
  • the user equipment is configured to count the DRX timer according to the information used for counting the DRX timer, including: the user equipment determines, according to the received TDD configuration information that needs to be changed, a PDCCH subframe, and according to the determined PDCCH subframe pair. DRX timer count.
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, and includes:
  • the user equipment #> needs to change in the SIB1 corresponding to the paging message including the non-TDD configuration change indication information.
  • the more TDD configuration information determines the PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe; or
  • the PDCCH subframe Determining, by the user equipment, the PDCCH subframe according to the TDD configuration information that needs to be changed in the SIB1 corresponding to the paging message that includes the TDD configuration change indication information, and counting the DRX timer according to the determined PDCCH subframe; or the user equipment according to the Determining, by the TDD configuration information in the specific SIB corresponding to the paging message including the TDD configuration change indication information, the PDCCH subframe, and counting the DRX timer according to the determined PDCCH subframe; or
  • the network side device sends the TDD configuration information that needs to be changed to the user equipment by using dedicated signaling, such as PDCCH signaling.
  • the user equipment may further include:
  • the user equipment receives location information of an MBSFN subframe from a network side device or location information of a specific subframe for downlink transmission;
  • the user equipment counts the DRX timer according to the information for counting the DRX timer, including: if the user equipment receives the location information of the MBSFN subframe, the user equipment changes the TDD configuration information according to the need to remove the MB. Determining a PDCCH subframe in other subframes other than the SFN subframe, and counting the DRX timer according to the determined PDCCH subframe;
  • the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed and the location information of the specific subframe used for the downlink transmission, And counting the DRX timer according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is location information of a specific subframe used for downlink transmission
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, including: the user equipment determines a PDCCH subframe according to location information of a specific subframe used for downlink transmission, and according to the determined The PDCCH subframe counts the DRX timer.
  • the information used for counting the DRX timer is cell information of a cell that supports dynamic TDD configuration
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, including: after the user equipment accesses the cell supporting the dynamic TDD configuration, determining the PDCCH subframe according to the specific TDD configuration, and according to the The determined PDCCH subframe counts the DRX timer.
  • the information used for counting the DRX timer is used to notify the TDD configuration. Instructions to be changed;
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, and the user equipment determines the PDCCH subframe according to the specific TDD configuration after receiving the indication information for notifying that the TDD configuration needs to be changed. And counting the DRX timer according to the determined PDCCH subframe.
  • the user equipment counts the DRX timer according to the information used for counting the DRX timer, including:
  • the subframe n is a subframe carrying the information for counting the DRX timer, and k is a positive integer.
  • a determining module configured to determine, according to the TDD configuration change, information for the DRX timer count that needs to be notified to the user equipment;
  • a notification module configured to notify the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information used for counting the DRX timer.
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment determines the PDCCH subframe according to the information for counting the DRX timer, if the multiple sets of TDD configurations can be acquired.
  • the DRX timer is counted, so that the DRX timer is counted in the dynamic TDD scenario, and the network performance is improved.
  • the determining module is specifically configured to:
  • the TDD configuration information notified in the system information block SIB1 is used as the information for counting the DRX timer; the notification module is specifically configured to:
  • the TDD configuration information indicated in the received SIB1 corresponding to the paging message of the change indication information determines a PDCCH subframe PDCCH-subframe in other subframes except the MBSFN subframe, and the DRX timer is determined according to the determined PDCCH subframe. count.
  • the determining module is specifically configured to:
  • the TDD configuration information notified in the system information block SIB1 is used as the information for counting the DRX timer; the notification module is specifically configured to: Transmitting, by the broadcast, the paging message including the non-TDD configuration change indication information, the SIB1 including the TDD configuration information that needs to be changed, to the user equipment, so that the user equipment only according to the paging message including the non-TDD configuration change indication information
  • the PDCCH subframe is determined according to the TDD configuration information indicated in the corresponding received SIB 1, and the DRX timer is counted according to the determined PDCCH subframe.
  • the determining module is specifically configured to:
  • the TDD configuration information notified in the system information block SIB1 and the location information of the specific subframe for downlink transmission, or the TDD configuration information and the MBSFN subframe position information notified in the system information block SIB1 are used as the DRX timing.
  • the notification module is specifically configured to:
  • a paging message including non-TDD configuration change indication information SIB1 including the information for DRX timer counting, and location information of a specific subframe for downlink transmission, or will include non-TDD configuration change indication information a paging message
  • the SIB1 and the MBSFN subframe location information including the information for counting the DRX timer are broadcasted to the user equipment, so that the user equipment is only based on the locating information including the non-TDD configuration change indication information.
  • the TDD configuration information to be changed in the SIB1 corresponding to the call message and the location information of the specific subframe used for the downlink transmission, or the change in the SIB1 corresponding to the paging message including the non-TDD configuration change indication information only needs to be changed.
  • the TDD configuration information and the MBSFN subframe position information determine a PDCCH subframe, and count the DRX timer according to the determined PDCCH subframe.
  • the third specific implementation manner is as follows:
  • the determining module is specifically configured to:
  • the TDD configuration information that needs to be changed is used as the information for counting the DRX timer;
  • the notification module is specifically configured to:
  • the notification module is specifically configured to: according to different manners in which the network side device notifies the user equipment of the information for counting the DRX timers:
  • dedicated signaling such as PDCCH signaling.
  • the fourth specific implementation manner may further be: the notification module is further configured to:
  • the TDD configuration information determines a PDCCH subframe in other subframes than the MBSFN subframe, and counts the DRX timer according to the determined PDCCH subframe; or sends location information of a specific subframe for downlink transmission to And the user equipment, so that the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed and the location information of the specific subframe used for the downlink transmission, and counts the DRX timer according to the determined PDCCH subframe.
  • the fifth specific implementation manner is: the determining module is specifically configured to:
  • the location information of the specific subframe used for the downlink transmission is used as the information for counting the DRX timer; the notification module is specifically configured to:
  • the determining module is specifically configured to:
  • the cell information of the cell supporting the dynamic TDD configuration is used as the information for counting the DRX timer, so that the user equipment determines the PDCCH subframe according to the specific TDD configuration after accessing the cell supporting the dynamic TDD configuration, and determines according to the specific TDD configuration.
  • the PDCCH subframe counts the DRX timer.
  • the determining module is specifically configured to:
  • the indication information for notifying that the TDD configuration needs to be changed is used as information for counting the DRX timer, so that the user equipment determines the PDCCH subframe according to the specific TDD configuration after receiving the indication information for notifying that the TDD configuration needs to be changed. And counting the DRX timer according to the determined PDCCH subframe.
  • the determining module is further configured to:
  • the processing is performed in the subframe n to the subframe n+k-1 according to the TDD configuration or the specific TDD configuration before the change, in the subframe.
  • n+k the processing is performed according to the TDD configuration or the modified TDD configuration or the specific TDD configuration notified by the legacy mode.
  • the subframe n is a subframe carrying the information for counting the DRX timer, and k is a positive integer.
  • a receiving module configured to receive information from a network side device for counting a DRX timer, where the
  • the information of the DRX timer is determined by the network side device according to the TDD configuration change situation;
  • a counting module configured to count the DRX timer according to the information used for counting the DRX timer.
  • the user equipment determines the PDCCH subframe according to the information for counting the DRX timer, and counts the DRX timer according to the information about the DRX timer count, thereby implementing the DRX timer counting in the dynamic TDD scenario. Network performance.
  • the information used for counting the DRX timer is the TDD configuration information notified in the system information block SIB1;
  • the receiving module is specifically configured to: Receiving, by broadcast, a paging message including non-TDD configuration change indication information, location information of SIB1 and MBSFN subframes including TDD configuration information that needs to be changed;
  • the counting module is specifically configured to:
  • Determining a PDCCH subframe in other subframes other than the MBSFN subframe according to only the TDD configuration information indicated in the received SIB1 corresponding to the paging message including the non-TDD configuration change indication information, and according to the determined PDCCH subframe pair DRX timer count.
  • the information for counting the DRX timer is the TDD configuration information notified in the system information block SIB1; the receiving module is specifically configured to:
  • the counting module is specifically configured to:
  • the PDCCH subframe is determined only according to the TDD configuration information indicated in the received SIB1 corresponding to the paging message including the non-TDD configuration change indication information, and the DRX timer is counted according to the determined PDCCH subframe.
  • the information used for the DRX timer counting is TDD configuration information notified in the system information block SIB1 and location information of a specific subframe used for downlink transmission, or notified in SIB1.
  • the receiving module is specifically configured to:
  • a paging message including non-TDD configuration change indication information SIB1 including information for DRX timer counting, and location information of a specific subframe for downlink transmission, or receiving non-TDD configuration changes by broadcast reception a paging message indicating information, SIB1 and MBSFN subframe position information including information for DRX timer counting;
  • the counting module is specifically configured to:
  • the TDD configuration information and the MBSFN subframe position information in the SIB1 corresponding to the paging message corresponding to the information indicating the PDCCH subframe are determined, and the DRX timer is counted according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is TDD configuration information that needs to be changed;
  • the counting module is specifically configured to:
  • the PDCCH subframe is determined according to the received TDD configuration information that needs to be changed, and the DRX timer is counted according to the determined PDCCH subframe.
  • the counting module is specifically configured to: Determining a PDCCH subframe according to the TDD configuration information that needs to be changed in the SIB 1 corresponding to the paging message including the non-TDD configuration change indication information, and counting the DRX timer according to the determined PDCCH subframe; or according to the received MIB
  • the TDD configuration information that needs to be changed determines the PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe; or determines the PDCCH according to the TDD configuration information that needs to be changed in the SIB 1 corresponding to the paging message that includes the TDD configuration change indication information.
  • Subframe and counting the DRX timer according to the determined PDCCH subframe; or determining the PDCCH subframe according to the TDD configuration information that needs to be changed in the specific SIB corresponding to the paging message that includes the TDD configuration change indication information, and according to the determined PDCCH
  • the subframe counts the DRX timer to determine the PDCCH subframe according to the dedicated signaling including the TDD configuration information that needs to be changed, and counts the DRX timer according to the determined PDCCH subframe.
  • the receiving module is further configured to:
  • the counting module is specifically configured to:
  • the PDCCH subframe is determined in other subframes except the MBSFN subframe according to the TDD configuration information that needs to be changed, and the DRX timer is counted according to the determined PDCCH subframe;
  • the location information of the specific subframe of the downlink transmission determining the PDCCH subframe according to the TDD configuration information that needs to be changed and the location information of the specific subframe used for the downlink transmission, and counting the DRX timer according to the determined PDCCH subframe .
  • the information used for counting the DRX timer is location information of a specific subframe used for downlink transmission
  • the counting module is specifically configured to:
  • the PDCCH subframe is determined according to location information of a specific subframe used for downlink transmission, and the DRX timer is counted according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is cell information of a cell that supports dynamic TDD configuration
  • the counting module is specifically configured to:
  • the PDCCH subframe is determined according to the specific TDD configuration, and the DRX timer is counted according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is indication information used to notify the TDD configuration that the change is required;
  • the counting module is specifically configured to:
  • the PDCCH subframe is determined according to the specific TDD configuration, and the DRX timer is counted according to the determined PDCCH subframe. Further, the counting module is further configured to:
  • the frame counts the DRX timer, determines the PDCCH subframe according to the TDD configuration or the modified TDD configuration or the specific TDD configuration notified by the legacy mode after the subframe n+k, and counts the DRX timer according to the determined PDCCH subframe;
  • the subframe n is a subframe carrying the information for counting the DRX timer, and k is a positive integer.
  • a network side device configured to determine, according to a TDD configuration change situation, information for a DRX timer count that needs to be notified to the user equipment; notify the user equipment of the information for counting the DRX timer, so that the user The device counts the DRX timer according to the information used for counting the DRX timer;
  • a user equipment configured to receive information from the network side device for counting the DRX timer; and count the DRX timer according to the information used for counting the DRX timer.
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment can use the information for counting the DRX timer when the TDD configuration can be acquired.
  • the PDCCH subframe is determined, and the DRX timer is counted, so that the DRX timer is counted in the dynamic TDD scenario, and the network performance is improved.
  • FIG. 2 is a schematic diagram of a DRX cycle in the background art
  • FIG. 3 is a schematic structural diagram of a system for counting a DRX timer according to an embodiment of the present invention
  • FIG. 4 is a schematic diagram of a network side device in a system for counting a DRX timer according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of a user equipment in a system for counting a DRX timer according to an embodiment of the present invention
  • FIG. 6 is a schematic flow chart of a method for a network side device to notify a user equipment to perform DRX timer counting according to an embodiment of the present invention
  • FIG. 7 is a schematic flowchart of a method for a user equipment to perform a DRX timer counting according to an embodiment of the present invention
  • FIG. 8 is a second schematic diagram of a network side device in a system for counting a DRX timer according to an embodiment of the present invention.
  • FIG. 9 is a second schematic diagram of user equipment in a system for counting DRX timers according to an embodiment of the present invention.
  • the network side device notifies the user equipment of the information for counting the DRX timer, so that the user sets The DRX timer is counted according to the information used for counting the DRX timer, thereby implementing DRX timer counting in the dynamic TDD scenario, thereby improving network performance.
  • the system for counting DRX timers in the embodiment of the present invention includes: a network side device 10 and a user equipment.
  • the network side device 10 is configured to determine, according to the TDD configuration change situation, information that is to be notified to the user equipment for counting the DRX timer; and notify the user equipment of the information used for counting the DRX timer;
  • the user equipment 20 is configured to receive information about a DRX timer count from the network side device, determine a PDCCH subframe according to the information used for the DRX timer count, and count the DRX timer according to the determined PDCCH subframe.
  • the network side device 10 determines the information for the DRX timer counting that needs to be notified to the user equipment, which are separately introduced below.
  • Manner 1 The network side device uses the TDD configuration information notified in the SIB1 as the information for counting the DRX timer; and sends the paging message including the non-TDD configuration change indication information, and the SIB1 including the TDD configuration information that needs to be changed to the broadcast to the SIB1.
  • User equipment uses the TDD configuration information notified in the SIB1 as the information for counting the DRX timer; and sends the paging message including the non-TDD configuration change indication information, and the SIB1 including the TDD configuration information that needs to be changed to the broadcast to the SIB1.
  • the user equipment receives, by broadcast, a paging message including non-TDD configuration change indication information, SIB1 including TDD configuration information that needs to be changed, and only indicates according to the received SIB 1 corresponding to the paging message including the non-TDD configuration change indication information.
  • the TDD configuration information (the TDD configuration notified in the legacy TDD configuration notification mode) determines a PDCCH subframe (PDCCH-subframe), and counts the DRX timer according to the determined PDCCH subframe.
  • SIB is used to contain actual system information.
  • the method 1 further informs the UE of the location information of the Multimedia Broadcast multicast service Single Frequency Network (MBSFN) subframe, and the UE considers the subframe other than the MBSFN in the TDD configuration notified in the legacy TDD notification mode.
  • the configuration determines the PDCCH-subframe, and the length of the DRX timer is counted.
  • the user equipment learns the cell TDD configuration (legacy TDD configuration) through SIB1, which is known by the read system broadcast when the user equipment first accesses the network.
  • the cell home base station or other base station (such as the macro base station) broadcasts the TDD that the corresponding user equipment needs to change.
  • the cell TDD configuration of the so-called Per UE refers to a TDD configuration that is specifically configured by a certain UE and is different from the cell-level TDD configuration. The UE works by using a UL/DL subframe configuration specifically configured for it.
  • Broadcast mode 1 Notify the UE TDD configuration change by means of Paging + SIB1 (paging message including non-TDD configuration change indication information + SIB1 containing TDD configuration information to be changed);
  • Broadcast mode 2 The mode of the TDD configuration carried in the notification of the Master Information Block (MIB), notifying the UE of the TDD change;
  • MIB Master Information Block
  • Broadcast mode 3 Notify the UE TDD change by Paging (TDD Configuration Change Indication) + SIB1 (similar to Earthquake and Tsunami Warning System (ETWS));
  • Broadcast mode 4 The UE TDD change is notified by means of Paging (TDD configuration change indication) + new SIB (similar to ETWS).
  • new SIB is a new SIB, which is different from the existing SIB.
  • Existing SIBs can be found in the 3GPP TS 36.331 protocol.
  • the UE When the network side device notifies the UE TDD configuration change by using a dedicated signaling format (such as a PDCCH subframe), the UE may be notified of a set of cell-level TDD configurations, or may be a set of UE-level TDD configurations.
  • a dedicated signaling format such as a PDCCH subframe
  • the user equipment learns, by broadcast, the legacy LDD configuration of the cell (obtained according to the R8 mechanism, that is, the broadcast mode 1) and the MBSFN subframe position (such as treating the MBSFN subframe as a blank subframe), and removes the subframe configuration except the MBSFN according to the TDD configuration.
  • the UE If the subsequent e B informs the UE of the TDD configuration change by using the broadcast mode 2 ⁇ 3 ⁇ 4 or the dedicated signaling mode, the UE always determines the PDCCH according to the subframe configuration except the MBSFN in the legacy TDD configuration. -subframe, performs DRX Timer counting;
  • the user equipment learns the cell legacy TDD configuration by broadcast (according to the R8 mechanism, that is, the broadcast mode 1), and determines the PDCCH-subframe according to the given TDD configuration, and counts the DRX timer.
  • the UE determines the PDCCH-subframe by using the updated TDD configuration obtained in the BCCH modification period, and counts the DRX timer;
  • the eNB notifies the UE of the TDD configuration change by using the broadcast mode 2/3 ⁇ 4 or the dedicated signaling manner, and the UE always determines the PDCCH-subframe according to the legacy TDD configuration, and performs DRX timer counting.
  • the UE calculates the DRX timer duration in the PDCCH subframe according to the downlink subframe and the DwPTS subframe of the TDD configuration 1.
  • the eNB notifies the UE of the TDD configuration change by broadcasting (such as the broadcast notification dynamic TDD configuration change mode 2, 3, 4) or the dedicated signaling, and after receiving the TDD configuration change message notified by the eNB, the UE still follows the downlink of the configuration 1
  • the frame and DwPTS subframes determine the PDCCH subframe pattern and count the DRX timer.
  • the user equipment determines the PDCCH subframe PDCCH-subframe only according to the TDD configuration in the broadcast, And counting the DRX timer according to the determined PDCCH subframe.
  • the user equipment is notified by the broadcast mode 1, and the user equipment receives the updated TDD configuration in the subframe n by broadcast, the user equipment will be in the sub-frame.
  • the frame n+k uses the TDD configuration statistics PDCCH-subframe notified by the legacy TDD configuration update mode to perform timer counting and PDCCH monitoring.
  • the user equipment and base station will still use the original TDD configuration or according to the reference TDD configuration (typically, regardless of how the cell TDD UL/DL configuration changes, the DL reference configuration is UL/ The DL configuration 5, the reference TDD configuration may be notified to the UE by the base station through broadcast, or may be pre-agreed between the UE and the base station, the PDCCH-subframe is counted, and the DRX timer count and the PDCCH subframe monitor are performed.
  • the reference TDD configuration may be notified to the UE by the base station through broadcast, or may be pre-agreed between the UE and the base station, the PDCCH-subframe is counted, and the DRX timer count and the PDCCH subframe monitor are performed.
  • the value of k may be pre-agreed between the UE and the base station or given a default value in the protocol, or may be notified by the base station through broadcast or explicit signaling; the specific value may be a relative value or an absolute value. Value (such as the fixed side of the subframe notified by the network side is the TDD UL/DL configuration change time).
  • the PDCCH subframe is determined according to the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1, and is determined according to the determination.
  • the PDCCH subframe counts the DRX timer, determines the PDCCH subframe according to the Legacy TDD configuration (or the updated legacy TDD configuration) or the specific TDD configuration after the subframe n+k, and determines the PDCCH subframe pair DRX timer.
  • the network device After the user equipment determines that the TDD configuration needs to be changed according to the information for counting the DRX timer, the network device processes the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1. Processing after the subframe n+k according to the TDD configuration (legacy TDD configuration of the legacy TDD configuration or update) or the specific TDD configuration notified by the legacy mode;
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the specific TDD configuration is a TDD configuration that is currently available (see 3GPP TS 36.211 for details) or a new TDD configuration.
  • the specific TDD configuration can be specified in the protocol as a specific TDD configuration; it can also be configured by the upper layer; it can also be negotiated and determined by the network side and the user equipment side.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device uses the TDD configuration information notified in the system information block SIB 1 and the location information of the specific subframe used for downlink transmission, or uses the TDD configuration information and the MBSFN subframe position information notified in the SIB1.
  • the paging message of the non-TDD configuration change indication information, the SIB1 and the MBSFN subframe position information including the information for counting the DRX timer are broadcasted to the user equipment by broadcast;
  • the user equipment only needs to change the TDD configuration information in the SIB 1 corresponding to the paging message that includes the non-TDD configuration change indication information, and the received location information of the specific subframe for the downlink transmission, or only Root
  • the PDCCH subframe is determined according to the TDD configuration information and the MBSFN subframe position information that need to be changed in the SIB1 corresponding to the paging message including the non-TDD configuration change indication information, and the DRX timer is counted according to the determined PDCCH subframe.
  • the second method further considers the location of the subframe used for the downlink transmission in the TDD configuration (the subframe in which the downlink transmission direction is unchanged) determines the PDCCH-subframe, and counts the length of the DRX timer.
  • the second method further informs the location information of the specific subframe used for the downlink transmission, determines the PDCCH-subframe in consideration of the legacy TDD configuration and the location information of the specific subframe used for the downlink transmission, and counts the DRX timer length.
  • the user equipment learns the cell TDD configuration (legacy TDD configuration) through SIB1, which is known by the read system broadcast when the user equipment first accesses the network.
  • the cell home base station or other base station (such as the macro base station) broadcasts the TDD that the corresponding user equipment needs to change.
  • the cell TDD configuration of the Per UE refers to a TDD configuration specially configured by the eNB for a certain UE and different from the cell-level TDD configuration, and the UE works by using a UL/DL subframe configuration specially configured for the UE.
  • Broadcast mode 1 Via Paging + SIB1 (Paging message containing non-TDD configuration change indication information + TDD configuration including changes required) SIB1) of the information, notifying the UE of the TDD configuration change;
  • Broadcast mode 2 The TDD configuration mode carried in the MIB notification notifies the UE TDD change
  • Broadcast mode 3 Notify the UE TDD change by Paging (TDD configuration change indication) + SIB1 (similar to ETWS);
  • Broadcast mode 4 The UE TDD change is notified by means of Paging (TDD configuration change indication) + new SIB (similar to ETWS).
  • the UE When the network side device notifies the UE TDD configuration change by using a dedicated signaling manner, the UE may be notified of a set of small-area TDD configurations, or may be a set of UE-level TDD configurations.
  • the user equipment learns, by broadcast, the cell legacy TDD configuration (acquired according to the R8 mechanism, ie, broadcast mode 1) and the location position of the subframe used for downlink transmission, and according to the location of the subframe used for downlink transmission in the TDD configuration. Determine the PDCCH-subframe and count the DRX timer.
  • the TDD configuration change is notified by the broadcast mode 1 when the subsequent dynamic TDD configuration is changed, the updated TDD configuration obtained by the UE in the BCCH modification period and the location of the subframe used for the downlink transmission after the UE receives the Paging
  • the location is determined by the PDCCH-subframe, and the DRX timer is counted;
  • the UE is notified of the TDD configuration change by using the broadcast mode 2/3 ⁇ 4 or the dedicated signaling manner, and the UE is always used for the downlink according to the legacy TDD configuration.
  • the position of the subframe transmitted by the link determines the PDCCH-subframe, and performs DRX Timer counting.
  • the UE When the UE learns the legacy TDD configuration through broadcast (according to the R8 mechanism), it also knows the indication indicated by the eNB.
  • a Subframe is specifically used for DL transmission (subframe specific for DL transmission, the eNB may use the following form notification: Subframe set for DL transmission; Subframe set not used for DL transmission (such as which subframe is flexible subframe, so-called The flexible subframe is configured according to the TDD configuration to see that the subframe is configured as the downlink direction, but is not used for the downlink scheduling/transmission subframe)), and the UE will always follow the learned legacy TDD configuration (acquired according to the R8 mechanism) and the specific DL transmission.
  • Subframe determines the PDCCH-subframe, and performs DRX Timer counting.
  • the user equipment determines the PDCCH only according to the TDD configuration information that needs to be changed in the SIB 1 corresponding to the paging message that includes the non-TDD configuration change indication information and the received location information of the specific subframe for the downlink transmission.
  • the subframe PDCCH-subframe and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment is notified by the broadcast mode 1, and the user equipment receives the updated TDD configuration in the subframe n by broadcast, the user equipment will be in the sub-frame.
  • the frame n+k uses the TDD configuration statistics PDCCH-subframe notified by the legacy TDD configuration update mode to perform timer counting and PDCCH monitoring.
  • the user equipment and base station will still use the original TDD configuration or according to the reference TDD configuration (typically, regardless of how the cell TDD UL/DL configuration changes, the DL reference configuration is UL/ The DL configuration 5, the reference TDD configuration may be notified to the UE by the base station through broadcast, or may be pre-agreed between the UE and the base station, the PDCCH-subframe is counted, and the DRX timer count and the PDCCH subframe monitor are performed.
  • the reference TDD configuration may be notified to the UE by the base station through broadcast, or may be pre-agreed between the UE and the base station, the PDCCH-subframe is counted, and the DRX timer count and the PDCCH subframe monitor are performed.
  • the value of k may be pre-agreed between the UE and the base station or given a default value in the protocol, or may be notified by the base station through broadcast or explicit signaling; the specific value may be a relative value or an absolute value. Value (such as the fixed side of the subframe notified by the network side is the TDD UL/DL configuration change time).
  • the PDCCH subframe is determined according to the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1, and is determined according to the determination.
  • the PDCCH subframe counts the DRX timer, determines the PDCCH subframe according to the legacy TDD configuration (or the updated legacy TDD configuration) or the specific TDD configuration after the subframe n+k, and counts the DRX timer according to the determined PDCCH subframe.
  • the network side device processes the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1 after the user equipment determines that the TDD configuration needs to be changed according to the information for counting the DRX timer.
  • the subframe n+k is processed according to the TDD configuration (legacy TDD configuration or updated legacy TDD configuration) or the specific TDD configuration notified by the legacy mode;
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device sends the TDD configuration information that needs to be changed as the information for counting the DRX timer, and the TDD configuration information that needs to be changed is sent to the user equipment by using broadcast or dedicated signaling.
  • the user equipment determines the PDCCH subframe according to the received TDD configuration information that needs to be changed, and counts the DRX timer according to the determined PDCCH subframe.
  • the dynamic TDD configuration determines the PDCCH-subframe, and the length of the DRX timer is counted; the dynamic TDD configuration is notified to the user equipment by broadcast.
  • the UE learns the cell TDD configuration (legacy TDD configuration) through SIB1, which is learned by reading the system broadcast when the UE first accesses the network.
  • the cell home base station or other base station (such as a macro base station) notifies the corresponding UE of the new TDD configuration information by broadcast.
  • the UE After receiving the TDD configuration that is updated by the eNB, the UE determines which subframes are PDCCH-subframes according to the TDD configuration newly learned by the dynamic TDD, and collects the DRX timers in the PDCCH subframes according to the determined PDCCH-subframe statistics. The length of time, monitoring the PDCCH subframe, and counting the DRX timer.
  • Broadcast mode 1 Via Paging + SIB1 (Paging message containing non-TDD configuration change indication information + TDD configuration including changes required) SIB1) of the information, notifying the UE of the TDD configuration change;
  • Broadcast mode 2 The TDD configuration mode carried in the MIB notification notifies the UE TDD change
  • Broadcast mode 3 Notify the UE TDD change by Paging (TDD configuration change indication) + SIB1 (similar to ETWS);
  • Broadcast mode 4 The UE TDD change is notified by means of Paging (TDD configuration change indication) + new SIB (similar to ETWS).
  • the network side device sends the paging message including the non-TDD configuration change indication information and the SIB 1 including the TDD configuration information that needs to be changed to the user equipment, and accordingly, the user equipment according to the non-TDD configuration change indication information Determining the PDCCH subframe in the TDD configuration information that needs to be changed in the SIB1 corresponding to the call message, and counting the DRX timer according to the determined PDCCH subframe; or
  • the network side device sends the MIB that includes the TDD configuration information that needs to be changed to the user equipment. Accordingly, the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed in the received MIB, and determines the DRX according to the determined PDCCH subframe. Timer count; or
  • the network side device sends the paging message including the TDD configuration change indication information and the SIB 1 including the TDD configuration information that needs to be changed to the user equipment, and correspondingly, the user equipment according to the paging message corresponding to the TDD configuration change indication information corresponds to the SIB1.
  • the TDD configuration information that needs to be changed determines the PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe; or
  • the network side device sends the paging message including the TDD configuration change indication information and the specific SIB including the TDD configuration information that needs to be changed to the user equipment, and correspondingly, the user equipment according to the specific SIB corresponding to the paging message including the TDD configuration change indication information. Determining the PDCCH subframe in the TDD configuration information that needs to be changed, and counting the DRX timer according to the determined PDCCH subframe; or
  • the network side device sends the changed TDD configuration information to the user equipment by using dedicated signaling, such as PDCCH signaling. Accordingly, the user equipment determines, according to the dedicated signaling including the TDD configuration information that needs to be changed, such as PDCCH signaling.
  • the PDCCH subframe is determined, and the DRX timer is counted according to the determined PDCCH subframe.
  • the UE When the network side device notifies the UE TDD configuration change by using a dedicated signaling manner, the UE may be notified of a set of small-area TDD configurations, or may be a set of UE-level TDD configurations. After the UE learns the TDD configuration notified by the dedicated signaling, the PDCCH-subframe is determined according to the TDD configuration of the dedicated signaling, and the DRX Timer count is performed.
  • the UE legacy TDD is configured to be configured as 0 when the UE first accesses the network, and the UE counts the DRX timer in the PDCCH subframe according to the downlink subframe and the DwPTS subframe of the TDD configuration 0.
  • the network side device notifies the UE of the TDD configuration change by using the broadcast mode 2/3 ⁇ 4 or the dedicated signaling mode (for example, the TDD configuration is changed to the configuration 1)
  • the UE after receiving the TDD configuration change message notified by the network side device, the UE follows the The learned updated TDD configuration (TDD configuration 1) statistics PDCCH-subframe, that is, the downlink subframe and the DwPTS subframe count DRX timer according to the TDD configuration 1; if the eNB notifies the UE that the TDD configuration is changed to 1 by the broadcast mode 1, After receiving the Paging, the UE counts the DRX timer according to the updated TDD configuration 1 obtained in the BCCH modification period according to the downlink subframe and the DwPTS subframe of the TDD configuration 1.
  • the user equipment receives the updated TDD configuration in the subframe n through the broadcast mode 1, and the user equipment is in the subframe n. +k Use the legacy TDD update mode to update the TDD configuration statistics PDCCH-subframe for timer counting and PDCCH snooping.
  • the user equipment and base station will still use the original TDD configuration or according to the reference TDD configuration (typically, regardless of how the cell TDD UL/DL configuration changes, the DL reference configuration is UL/ DL configuration 5, the reference TDD configuration may be notified to the UE by the base station through broadcast, or may be pre-agreed between the UE and the base station, the PDCCH-subframe is counted, the DRX timer count and the PDCCH subframe monitoring are performed; if the dynamic TDD configuration is changed ⁇ The user equipment is notified by the broadcast mode 2/3 ⁇ 4 or the dedicated signaling mode, and the user equipment receives the updated TDD configuration in the subframe n by the broadcast mode 2/3 ⁇ 4 or the dedicated signaling mode, and the user equipment is in the subframe n.
  • the reference TDD configuration typically, regardless of how the cell TDD UL/DL configuration changes, the DL reference configuration is UL/ DL configuration 5, the reference TDD configuration may be notified to the UE by the base station through broadcast, or
  • +k uses the updated TDD configuration statistics PDCCH-subframe to perform timer counting and PDCCH monitoring.
  • the user equipment and the base station will still use the original TDD configuration or the reference TDD configuration, and the PDCCH-subframe is counted to perform DRX timer counting and PDCCH subframe monitoring.
  • the value of k may be pre-agreed between the UE and the base station or given a default value in the protocol, or may be notified by the base station through broadcast or explicit signaling; the specific value may be a relative value or an absolute value. Value (such as the fixed side of the subframe notified by the network side is the TDD UL/DL configuration change time).
  • the PDCCH subframe is determined according to the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1, and is determined according to the determination.
  • the PDCCH subframe counts the DRX timer, determines the PDCCH subframe according to the changed TDD configuration or the specific TDD configuration after the subframe n+k, and counts the DRX timer according to the determined PDCCH subframe; the network side device is in the user The device determines, after changing the TDD configuration according to the information used for counting the DRX timer, in subframe n to subframe n+k-1 Processing according to the TDD configuration or the specific TDD configuration before the change, and processing according to the TDD configuration notified by the legacy mode or the TDD configuration after the change or the specific TDD configuration after the subframe n+k;
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • Mode 4 is similar to mode 3, except that the network side device further sends the location information of the MBSFN subframe or the location information of the specific subframe used for downlink transmission to the user equipment; correspondingly, if the user equipment receives Position information of the MBSFN subframe, the user equipment determines the PDCCH subframe in other subframes except the MBSFN subframe according to the TDD configuration information that needs to be changed, and counts the DRX timer according to the determined PDCCH subframe;
  • the user equipment If the user equipment receives location information of a specific subframe for downlink transmission, the user equipment changes according to requirements
  • the TDD configuration information and the location information of the specific subframe for the downlink transmission determine the PDCCH subframe, and count the DRX timer according to the determined PDCCH subframe.
  • the network side device uses location information of a specific subframe for downlink transmission as information for DRX timer counting, and uses location information of a specific subframe for downlink transmission through broadcast or dedicated signaling. Notify the user equipment;
  • the user equipment determines the PDCCH subframe according to the location information of the specific subframe used for the downlink transmission, and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment performs counting according to the subframes specifically used for downlink transmission in the broadcast or dedicated signaling (if any new flexible subframe type configuration occurs, the subframe is not used for PDCCH subframe counting), and statistics are performed.
  • DRX timer length the subframes specifically used for downlink transmission in the broadcast or dedicated signaling (if any new flexible subframe type configuration occurs, the subframe is not used for PDCCH subframe counting), and statistics are performed.
  • DRX timer length if any new flexible subframe type configuration occurs, the subframe is not used for PDCCH subframe counting
  • the manner in which the network side device is notified to the user equipment by means of broadcast or dedicated signaling is similar to that of the third method, and details are not described herein again.
  • Location information for a particular subframe for downlink transmission includes, but is not limited to, one of the following:
  • a TDD configuration and a set of Subframes that are not used for DL transmission (such as which subframes are flexible subframes); a set of Subframes for DL transmission;
  • Subframe collection not used for DL transmission (such as which subframe is flexible subframe);
  • the UE collects the DRX timer duration in units of PDCCH-subframe according to the downlink subframe and the DwPTS subframe of the TDD configuration 1. If the subsequent base station notifies the UE subframe 9 as a flexible subframe by using broadcast or dedicated signaling, the UE performs the DRX timer in the PDCCH subframe as the counting unit according to the downlink subframe (excluding the subframe 9) and the DwPTS subframe of the TDD configuration 1. duration.
  • the UE calculates the DRX timer duration according to the downlink subframe (excluding the subframe 9) and the DwPTS subframe of the TDD configuration 1. . If the base station subsequently informs the UE that the TDD is configured as configuration 3 by broadcast or dedicated signaling, and the subframe 7 is flexible subframe, the UE performs the PDCCH according to the downlink subframe (excluding the subframe 7) and the DwPTS subframe of the TDD configuration 3. The frame is the DRX timer duration in units of count.
  • the broadcast mode is used.
  • the user equipment is notified, the user equipment receives the updated TDD configuration in the subframe n through the broadcast mode 1, and the user equipment performs the timer counting in the subframe n+k using the TDD configuration statistics PDCCH-subframe notified by the legacy TDD configuration update mode. And PDCCH snooping.
  • the user equipment and base station will still use the original TDD configuration or according to the reference TDD configuration (typically, regardless of how the cell TDD UL/DL configuration changes, the DL reference configuration is UL/ DL configuration 5, the reference TDD configuration may be notified to the UE by the base station through broadcast, or may be
  • the PDCCH-subframe is counted, and the DRX timer is counted and the PDCCH subframe is monitored. If the dynamic TDD configuration is changed, the user equipment is notified by using the broadcast mode 2/3 ⁇ 4 or the dedicated signaling mode.
  • the device receives the updated TDD configuration in the subframe n by the broadcast mode 2/3 ⁇ 4 or the dedicated signaling mode, and the user equipment uses the updated TDD configuration statistics PDCCH-subframe in the subframe n+k to perform timer counting and PDCCH. monitor.
  • the user equipment and the base station will still use the original TDD configuration or the reference TDD configuration, and the PDCCH-subframe is counted to perform DRX timer counting and PDCCH subframe monitoring.
  • the value of k may be pre-agreed between the UE and the base station or given a default value in the protocol, or may be notified by the station and by means of broadcast or explicit signaling; the specific value may be a relative value, or may be Absolute value (such as the fixed side of the subframe notified by the network side is the TDD UL/DL configuration change time).
  • the PDCCH subframe is determined according to the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1, and is determined according to the determination.
  • the PDCCH subframe counts the DRX timer, and is determined according to the TDD configuration after the change after the subframe n+k
  • the network side device determines, after the user equipment needs to change the TDD configuration according to the information for counting the DRX timer, in the subframe n to the subframe n+k- 1 is processed according to the TDD configuration or the specific TDD configuration before the change, and is notified in the legacy mode after the subframe n+k
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device uses the cell information of the cell that supports the dynamic TDD configuration as the information for counting the DRX timer, and notifies the cell information of the cell that supports the dynamic TDD configuration to the user equipment by using broadcast or dedicated signaling; After the user equipment accesses the cell supporting the dynamic TDD configuration, it is determined according to the specific TDD configuration. a PDCCH subframe, and counting DRX timers according to the determined PDCCH subframe.
  • the PDCCH-subframe is always determined according to the reference TDD configuration, and the length of the DRX timer is counted. Regardless of how the TDD configuration is changed, and in which way the notification is notified, the UE always determines the PDCCH-subframe according to the reference TDD configuration (for example, configuration 5), and counts the DRX timer length.
  • the reference TDD configuration may be pre-configured to the UE or may be broadcast by the eNB to the UE.
  • the network side device notifies the UE which cells support dynamic TDD configuration by means of broadcast, dedicated signaling, or the like;
  • the UE counts the DRX timer length according to the PDCCH-subframe in the reference TDD configuration (for example, configuration 5) when it works on the corresponding dynamic TDD cell.
  • the manner in which the network side device is notified to the user equipment by means of broadcast or dedicated signaling is similar to that of the third method, and details are not described herein again.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device is configured to notify the TDD configuration that the information to be changed is used as the information for the DRX timer to be used, and the indication information for notifying the TDD configuration that needs to be changed is notified to the user equipment by using broadcast or dedicated signaling.
  • the user equipment determines the PDCCH subframe according to the specific TDD configuration, and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment learns the TDD configuration change, and then the user equipment determines the PDCCH-subframe according to the reference TDD configuration, and counts the length of the DRX timer.
  • the reference TDD configuration is unique (for example, configuration 5) regardless of how the cell TDD UL/DL configuration changes.
  • the user equipment learns the cell TDD configuration (legacy TDD configuration) through the SIB1 through the R8 method, which is learned by the reading system broadcast when the user equipment first accesses the network.
  • the cell home base station or other base station such as the macro base station
  • the UE learns the TDD configuration change of the cell it determines the PDCCH-subframe according to the reference TDD configuration (such as configuration 5), and counts the length of the DRX timer.
  • the user equipment receives the TDD configuration change indication in the subframe n
  • the user equipment and the base station simultaneously use the reference TDD configuration (such as configuration 5) in the subframe n+k to perform the timer.
  • Count and PDCCH snooping The value of k may be pre-agreed between the UE and the base station or given a default value in the protocol, or may be notified by the base station through broadcast or explicit signaling; the specific value may be a relative value or an absolute value. Value (such as the fixed side of the subframe notified by the network side is the TDD UL/DL configuration change time).
  • the user equipment and base station will still determine the PDCCH-subframe using the original TDD configuration or a specific TDD configuration (refer to the TDD configuration).
  • Count the DRX timer That is, after the user equipment determines that the TDD configuration needs to be changed according to the information for counting the DRX timer, the PDCCH subframe is determined according to the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1, and is determined according to the determination.
  • the PDCCH subframe counts the DRX timer, determines the PDCCH subframe according to the specific TDD configuration after the subframe n+k, and counts the DRX timer according to the determined PDCCH subframe; the network side device is used in the user equipment according to the DRX timing
  • the information of the device count determines that the TDD configuration needs to be changed, and the TDD configuration or the specific TDD configuration before the change is performed in the subframe n to the subframe n+k-1, and the TDD notified in the legacy manner after the subframe n+k Processing or changing the TDD configuration or specific TDD configuration for processing;
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device in the system for counting DRX timers in the embodiment of the present invention includes: a determining module 400 and a notification module 410.
  • the determining module 400 is configured to determine, according to the TDD configuration change situation, information that is to be notified to the user equipment for counting the DRX timer;
  • the notification module 410 is configured to notify the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information used for counting the DRX timer.
  • the determining module 400 uses the TDD configuration information notified in the system information block SIB1 as information for counting by the DRX timer;
  • the notification module 410 sends the paging message including the non-TDD configuration change indication information, and the SIB 1 including the TDD configuration information that needs to be changed to the user equipment by the broadcast, so that the user equipment only changes the indication information according to the non-TDD configuration.
  • the TDD configuration information indicated in the received SIB 1 corresponding to the paging message determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the determining module 400 uses the TDD configuration information notified in the system information block SIB 1 and the location information of the specific subframe or the MBSFN subframe position information used for downlink transmission as information for counting the DRX timer;
  • the notification module 410 includes a paging message including non-TDD configuration change indication information, SIB1 including information for DRX timer counting, and location information of a specific subframe for downlink transmission, or may include non-TDD configuration change indication information, SIB1 including information for DRX timer counting, and location information of a specific subframe for downlink transmission, or may include non-
  • the paging message of the TDD configuration change indication information, the SIB1 and the MBSFN subframe position information including the information for counting the DRX timer are broadcasted to the user equipment, so that the user equipment only based on the paging including the non-TDD configuration change indication information
  • the changed TDD configuration information and the MBSFN subframe position information determine the PDCCH subframe, and according to the determined
  • the PDCCH subframe counts the DRX timer.
  • the determining module 400 uses the TDD configuration information that needs to be changed as the information for counting the DRX timer;
  • the notification module 410 sends the TDD configuration information that needs to be changed to the user equipment by using broadcast or dedicated signaling, so that the user equipment determines the PDCCH subframe according to the received TDD configuration information that needs to be changed, and according to the determined PDCCH subframe. Count the DRX timer.
  • the notification module 410 sends the paging message including the non-TDD configuration change indication information and the SIB1 including the TDD configuration information that needs to be changed to the user equipment; or sends the MIB including the TDD configuration information that needs to be changed to the user equipment; or will include
  • the paging message of the TDD configuration change indication information and the SIB1 including the TDD configuration information that needs to be changed are sent to the user equipment; or the paging message including the TDD configuration change indication information and the specific SIB including the TDD configuration information that needs to be changed are sent to the user.
  • the device or the TDD configuration information that needs to be changed is sent to the user equipment by using dedicated signaling, such as PDCCH signaling.
  • the notification module 410 sends the location information of the MBSFN subframe to the user equipment, so that the user equipment determines the PDCCH subframe in other subframes except the MBSFN subframe according to the TDD configuration information that needs to be changed, and determines according to the determination.
  • the PDCCH subframe counts the DRX timer; or transmits the location information of the specific subframe for the downlink transmission to the user equipment, so that the user equipment changes the TDD configuration information as needed and the specificity for the downlink transmission.
  • the location information of the subframe determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the determining module 400 uses location information of a specific subframe for downlink transmission as information for DRX timer counting;
  • the notification module 410 notifies the location information of the specific subframe for the downlink transmission to the user equipment by using broadcast or dedicated signaling, so that the user equipment determines according to the location information of the specific subframe used for the downlink transmission.
  • the determining module 400 uses the cell information of the cell supporting the dynamic TDD configuration as the information for the DRX timer counting, so that the user equipment determines the PDCCH according to the specific TDD configuration after accessing the cell supporting the dynamic TDD configuration. a frame, and counting the DRX timer according to the determined PDCCH subframe.
  • the determining module 400 uses the indication information for notifying that the TDD configuration needs to be changed as the information for counting the DRX timer, so that the user equipment receives the indication information for notifying the TDD configuration that needs to be changed, according to the specific TDD.
  • the configuration determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the determining module 400 performs the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1 after the user equipment determines that the TDD configuration needs to be changed according to the information for counting the DRX timer. Processing, after the subframe n+k, according to the TDD configuration notified by the legacy mode or the TDD configuration after the change or the specific TDD configuration;
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the user equipment in the system for counting DRX timers in the embodiment of the present invention includes: a receiving module 500 and a counting module 510.
  • the receiving module 500 is configured to receive information about a DRX timer count from a network side device, where The information that the DRX timer counts is determined by the network side device according to the TDD configuration change situation;
  • the counting module 510 is configured to count the DRX timer according to the information used for counting the DRX timer.
  • the information for counting the DRX timer is the TDD configuration information notified in the system information block SIB1; the receiving module 500 receives the paging message including the non-TDD configuration change indication information by broadcasting, and includes the TDD configuration information that needs to be changed. SIB 1;
  • the counting module 510 determines the PDCCH subframe only according to the TDD configuration information indicated in the received SIB 1 corresponding to the paging message including the non-TDD configuration change indication information, and counts the DRX timer according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is TDD configuration information that needs to be changed;
  • the receiving module 500 receives, by broadcast, a paging message including non-TDD configuration change indication information, SIB1 including information for DRX timer counting, and location information of a specific subframe for downlink transmission, or receiving non-distribution
  • the counting module 510 only needs to change the TDD configuration information in the SIB 1 corresponding to the paging message including the non-TDD configuration change indication information and the received location information of the specific subframe for the downlink transmission, or only according to the inclusion
  • the TDD configuration information and the MBSFN subframe position information in the SIB1 corresponding to the paging message of the non-TDD configuration change indication information are determined by the PDCCH subframe, and the DRX timer is counted according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is TDD configuration information that needs to be changed;
  • the counting module 510 determines a PDCCH subframe according to the received TDD configuration information that needs to be changed, and counts the DRX timer according to the determined PDCCH subframe.
  • the counting module 510 determines a PDCCH subframe according to the TDD configuration information that needs to be changed in the SIB 1 corresponding to the paging message that includes the non-TDD configuration change indication information, and counts the DRX timer according to the determined PDCCH subframe; or according to the received
  • the TDD configuration information to be changed in the MIB determines the PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe; or the TDD configuration in the SIB1 corresponding to the paging message corresponding to the TDD configuration change indication information Determining a PDCCH subframe according to the determined PDCCH subframe, and counting the DRX timer according to the determined PDCCH subframe; or determining the PDCCH subframe according to the TDD configuration information that needs to be changed in the specific SIB corresponding to the paging message that includes the TDD configuration change indication information, and according to Determining the PDCCH subframe to count the DRX timer; or the user equipment determines the P
  • the receiving module 500 receives location information of the MBSFN subframe from the network side device or location information of a specific subframe used for downlink transmission;
  • the counting module 510 When the counting module 510 receives the location information of the MBSFN subframe, the TDD configuration information changed according to the need
  • the information for counting the DRX timer is location information of a specific subframe for downlink transmission; the counting module 510 determines a PDCCH subframe according to location information of a specific subframe used for downlink transmission, and The DRX timer is counted according to the determined PDCCH subframe.
  • the information used for counting the DRX timer is the cell information of the cell supporting the dynamic TDD configuration; after accessing the cell supporting the dynamic TDD configuration, the counting module 510 determines the PDCCH subframe according to the specific TDD configuration, and determines according to the specific The PDCCH subframe counts the DRX timer.
  • the information for counting the DRX timer is indication information for notifying that the TDD configuration needs to be changed; the counting module 510 determines the PDCCH subframe according to the specific TDD configuration after receiving the indication information for notifying that the TDD configuration needs to be changed. And counting the DRX timer according to the determined PDCCH subframe.
  • the counting module 510 determines that the PDCCH subframe needs to be changed according to the information for the DRX timer counting, and determines the PDCCH subframe according to the TDD configuration or the specific TDD configuration before the change in the subframe n to the subframe n+k-1. And counting the DRX timer according to the determined PDCCH subframe, determining the PDCCH subframe according to the TDD configuration notified by the legacy mode or the TDD configuration after the change or the specific TDD configuration after the subframe n+k, and determining the PDCCH subframe.
  • the PDCCH subframe counts the DRX timer
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the embodiment of the present invention further provides a method for the network side device to notify the user equipment to count the DRX timer, and a method for the user equipment to perform the DRX timer counting.
  • the principle of solving the problem by the methods and the present invention The system for counting DRX timers is similar, so the implementation of these methods can be referred to the implementation of the system, and the details are not repeated here.
  • the method for the network side device to notify the user equipment to perform DRX timer counting in the embodiment of the present invention includes the following steps:
  • Step 601 The network side device determines, according to the TDD configuration change status, information that is to be notified to the user equipment for counting the DRX timer.
  • Step 602 The network side device notifies the user equipment of the information for counting the DRX timer, so that the user equipment counts the DRX timer according to the information used for counting the DRX timer.
  • the network side device determines the information for the DRX timer to be notified to the user equipment, which are separately introduced below.
  • the network side device will include a paging message that does not have a TDD configuration change indication information, and includes a need to change
  • the SIB1 of the TDD configuration information is broadcasted to the user equipment, so that the user equipment determines the PDCCH subframe only based on the TDD configuration information in the received SIB1 corresponding to the paging message including the non-TDD configuration change indication information.
  • the PDCCH-subframe and counts the DRX timer according to the determined PDCCH subframe.
  • the PDCCH-subframe is determined in the TDD configuration indicated in the SIB1, and the DRX timer length is counted.
  • the TDD configuration may be considered to remove the subframe configuration other than the MB SFN to determine the PDCCH-subframe, and the DRX timer length is counted.
  • Broadcast mode 1 Via Paging + SIB 1 (Paging message containing non-TDD configuration change indication information + TDD including change required) SIB1) of the configuration information, notifying the UE of the TDD configuration change;
  • Broadcast mode 2 The TDD configuration mode carried in the MIB notification notifies the UE TDD change
  • Broadcast mode 3 Notification via Paging (TDD configuration change indication) + SIB1 (similar to ETWS)
  • Broadcast mode 4 The UE TDD change is notified by means of Paging (TDD configuration change indication) + new SIB (similar to ETWS).
  • the UE When the network side device notifies the UE TDD configuration change by using a dedicated signaling manner, the UE may be notified of a set of small-area TDD configurations, or may be a set of UE-level TDD configurations.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device includes a paging message including non-TDD configuration change indication information, SIB1 including information for DRX timer counting, and location information of a specific subframe for downlink transmission, or may include non-TDD
  • the paging message of the configuration change indication information, the SIB1 and the MBSFN subframe position information including the information for counting the DRX timer are broadcasted to the user equipment, so that the user equipment only according to the paging message including the non-TDD configuration change indication information.
  • the TDD configuration information to be changed in the corresponding SIB1 and the location information of the specific subframe received for the downlink transmission, or the change in the SIB1 corresponding to the paging message including the non-TDD configuration change indication information only The TDD configuration information and the MBSFN subframe position information determine a PDCCH subframe, and count the DRX timer according to the determined PDCCH subframe.
  • Mode 2 only considers the location of the subframe used for downlink transmission in the TDD configuration to determine the PDCCH-subframe, and the length of the DRX timer.
  • Broadcast mode 1 Via Paging + SIB1 (Paging message containing non-TDD configuration change indication information + TDD configuration including changes required) SIB1) of the information, notifying the UE of the TDD configuration change;
  • Broadcast mode 2 The TDD configuration mode carried in the MIB notification notifies the UE TDD change
  • Broadcast mode 3 Notification via Paging (TDD configuration change indication) + SIB1 (similar to ETWS)
  • Broadcast mode 4 Notify the UE TDD change by Paging (TDD configuration change indication) + new SIB mode (similar to ETWS).
  • the network side device notifies the UE of the TDD configuration change by using a dedicated signaling manner, the UE may be notified that the UE may be a set of cell-level TDD configurations, or may be a set of UE-level TDD configurations.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device sends the TDD configuration information that needs to be changed as the information for counting the DRX timer, and the TDD configuration information that needs to be changed is sent to the user equipment through broadcast or dedicated signaling, so that the user equipment changes according to the received request.
  • the TDD configuration information determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the dynamic TDD configuration determines the PDCCH-subframe, and the DRX timer is counted.
  • the dynamic TDD configuration is notified to the user equipment by broadcast.
  • Broadcast mode 1 Via Paging + SIB1 (Paging message containing non-TDD configuration change indication information + TDD configuration including changes required) SIB1) of the information, notifying the UE of the TDD configuration change;
  • Broadcast mode 2 The TDD configuration mode carried in the MIB notification notifies the UE TDD change
  • Broadcast mode 3 Notification via Paging (TDD configuration change indication) + SIB1 (similar to ETWS)
  • Broadcast mode 4 The UE TDD change is notified by means of Paging (TDD configuration change indication) + new SIB (similar to ETWS).
  • the network side device sends the paging message including the non-TDD configuration change indication information and the SIB 1 including the TDD configuration information that needs to be changed to the user equipment;
  • the network side device sends the MIB containing the TDD configuration information that needs to be changed to the user equipment; or
  • the network side device sends the paging message including the TDD configuration change indication information and the SIB 1 including the TDD configuration information that needs to be changed to the user equipment; or
  • the network side device sends a paging message including the TDD configuration change indication information and a specific SIB including the TDD configuration information that needs to be changed to the user equipment; or
  • the network side device sends the changed TDD configuration information to the user equipment through dedicated signaling, such as PDCCH signaling.
  • the UE When the network side device notifies the UE TDD configuration change by using a dedicated signaling manner, the UE may be notified of a set of small-area TDD configurations, or may be a set of UE-level TDD configurations. After the UE learns the TDD configuration notified by the dedicated signaling, the PDCCH-subframe is determined according to the TDD configuration of the dedicated signaling, and the DRX Timer (counter) is counted.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the fourth method is similar to the third method. The difference is that the network side device also sends the location information of the MBSFN subframe or the location information of the specific subframe used for the downlink transmission to the user equipment.
  • the network side device sends the location information of the MBSFN subframe to the user equipment, so that the user equipment determines the PDCCH subframe in other subframes except the MBSFN subframe according to the TDD configuration information that needs to be changed, and according to the determined
  • the PDCCH subframe counts the DRX timer; or
  • the network side device sends the location information of the specific subframe for the downlink transmission to the user equipment, so that the user equipment determines the PDCCH according to the TDD configuration information that needs to be changed and the location information of the specific subframe used for the downlink transmission. a frame, and counting the DRX timer according to the determined PDCCH subframe.
  • the network side device uses location information of a specific subframe for downlink transmission as information for DRX timer counting, and uses location information of a specific subframe for downlink transmission through broadcast or dedicated signaling. Notify the user device.
  • the user equipment counts according to a subframe specific to the downlink transmission in the broadcast or dedicated signaling.
  • this subframe is not used for PDCCH subframe counting, and the DRX timer length is counted.
  • the manner in which the network side device is notified to the user equipment by means of broadcast or dedicated signaling is similar to that of the third method, and details are not described herein again.
  • Location information for a particular subframe for downlink transmission includes, but is not limited to, one of the following:
  • a TDD configuration and a set of Subframes that are not used for DL transmission (such as which subframes are flexible subframes); a set of Subframes for DL transmission;
  • Subframe collection not used for DL transmission (such as which subframe is flexible subframe);
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device uses the cell information of the cell that supports the dynamic TDD configuration as the information for the DRX timer count, and notifies the cell information of the cell that supports the dynamic TDD configuration to the user equipment by using broadcast or dedicated signaling.
  • the PDCCH-subframe is always determined according to the reference TDD configuration, and the length of the DRX timer is counted. Regardless of how the TDD configuration is changed, and in which way the notification is notified, the UE always determines the PDCCH-subframe according to the reference TDD configuration (for example, configuration 5), and counts the DRX timer length.
  • the reference TDD configuration may be pre-configured to the UE, or may be broadcasted to the UE by the e B (Evolved Base Station).
  • the network side device notifies the UE which cells support dynamic TDD configuration by means of broadcast, dedicated signaling, or the like;
  • the UE counts the DRX timer length according to the PDCCH-subframe in the reference TDD configuration (such as configuration 5) when it works on the corresponding dynamic TDD cell.
  • the network side device is notified to the user equipment by means of broadcast or dedicated signaling is similar to that of the third method, and details are not described herein again.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device is used to notify the TDD that the indication information needs to be changed as the information for counting the DRX timer, and notify the TDD configuration that the indication information that needs to be changed is notified to the user equipment by broadcast or dedicated signaling.
  • the user equipment learns the TDD configuration change, and then the user equipment determines the PDCCH-subframe according to the reference TDD configuration, and counts the length of the DRX timer.
  • the reference TDD configuration is unique (for example, configuration 5) regardless of how the cell TDD UL/DL configuration changes.
  • the PDCCH-subframe is determined in a similar manner as described above.
  • the network side device determines, after the user equipment needs to change the TDD configuration according to the information for counting the DRX timer, before changing according to the subframe n to the subframe n+k-1.
  • the TDD configuration or the specific TDD configuration is processed, after the subframe n+k is notified in accordance with the legacy mode of the TDD configuration or after the change
  • TDD configuration or specific TDD configuration for processing
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the method for the user equipment to perform the DRX timer counting in the embodiment of the present invention includes the following steps: Step 701: The user equipment receives information from the network side device for counting the DRX timer, where the DRX timer is used for counting. The information is determined by the network side device according to the TDD configuration change situation;
  • Step 702 The user equipment counts the DRX timer according to the information used for counting the DRX timer.
  • the network side device determines the information for the DRX timer to be notified to the user equipment, which are separately introduced below.
  • Manner 1 The user equipment receives, by broadcast, a paging message including non-TDD configuration change indication information, and SIB1 information including TDD configuration information that needs to be changed; and only receives the corresponding paging message according to the non-TDD configuration change indication information.
  • the TDD configuration information in the SIB1 determines a PDCCH subframe PDCCH-subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • Mode 1 considers the PDCCH-subframe in the TDD configuration indicated in SIB1, and counts the length of the DRX timer. Further, in the first mode, the TDD configuration may be used to remove the subframe configuration other than the MB SFN to determine the PDCCH-subframe, and the DRX timer length is counted.
  • the user equipment learns the cell TDD configuration (legacy TDD configuration) through the SIB1, which is learned by the read system broadcast when the user equipment first accesses the network.
  • a TDD UL/DL configuration change occurs in a cell that supports dynamic TDD configuration, or when a cell TDD configuration of a per UE changes, a cell home base station or other base station (such as a macro)
  • the base station notifies the corresponding user equipment of the TDD configuration information that needs to be changed by broadcasting (further may include location information of the MBSFN subframe).
  • the cell TDD configuration of the Per UE refers to a TDD configuration that is specifically configured by the eNB for a certain UE and is different from the cell-level TDD configuration.
  • the UE works by using a UL/DL subframe configuration configured specifically for the UE.
  • the user equipment determines the PDCCH subframe PDCCH-subframe only according to the TDD configuration information in the received SIB1 corresponding to the paging message including the non-TDD configuration change indication information, and according to the determined PDCCH subframe pair.
  • the DRX timer counts; or, at this time, the user equipment determines the PDCCH in other subframes except the MBSFN subframe according to the TDD configuration information in the received SIB1 corresponding to the paging message including the non-TDD configuration change indication information.
  • Manner 2 The user equipment receives, by broadcast, a paging message including non-TDD configuration change indication information, SIB1 including information for DRX timer counting, and location information of a specific subframe for downlink transmission, or receiving by broadcast
  • the paging message including the non-TDD configuration change indication information, the SIB1 and the MBSFN subframe position information including the information for the DRX timer count, are changed only according to the need in the SIB1 corresponding to the paging message including the non-TDD configuration change indication information.
  • the frame position information determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • Mode 2 only considers the location of the subframe used for downlink transmission in the TDD configuration to determine the PDCCH-subframe, and the length of the DRX timer.
  • the user equipment learns the cell TDD configuration (legacy TDD configuration) through SIB1, which is known by the read system broadcast when the user equipment first accesses the network.
  • the cell home base station or other base station (such as the macro base station) broadcasts the TDD that the corresponding user equipment needs to change.
  • the cell TDD configuration of the Per UE refers to a TDD configuration specially configured by the eNB for a certain UE and different from the cell-level TDD configuration, and the UE works by using a UL/DL subframe configuration specially configured for the UE.
  • the user equipment only corresponds to the paging message including the non-TDD configuration change indication information.
  • the TDD configuration information to be changed in SIB1 and the received location information of the specific subframe for the downlink transmission determine the PDCCH subframe, and count the DRX timer according to the determined PDCCH subframe.
  • Manner 3 The user equipment determines a PDCCH subframe according to the received TDD configuration information that needs to be changed, and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed in the SIB 1 corresponding to the paging message that includes the non-TDD configuration change indication information, and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed in the received MIB, and counts the DRX timer according to the determined PDCCH subframe; or
  • the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed in the SIB1 corresponding to the paging message that includes the TDD configuration change indication information, and counts the DRX timer according to the determined PDCCH subframe; or the user equipment changes according to the TDD configuration. Determining a PDCCH subframe according to the TDD configuration information in the specific SIB corresponding to the paging message indicating the information, and counting the DRX timer according to the determined PDCCH subframe; or the user equipment according to the TDD configuration information including the change required
  • the dedicated signaling such as PDCCH signaling, determines a PDCCH subframe, and counts the DRX timer according to the determined PDCCH subframe.
  • the dynamic TDD configuration determines the PDCCH-subframe, and the DRX timer is counted.
  • the dynamic TDD configuration is notified to the user equipment by broadcast.
  • the UE learns the cell TDD configuration (legacy TDD configuration) through SIB1, which is learned by reading the system broadcast when the UE first accesses the network.
  • the cell home base station or other base station (such as a macro base station) notifies the corresponding UE of the new TDD configuration information by broadcast.
  • the UE After receiving the TDD configuration that is updated by the eNB by using the broadcast mode or the dedicated signaling, the UE determines which subframes are PDCCH-subframes according to the TDD configuration newly learned by the dynamic TDD, and uses the PDCCH subframe as a counting unit according to the determined PDCCH-subframe statistics. The length of the DRX timer, the PDCCH subframe is monitored, and the DRX timer is counted.
  • Mode 4 is similar to mode 3, except that the network side device further sends the location information of the MBSFN subframe or the location information of the specific subframe used for downlink transmission to the user equipment; correspondingly, if the user equipment receives Position information of the MBSFN subframe, the user equipment determines the PDCCH subframe in other subframes except the MBSFN subframe according to the TDD configuration information that needs to be changed, and counts the DRX timer according to the determined PDCCH subframe;
  • the user equipment determines the PDCCH subframe according to the TDD configuration information that needs to be changed and the location information of the specific subframe used for the downlink transmission, and according to the determined The PDCCH subframe counts the DRX timer.
  • Manner 5 The user equipment determines a PDCCH subframe according to location information of a specific subframe used for downlink transmission, and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment performs counting according to the subframes specifically used for downlink transmission in the broadcast or dedicated signaling (if any new flexible subframe type configuration occurs, the subframe is not used for PDCCH subframe counting), and statistics are performed.
  • DRX timer length the subframes specifically used for downlink transmission in the broadcast or dedicated signaling (if any new flexible subframe type configuration occurs, the subframe is not used for PDCCH subframe counting), and statistics are performed.
  • DRX timer length if any new flexible subframe type configuration occurs, the subframe is not used for PDCCH subframe counting
  • Manner 6 After accessing the cell that supports the dynamic TDD configuration, the user equipment determines the PDCCH subframe according to the specific TDD configuration, and counts the DRX timer according to the determined PDCCH subframe.
  • the PDCCH-subframe is always determined according to the reference TDD configuration, and the length of the DRX timer is counted. Regardless of how the TDD configuration is changed, and in which way the notification is notified, the UE always determines the PDCCH-subframe according to the reference TDD configuration (such as configuration 5), and counts the DRX timer length.
  • the reference TDD configuration may be pre-configured to the UE, or may be broadcast by the eNB to the UE.
  • the UE counts the DRX timer length according to the PDCCH-subframe in the reference TDD configuration (for example, configuration 5) when it works on the corresponding dynamic TDD cell.
  • the user equipment determines the PDCCH subframe according to the specific TDD configuration, and counts the DRX timer according to the determined PDCCH subframe.
  • the user equipment learns the TDD configuration change, and then the user equipment determines the PDCCH-subframe according to the reference TDD configuration, and counts the length of the DRX timer.
  • the reference TDD configuration is unique (for example, configuration 5) regardless of how the cell TDD UL/DL configuration changes.
  • the user equipment determines that the TDD configuration needs to be changed according to the information for counting the DRX timer, and follows the TDD configuration before the change in the subframe n to the subframe n+k-1 or Determining a PDCCH subframe according to the specific TDD configuration, and counting the DRX timer according to the determined PDCCH subframe, and determining the PDCCH subframe according to the TDD configuration or the modified TDD configuration or the specific TDD configuration notified by the legacy mode after the subframe n+k, And counting the DRX timer according to the determined PDCCH subframe;
  • the subframe n is a subframe carrying information for counting by the DRX timer, and k is a positive integer.
  • the embodiment of the present invention further provides a network side device for counting DRX timers.
  • the device includes a processor 801 and a transceiver interface 802, where:
  • the processor 801 is configured to determine, according to the TDD configuration change situation, information that is to be notified to the user equipment for counting the DRX timer; notify, by using the transceiver interface 802, information about the DRX timer count to the user equipment, so that the user equipment is configured according to the The information for the DRX timer count counts the DRX timer.
  • the embodiment of the present invention further provides a DRX timer counting user equipment, as shown in FIG. 9, including a processor 901 and a transceiver interface 902, where:
  • the processor 901 is configured to receive, by the transceiver interface 902, information about the DRX timer count from the network side device, where the information used for the DRX timer count is determined by the network side device according to the TDD configuration change situation; The information counted by the DRX timer counts the DRX timer.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware. Moreover, the present invention can be embodied in the form of a computer program product embodied on one or more computer-usable storage interfaces (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer usable program code.
  • computer-usable storage interfaces including but not limited to disk storage, CD-ROM, optical storage, etc.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

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Abstract

本发明涉及无线通信技术领域,特别涉及一种DRX定时器计数的方法、***和设备,用以针对dynamic TDD场景下进行DRX定时器计数。本发明的方法包括:网络侧设备根据时分双工TDD配置变更情况,确定需要通知给用户设备的用于DRX定时器计数的信息;将所述用于DRX定时器计数的信息通知所述用户设备,以使所述用户设备根据所述用于DRX定时器计数的信息对DRX定时器计数。本发明实施例网络侧设备将所述用于DRX定时器计数的信息通知所述用户设备,以使用户设备根据所述用于DRX定时器计数的信息对DRX定时器计数,从而实现针对dynamic TDD场景下进行DRX 定时器计数,提高了网络性能。

Description

一种 DRX定时器计数的方法、 ***和设备 本申请要求在 2013年 03月 01日提交中国专利局、 申请号为 201310066149.5、发明名称为
"一种 DRX定时器计数的方法、 ***和设备"的中国专利申请的优先权, 其全部内容通过引用结 合在本申请中。 技术领域 本发明涉及无线通信技术领域, 特别涉及一种 DRX定时器计数的方法、 ***和设备。 背景技术 随着家庭基站、 微小区等的部署, 传统的只有宏小区的同构网络将逐步演进为多种类 型小区共存的异构网。 在异构网络下, 宏基站 (Marco e B )可以提供基本覆盖, 低功率 的本地节点(本地基站( Local eNB ) /小小区 ( Small cell ) )在宏基站覆盖范围内提供小范 围覆盖, 如图 1所示, 其中低功率的本地节点可以是中继节点(RN )、 家庭基站(He B )、 微小区 (Pico cell )等。
长期演进升级 ( Long Term Evolution- Advanced , LTE-A ) ***的峰值速率较 LTE有很 大的提高,要求达到下行 lGbps,上行 500Mbps。 同时, LTE-A***要求和长期演进( Long Term Evolution, LTE ) ***有很好的兼容性。 基于提高峰值速率、 与 LTE***兼容以及充 分利用频谱资源的需要, LTE-A***引入了载波聚合 ( CA )技术。
载波聚合技术是用户设备可以在多个小区上同时工作, 一个小区包含一对上行(UL ) /下行( DL )成员载波( Component Carrier, CC )。 在载波聚合的***中各个成员载波可以 是连续, 也可以是非连续的, 各成员载波间的带宽可以相同或不同, 为了保持和 LTE*** 兼容, 每个成员载波的最大带宽限制为 20MHz。 目前一般认为用户设备可以聚合的小区个 数最大个数为 5个。
LTE R8的 TDD UL/DL配置方式是静态或者半静态的, 不能根据业务特征灵活的调整 TDD UL/DL 配置, 因此不利于提升***资源利用率、 更好的保证业务传输的业务盾量 ( Quality of Service, QoS )。 R8时分双工 ( Time division duplex, TDD ) 配置通过***信 息块 ( System Information Block , SIB ) 1 通知给用户设备 ( UE ) , 即 eNB 通过 SystemlnformationBlockTypel将 TDD配置(IE: tdd-Config )以广播形式通知给 UE。 基于 此, LTE Rll LTE TDD UL/DL千扰管理以及业务自适应增强( Enhancement to LTE TDD for DL-UL Interference Management and Traffic Adaptation, elMTA ) 项目引入了动态 TDD UL/DL配置变更机制, 将 TDD UL/DL配置变更频率由若千天缩短为若千毫秒。 为了节省 UE 的能量消耗, 延长 UE 电池的使用时间, LTE 引入了非连续接收 ( Discontinuous Reception, DRX )机制。 DRX机制将 UE的 RRC_CO NECTED状态分为 激活和静默两种不同的状态。 当处于激活状态时, UE 需要连续监听和盲检测物理层下行 控制信道(Physical Downlink Control Channel , PDCCH ), 同时 UE可以上报信道盾量指示 ( Channel Quality Indicator, CQI ) /预编码矩阵指示 (Pre-coding Matrix Indicator, PMI ) I 秩指示 (Rank Indication, RI )等信息。 当处于静默状态时, UE不需要监听物理下行控制 信道( Physical Downlink Control Channel , PDCCH )控制信道, 也不上艮 CQI/PMI/RI等信 息, 从而达到用户设备省电的目的。 两种状态在时间上基于 DRX周期进行划分, 如图 2 所示。
在图 2中, 一个 DRX周期由 "on"状态持续时间和 "off,状态持续时间构成。在 "on" 状态期间, UE处于激活状态, 需要连续监听 PDCCH信道; 在 "off, 状态期间, UE有机 会处于静默状态, 但是否处于静默状态基于其它定时器的状态最终确定。
当前技术中 UE只可能通过广播获得 1套 TDD配置, 但是在动态 (dynamic ) TDD 中 UE可能获得 2套 TDD配置(一套配置通过广播获取, 一套配置通过专用信令或广播获 取)。对于多套 TDD配置,还没有一种釆用哪套 TDD配置来进行 DRX定时器计数的方案。
目前, 还没有一种更针对 dynamic TDD场景下进行 DRX定时器计数的方案。 发明内容 本发明提供一种 DRX定时器计数的方法、 ***和设备, 用以针对 dynamic TDD场景 下进行 DRX定时器计数。
本发明实施例提供的一种 DRX定时器计数的方法, 包括:
网络侧设备根据 TDD配置变更情况确定需要通知给用户设备的用于 DRX定时器计数 的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使用户设备在 能够获取多套 TDD配置的情况下, 根据所述用于 DRX定时器计数的信息确定 PDCCH子 帧, 对 DRX定时器计数, 从而实现针对 dynamic TDD场景下进行 DRX定时器计数, 提 高了网络性能。
第一种具体的实现方式为: 所述网络侧设备确定需要通知给用户设备的用于 DRX定 时器计数的信息, 包括:
所述网络侧设备将***信息块 SIB 1中通知的 TDD配置信息作为所述用于 DRX定时 器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD 配置信息的 SIB1和多媒体广播多播业务单频网络 MBSFN子帧的位置信息通过广播发送给 所述用户设备 , 以使所述用户设备仅根据包含非 TDD 配置变更指示信息的寻呼消息对应 的收到的 SIB1中指示的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定物理下行 控制信道 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
或者
所述网络侧设备确定需要通知给用户设备的用于 DRX定时器计数的信息, 包括: 所述网络侧设备将***信息块 SIB1中通知的 TDD配置信息作为所述用于 DRX定时 器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD 配置信息的 SIB 1通过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD配 置变更指示信息的寻呼消息对应的收到的 SIB1中指示的 TDD配置信息确定物理下行控制 信道 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第二种具体的实现方式为: 所述网络侧设备确定需要通知给用户设备的用于 DRX定 时器计数的信息, 包括:
所述网络侧设备将***信息块 SIB1中通知的 TDD配置信息和用于下行链路传输的特 定子帧的位置信息, 或者 SIB1中通知的 TDD配置信息 MBSFN子帧位置信息作为所述用 于 DRX定时器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含所述用于 DRX定 时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者将包含非 TDD 配置变更指示信息的寻呼消息、 包含所述用于 DRX定时器计数的信息的 SIB1和 MBSFN 子帧位置信息, 通过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD 配 置变更指示信息的寻呼消息对应的 SIB 1中的需要变更的 TDD配置信息和用于下行链路传 输的特定子帧的位置信息, 或者仅根据包含非 TDD 配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和 MBSFN子帧位置信息确定 PDCCH子帧, 并根据 确定的 PDCCH子帧对 DRX定时器计数。 第三种具体的实现方式为: 所述网络侧设备确定需要通知给用户设备的用于 DRX定 时器计数的信息, 包括:
所述网络侧设备将需要变更的 TDD配置信息作为所述用于 DRX定时器计数的信息; 所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将需要变更的 TDD 配置信息通过广播或专用信令发送给所述用户设 备, 以使所述用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确 定的 PDCCH子帧对 DRX定时器计数。
较佳的, 根据网络侧设备通知用户设备所述用于 DRX定时器计数的信息的不同方式, 所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD 配置信息的 SIB1发送给所述用户设备; 或
所述网络侧设备将包含需要变更的 TDD配置信息的 MIB发送给所述用户设备; 或 所述网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配 置信息的 SIB1发送给所述用户设备; 或
所述网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配 置信息的特定 SIB发送给所述用户设备; 或
所述网络侧设备将需要变更的 TDD配置信息通过专用信令如 PDCCH信令发送给所述 用户设备。
第四种具体的实现方式为: 所述网络侧设备将所述用于 DRX定时器计数的信息通知 所述用户设备 , 以使所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计 数, 还可以进一步包括:
所述网络侧设备将 MBSFN子帧的位置信息发送给所述用户设备, 以使所述用户设备 根据需要变更的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧,并 根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述网络侧设备将用于下行链路传输的特定子帧的位置信息发送给所述用户设备, 以 使所述用户设备根据需要变更的 TDD 配置信息和用于下行链路传输的特定子帧的位置信 息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第五种具体的实现方式为: 所述网络侧设备确定需要通知给用户设备的用于 DRX定 时器计数的信息, 包括:
所述网络侧设备将用于下行链路传输的特定子帧的位置信息作为所述用于 DRX定时 器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将用于下行链路传输的特定子帧的位置信息通过广播或专用信令通 知给用户设备, 以使所述用户设备根据用于下行链路传输的特定子帧的位置信息确定
PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第六种具体的实现方式中, 所述网络侧设备确定需要通知给用户设备的用于 DRX定 时器计数的信息, 包括:
所述网络侧设备将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器计数的 信息, 以使所述用户设备在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确定
PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第七种具体的实现方式中, 所述网络侧设备确定需要通知给用户设备的用于 DRX定 时器计数的信息, 包括:
所述网络侧设备将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时器计数 的信息, 以使所述用户设备在收到用于通知 TDD 配置需要变更的指示信息后, 根据特定
TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
进一步, 所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备之后, 还包括:
所述网络侧设备在所述用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD 配置后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配 置进行处理;
其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
本发明实施例提供的另一种 DRX定时器计数的方法, 包括:
用户设备接收来自网络侧设备的用于 DRX定时器计数的信息,其中所述用于 DRX定 时器计数的信息是所述网络侧设备根据 TDD配置变更情况确定的;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
用户设备在能够获取多套 TDD配置的情况下,根据所述用于 DRX定时器计数的信息 确定 PDCCH子帧,对 DRX定时器计数,从而实现针对 dynamic TDD场景下进行 DRX定 时器计数, 提高了网络性能。
第一种具体的实现方式中, 所述用于 DRX定时器计数的信息为***信息块 SIB 1中通 知的 TDD配置信息;
所述用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 包括:
所述用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含需要变 更的 TDD配置信息的 SIB1和 MBSFN子帧的位置信息; 所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1中 指示的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧,并根据确定 的 PDCCH子帧对 DRX定时器计数。
或者
所述用于 DRX定时器计数的信息为***信息块 SIB1中通知的 TDD配置信息; 所述用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 包括:
所述用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含需要变 更的 TDD配置信息的 SIB1 ;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1中 指示的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
第二种具体的实现方式中, 所述用于 DRX定时器计数的信息为 SIB1中的 TDD配置 信息和用于下行链路传输的特定子帧的位置信息,或者 SIB1中的 TDD配置信息和 MBSFN 子帧位置信息;
所述用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 包括:
所述用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含用于
DRX定时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者接收包 含非 TDD 配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1 和 MBSFN子帧位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要 变更的 TDD 配置信息和用于下行链路传输的特定子帧的位置信息, 或者仅根据包含非
TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息 MBSFN子 帧位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第三种具体的实现方式中, 所述用于 DRX定时器计数的信息为需要变更的 TDD配置 信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
具体的, 所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包 括:
所述用户设备 #>据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变 更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述用户设备根据收到的 MIB中的需要变更的 TDD配置信息确定 PDCCH子帧, 并 根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述用户设备根据包含 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更 的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或 所述用户设备根据包含 TDD配置变更指示信息的寻呼消息对应的特定 SIB中的需要 变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述网络侧设备将需要变更的 TDD配置信息通过专用信令如 PDCCH信令发送给所述 用户设备。
第四种具体的实现方式中, 所述用户设备根据所述用于 DRX 定时器计数的信息对 DRX定时器计数之前, 还可以进一步包括:
所述用户设备接收来自网络侧设备的 MBSFN子帧的位置信息或用于下行链路传输的 特定子帧的位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 若所述用户设备接收 MBSFN子帧的位置信息,所述用户设备根据需要变更的 TDD配 置信息在除 MB SFN子帧之外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子 帧对 DRX定时器计数;
若所述用户设备接收用于下行链路传输的特定子帧的位置信息, 所述用户设备根据需 要变更的 TDD配置信息和用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧,并 根据确定的 PDCCH子帧对 DRX定时器计数。
第五种具体的实现方式中, 所述用于 DRX定时器计数的信息为用于下行链路传输的 特定子帧的位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根 据确定的 PDCCH子帧对 DRX定时器计数。
第六种具体的实现方式中, 所述用于 DRX定时器计数的信息为支持动态 TDD配置的 小区的小区信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备在接入到支持动态 TDD配置的小区后,根据特定 TDD配置确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第七种具体的实现方式中, 所述用于 DRX定时器计数的信息为用于通知 TDD配置需 要变更的指示信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD配置 确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
进一步, 所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包 括:
所述用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后, 在子帧 n 到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确 定的 PDCCH子帧对 DRX定时器计数,在子帧 n+k之后按照 legacy方式通知的 TDD配置 或变更之后的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧 对 DRX定时器计数;
其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
本发明实施例提供的一种 DRX定时器计数的网络侧设备, 包括:
确定模块, 用于根据 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX定时 器计数的信息;
通知模块, 用于将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使用户设备在 能够获取多套 TDD配置的情况下, 根据所述用于 DRX定时器计数的信息确定 PDCCH子 帧, 对 DRX定时器计数, 从而实现针对 dynamic TDD场景下进行 DRX定时器计数, 提 高了网络性能。
第一种具体的实现方式中, 所述确定模块具体用于:
将***信息块 SIB1中通知的 TDD配置信息作为所述用于 DRX定时器计数的信息; 所述通知模块具体用于:
将包含非 TDD配置变更指示信息的寻呼消息、包含需要变更的 TDD配置信息的 SIB1 和 MBSFN子帧的位置信息通过广播发送给所述用户设备, 以使所述用户设备仅根据包含 非 TDD 配置变更指示信息的寻呼消息对应的收到的 SIB1 中指示的 TDD 配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧 PDCCH-subframe,并根据确定的 PDCCH 子帧对 DRX定时器计数。
或者
所述确定模块具体用于:
将***信息块 SIB1中通知的 TDD配置信息作为所述用于 DRX定时器计数的信息; 所述通知模块具体用于: 将包含非 TDD配置变更指示信息的寻呼消息、包含需要变更的 TDD配置信息的 SIB1 通过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD 配置变更指示信息 的寻呼消息对应的收到的 SIB 1中指示的 TDD配置信息确定 PDCCH子帧, 并# ^据确定的 PDCCH子帧对 DRX定时器计数。
第二种具体的实现方式中, 所述确定模块具体用于:
将***信息块 SIB1中通知的 TDD配置信息和用于下行链路传输的特定子帧的位置信 息, 或者***信息块 SIB1中通知的 TDD配置信息和 MBSFN子帧位置信息作为所述用于 DRX定时器计数的信息;
所述通知模块具体用于:
将包含非 TDD配置变更指示信息的寻呼消息、 包含所述用于 DRX定时器计数的信息 的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者将包含非 TDD配置变更指示信 息的寻呼消息、 包含所述用于 DRX定时器计数的信息的 SIB1和 MBSFN子帧位置信息通 过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD 配置变更指示信息的 寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和用于下行链路传输的特定子帧的位 置信息, 或者仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更 的 TDD配置信息和 MBSFN子帧位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧 对 DRX定时器计数。
第三种具体的实现方式为: 所述确定模块具体用于:
将需要变更的 TDD配置信息作为所述用于 DRX定时器计数的信息;
所述通知模块具体用于:
将需要变更的 TDD 配置信息通过广播或专用信令发送给所述用户设备, 以使所述用 户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子 帧对 DRX定时器计数。
较佳的, 根据网络侧设备通知用户设备所述用于 DRX定时器计数的信息的不同方式, 所述通知模块具体用于:
将包含非 TDD 配置变更指示信息的寻呼消息和包含所述 TDD 配置变更指示信息的 SIB1发送给所述用户设备;或将包含需要变更的 TDD配置信息的 MIB发送给所述用户设 备;或将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信息的 SIB1 发送给所述用户设备; 或将包含 TDD 配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信息的特定 SIB发送给所述用户设备; 或通过专用信令如 PDCCH信令将需要变 更的 TDD配置信息发送给所述用户设备。
第四种具体的实现方式可以进一步为: 所述通知模块还用于:
将 MBSFN子帧的位置信息发送给所述用户设备, 以使所述用户设备根据需要变更的 TDD 配置信息在除 MBSFN 子帧之外的其他子帧中确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或将用于下行链路传输的特定子帧的位置信息发送给所 述用户设备, 以使所述用户设备根据需要变更的 TDD 配置信息和用于下行链路传输的特 定子帧的位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第五种具体的实现方式为: 所述确定模块具体用于:
将用于下行链路传输的特定子帧的位置信息作为所述用于 DRX定时器计数的信息; 所述通知模块具体用于:
将用于下行链路传输的特定子帧的位置信息通过广播或专用信令通知给用户设备, 以 使所述用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据 确定的 PDCCH子帧对 DRX定时器计数。
第六种具体的实现方式中, 所述确定模块具体用于:
将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器计数的信息, 以使所述 用户设备在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第七种具体的实现方式中, 所述确定模块具体用于:
将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时器计数的信息, 以使所 述用户设备在收到用于通知 TDD 配置需要变更的指示信息后, 根据特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
进一步, 所述确定模块还用于:
在所述用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子帧 n+k之后 按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配置进行处理; 其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
本发明实施例提供的一种 DRX定时器计数的用户设备, 包括:
接收模块, 用于接收来自网络侧设备的用于 DRX定时器计数的信息, 其中所述用于
DRX定时器计数的信息是所述网络侧设备根据 TDD配置变更情况确定的;
计数模块, 用于根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
用户设备在能够获取多套 TDD配置的情况下,根据所述用于 DRX定时器计数的信息 确定 PDCCH子帧,对 DRX定时器计数,从而实现针对 dynamic TDD场景下进行 DRX定 时器计数, 提高了网络性能。
第一种具体的实现方式中, 所述用于 DRX定时器计数的信息为***信息块 SIB 1中通 知的 TDD配置信息;
所述接收模块具体用于: 通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD配置 信息的 SIB1和 MBSFN子帧的位置信息;
所述计数模块具体用于:
仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1 中指示的 TDD 配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH 子帧对 DRX定时器计数。
或者
所述用于 DRX定时器计数的信息为***信息块 SIB1中通知的 TDD配置信息; 所述接收模块具体用于:
通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD配置 信息的 SIB1 ;
所述计数模块具体用于:
仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1 中指示的 TDD 配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第二种具体的实现方式中, 所述用于 DRX定时器计数的信息为***信息块 SIB1中通 知的 TDD配置信息和用于下行链路传输的特定子帧的位置信息,或者 SIB1中通知的 TDD 配置信息和 MBSFN子帧位置信息;
所述接收模块具体用于:
通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数 的信息的 SIB1 和用于下行链路传输的特定子帧的位置信息, 或者通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和 MBSFN 子帧位置信息;
所述计数模块具体用于:
仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD 配置信息和收到的用于下行链路传输的特定子帧的位置信息, 或者仅根据包含非 TDD 配 置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和 MBSFN子帧位 置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第三种具体的实现方式中, 所述用于 DRX定时器计数的信息为需要变更的 TDD配置 信息;
所述计数模块具体用于:
根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧 对 DRX定时器计数。
具体的, 所述计数模块具体用于: 根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的需要变更的 TDD配 置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或根据收到的 MIB中的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX 定时器计数; 或根据包含 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或根 据包含 TDD配置变更指示信息的寻呼消息对应的特定 SIB中的需要变更的 TDD配置信息 确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数根据包含需要变更的 TDD配置信息的专用信令确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器 计数。
第四种具体的实现方式中, 所述接收模块还用于:
接收来自网络侧设备的 MBSFN子帧的位置信息或用于下行链路传输的特定子帧的位 置信息;
所述计数模块具体用于:
若接收 MBSFN子帧的位置信息,根据需要变更的 TDD配置信息在除 MBSFN子帧之 外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 若接 收用于下行链路传输的特定子帧的位置信息, 根据需要变更的 TDD 配置信息和用于下行 链路传输的特定子帧的位置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定 时器计数。
第五种具体的实现方式中, 所述用于 DRX定时器计数的信息为用于下行链路传输的 特定子帧的位置信息;
所述计数模块具体用于:
根据用于下行链路传输的特定子帧的位置信息确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
第六种具体的实现方式中, 所述用于 DRX定时器计数的信息为支持动态 TDD配置的 小区的小区信息;
所述计数模块具体用于:
在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确定 PDCCH子帧, 并根 据确定的 PDCCH子帧对 DRX定时器计数。
第七种具体的实现方式中, 所述用于 DRX定时器计数的信息为用于通知 TDD配置需 要变更的指示信息;
所述计数模块具体用于:
在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD配置确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。 进一步, 所述计数模块还用于:
根据用于 DRX定时器计数的信息确定需要变更 TDD配置后, 在子帧 n到子帧 n+k-1 中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH 子帧对 DRX定时器计数,在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器 计数;
其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
本发明实施例提供的一种 DRX定时器计数的***, 包括:
网络侧设备, 用于根据 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX定 时器计数的信息; 将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用户 设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数;
用户设备 , 用于接收来自网络侧设备的用于 DRX定时器计数的信息; 根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
本发明实施例网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以 使用户设备在能够获取多套 TDD配置的情况下,根据所述用于 DRX定时器计数的信息确 定 PDCCH子帧, 对 DRX定时器计数, 从而实现针对 dynamic TDD场景下进行 DRX定 时器计数, 提高了网络性能。 附图说明 图 1为背景技术中异构网络示意图;
图 2为背景技术中 DRX周期示意图;
图 3为本发明实施例 DRX定时器计数的***结构示意图;
图 4为本发明实施例 DRX定时器计数的***中网络侧设备示意图之一;
图 5为本发明实施例 DRX定时器计数的***中用户设备示意图之一;
图 6为本发明实施例网络侧设备通知用户设备进行 DRX定时器计数的方法流程示意 图;
图 7为本发明实施例用户设备进行 DRX定时器计数的方法流程示意图;
图 8为本发明实施例 DRX定时器计数的***中网络侧设备示意图之二;
图 9为本发明实施例 DRX定时器计数的***中用户设备示意图之二。 具体实施方式 本发明实施例网络侧设备将用于 DRX定时器计数的信息通知用户设备, 以使用户设 备根据用于 DRX定时器计数的信息对 DRX定时器计数,从而实现针对 dynamic TDD场景 下进行 DRX定时器计数, 提高了网络性能。
在下面的说明过程中, 先从网络侧和用户设备侧的配合实施进行说明, 最后分别从网 络侧与用户设备侧的实施进行说明, 但这并不意味着二者必须配合实施, 实际上, 当网络 侧与用户设备侧分开实施时, 也解决了分别在网络侧、 用户设备侧所存在的问题, 只是二 者结合使用时, 会获得更好的技术效果。
如图 3所示, 本发明实施例 DRX定时器计数的***包括: 网络侧设备 10和用户设备
20。
网络侧设备 10, 用于根据 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX 定时器计数的信息; 将用于 DRX定时器计数的信息通知用户设备;
用户设备 20 ,用于接收来自网络侧设备的用于 DRX定时器计数的信息;根据用于 DRX 定时器计数的信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
其中, 网络侧设备 10确定需要通知给用户设备的用于 DRX定时器计数的信息的方式 有很多, 下面分别进行介绍。
方式一、 网络侧设备将 SIB1中通知的 TDD配置信息作为用于 DRX定时器计数的信 息; 将包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD配置信息的 SIB1 通过广播发送给用户设备;
用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含需要变更的 TDD 配置信息的 SIB1 ; 仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB 1中指示的 TDD配置信息( legacy TDD配置通知方式中通知的 TDD配置)确定 PDCCH 子帧 ( PDCCH-subframe ) , 并根据确定的 PDCCH子帧对 DRX定时器计数。
其中, SIB用于包含实际的***信息。
方式一进一步可以通知 UE 多媒体广播多播业务单频网络 ( Multimedia Broadcast multicast service Single Frequency Network, MBSFN )子帧的位置信息, UE考虑 legacy TDD 通知方式中通知的 TDD配置中除去 MBSFN之外的子帧配置确定 PDCCH-subframe, 统计 DRX定时器长度。
用户设备通过 SIB1获知小区 TDD配置( Legacy TDD配置), 该配置是用户设备最初 接入网络时通过读取***广播获知的。 当支持动态 TDD配置的小区后续发生 TDD UL/DL 配置变更时, 或者 per UE的小区 TDD配置发生变更时, 小区归属基站或其他基站(如宏 基站)通过广播通知对应的用户设备需要变更的 TDD配置信息和 MBSFN子帧的位置信息。 所谓 Per UE的小区 TDD 配置是指 e B为某个 UE专门配置的、 区别于小区级 TDD配置 的一个 TDD配置, 该 UE使用专门为其配置的 UL/DL子帧配置进行工作。
釆用广播形式通知用户设备 TDD配置变更时, 可以釆用以下几种通知方式: 广播方式 1 : 通过 Paging (寻呼 ) + SIB1的方式(包含非 TDD配置变更指示信息的 寻呼消息 +包含需要变更的 TDD配置信息的 SIB1 ), 通知 UE TDD配置变更;
广播方式 2: 主信息块 ( Master Information Block, MIB )通知中携带的 TDD配置的 方式, 通知 UE TDD变更;
广播方式 3: 通过 Paging ( TDD配置变更指示) + SIB1的方式(类似地震和海啸预警 ***( Earthquake and Tsunami Warning System, ETWS ) ), 通知 UE TDD变更;
广播方式 4: 通过 Paging ( TDD配置变更指示 ) + new SIB的方式(类似 ETWS ), 通 知 UE TDD变更。
这里 new SIB是一种新的 SIB, 与现有的 SIB不同的。 现有的 SIB可以参见 3GPP TS 36.331协议。
当网络侧设备釆用专用信令形式(如 PDCCH子帧)通知 UE TDD配置变更时, 通知 UE的可以是一套小区级 TDD配置, 或者也可以是一套 UE级别的 TDD配置。
用户设备通过广播获知小区 legacy TDD配置 (按照 R8机制获取, 即广播方式 1 )和 MBSFN子帧位置(如把 MBSFN子帧当做 blank subframe看待), 并根据 TDD配置中除去 MBSFN之外的子帧配置确定 PDCCH-subframe,计数 DRX定时器。若后续动态 TDD配置 发生变更时, 通过广播方式 1方式通知 UE TDD配置变更, 则 UE收到 Paging后, 通过在 BCCH modification period 获得的更新的 TDD 配置和 MBSFN 子帧位置确定 PDCCH-subframe, 计数 DRX定时器; 若后续 e B在动态 TDD配置变更时, 通过广播方 式 2\3\4或专用信令方式通知 UE TDD配置变更, UE始终按照 legacy TDD配置中除去 MBSFN之外的子帧配置确定 PDCCH-subframe, 进行 DRX Timer计数;
或者, 在广播中不通知 MBSFN子帧位置时, 用户设备通过广播获知小区 legacy TDD 配置 (按照 R8机制获取, 即广播方式 1 ), 并根据所给 TDD配置确定 PDCCH-subframe, 计数 DRX定时器。 若后续动态 TDD配置发生变更时, 通过广播方式 1方式通知 UE TDD 配置变更, 则 UE收到 Paging后, 通过在 BCCH modification period获得的更新的 TDD配 置确定 PDCCH-subframe, 计数 DRX定时器; 若后续 eNB在动态 TDD配置变更时, 通过 广播方式 2\3\4或专用信令方式通知 UE TDD配置变更, UE始终按照 legacy TDD配置确 定 PDCCH-subframe , 进行 DRX Timer计数。
具体的, 设通过广播 UE获知小区 legacy TDD 配置为配置 1 , UE按照 TDD配置 1 的下行子帧和 DwPTS子帧统计以 PDCCH子帧为计数单位的 DRX定时器时长。后续, eNB 通过广播(如广播通知动态 TDD配置变更方式 2、 3、 4 )或专用信令通知 UE TDD配置变 更, 则 UE收到 eNB通知的 TDD配置变更消息后, 依旧按照配置 1的下行子帧和 DwPTS 子帧确定 PDCCH子帧 pattern , 计数 DRX定时器。
也就是说, 用户设备仅根据广播中的 TDD配置确定 PDCCH子帧 PDCCH-subframe, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳的, 考虑到 TDD UL/DL配置变更时延, 若 dynamic TDD配置变更釆用广播方式 1通知用户设备, 用户设备在子帧 n通过广播方式收到更新的 TDD配置, 用户设备将在子 帧 n+k使用 legacy TDD配置更新方式通知的 TDD配置统计 PDCCH-subframe, 进行定时 器计数和 PDCCH监听。在子帧 n到子帧 n+k-1期间,用户设备和基站仍将使用原先的 TDD 配置或按照参考 TDD 配置 (通常, 不论小区 TDD UL/DL 配置如何变更, DL reference configuration均为 UL/DL配置 5 , 参考 TDD配置可由基站通过广播通知给 UE, 也可以是 UE和基站间预先约定好的), 统计 PDCCH-subframe, 进行 DRX定时器计数和 PDCCH子 帧监听。 其中 k的取值可以是 UE和基站间预先约定的或者在协议中给出默认值, 也可以 是基站通过广播或显式信令方式通知的; 具体取值可以是相对值, 也可以是绝对值(如网 络侧通知的固定某个子帧为 TDD UL/DL配置变更时刻)。
即用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到 子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数,在子帧 n+k之后按照 Legacy TDD配置(或更新的 legacy TDD配置)或特定 TDD配置确定 PDCCH子帧, 并才 居确定的 PDCCH子帧对 DRX定时 器计数; 网络侧设备在用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置 后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子 帧 n+k之后按照 legacy方式通知的 TDD配置 (Legacy TDD配置或更新的 legacy TDD配 置)或特定 TDD配置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
特定 TDD配置为目前已有的一种 TDD配置(具体可以参见 3GPP TS 36.211 )或新的 TDD配置。具体哪种 TDD配置作为特定 TDD配置可以在协议中规定;也可以由高层配置; 还可以网络侧和用户设备侧协商确定。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式二、 网络侧设备将***信息块 SIB 1中通知的 TDD配置信息和用于下行链路传输 的特定子帧的位置信息, 或者将 SIB1中通知的 TDD配置信息和 MBSFN子帧位置信息作 为用于 DRX定时器计数的信息, 将包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者将包含 非 TDD 配置变更指示信息的寻呼消息、 包含用于 DRX 定时器计数的信息的 SIB1 和 MBSFN子帧位置信息通过广播发送给用户设备;
相应的, 用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的 需要变更的 TDD 配置信息和收到的用于下行链路传输的特定子帧的位置信息, 或者仅根 据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息 和 MBSFN子帧位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计 数。
方式二进一步考虑 TDD 配置中用于下行链路传输的子帧的位置 (下行传输方向不变 的子帧)确定 PDCCH-subframe , 统计 DRX定时器长度。
方式二进一步通知用于下行链路传输的特定子帧的位置信息,考虑 legacy TDD配置和 用于下行链路传输的特定子帧的位置信息确定 PDCCH-subframe, 统计 DRX定时器长度。
用户设备通过 SIB1获知小区 TDD配置( Legacy TDD配置), 该配置是用户设备最初 接入网络时通过读取***广播获知的。 当支持动态 TDD配置的小区后续发生 TDD UL/DL 配置变更时, 或者 per UE的小区 TDD配置发生变更时, 小区归属基站或其他基站(如宏 基站)通过广播通知对应的用户设备需要变更的 TDD 配置信息和用于下行链路传输的特 定子帧的位置信息。所谓 Per UE的小区 TDD 配置是指 eNB为某个 UE专门配置的、 区别 于小区级 TDD配置的一个 TDD配置,该 UE使用专门为其配置的 UL/DL子帧配置进行工 作。
釆用广播形式通知用户设备 TDD配置变更时, 可以釆用以下几种通知方式: 广播方式 1 : 通过 Paging + SIB1的方式(包含非 TDD配置变更指示信息的寻呼消息 + 包含需要变更的 TDD配置信息的 SIB1 ), 通知 UE TDD配置变更;
广播方式 2: MIB通知中携带的 TDD配置的方式, 通知 UE TDD变更;
广播方式 3: 通过 Paging ( TDD配置变更指示 ) + SIB1的方式(类似 ETWS ), 通知 UE TDD变更;
广播方式 4: 通过 Paging ( TDD配置变更指示 ) + new SIB的方式(类似 ETWS ), 通 知 UE TDD变更。
当网络侧设备釆用专用信令形式通知 UE TDD配置变更时, 通知 UE的可以是一套小 区级 TDD配置, 或者也可以是一套 UE级别的 TDD配置。
用户设备通过广播获知小区 legacy TDD配置 (按照 R8机制获取, 即广播方式 1 )和 用于下行链路传输的子帧的位置位置, 并根据 TDD 配置中用于下行链路传输的子帧的位 置确定 PDCCH-subframe, 计数 DRX定时器。 若后续动态 TDD配置发生变更时, 通过广 播方式 1方式通知 UE TDD配置变更, 则 UE收到 Paging后, 通过在 BCCH modification period 获得的更新的 TDD 配置和用于下行链路传输的子帧的位置位置确定 PDCCH-subframe, 计数 DRX定时器; 若后续 eNB在动态 TDD配置变更时, 通过广播方 式 2\3\4或专用信令方式通知 UE TDD配置变更, UE始终按照 legacy TDD配置中用于下 行链路传输的子帧的位置确定 PDCCH-subframe, 进行 DRX Timer计数。
当 UE通过广播获知 legacy TDD配置时 (按照 R8机制获取 ), 同时获知 eNB指示的 特定用于 DL传输的 Subframe时(特定用于 DL传输的 Subframe, eNB可以釆用以下形式 通知: 用于 DL传输的 Subframe集合; 不用于 DL传输的 Subframe集合(如哪些子帧为 flexible subframe, 所谓 flexible subframe即按 TDD配置看子帧配置为下行方向, 但是不用 于下行调度 /传输的子帧)), UE将始终按照获知的 legacy TDD配置(按照 R8机制获取的) 和特定用于 DL传输的 Subframe, 确定 PDCCH-subframe, 进行 DRX Timer计数。
也就是说 , 用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中 的需要变更的 TDD 配置信息和收到的用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧 PDCCH-subframe , 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳的, 考虑到 TDD UL/DL配置变更时延, 若 dynamic TDD配置变更釆用广播方式 1通知用户设备, 用户设备在子帧 n通过广播方式收到更新的 TDD配置, 用户设备将在子 帧 n+k使用 legacy TDD配置更新方式通知的 TDD配置统计 PDCCH-subframe, 进行定时 器计数和 PDCCH监听。在子帧 n到子帧 n+k-1期间,用户设备和基站仍将使用原先的 TDD 配置或按照参考 TDD 配置 (通常, 不论小区 TDD UL/DL 配置如何变更, DL reference configuration均为 UL/DL配置 5 , 参考 TDD配置可由基站通过广播通知给 UE, 也可以是 UE和基站间预先约定好的), 统计 PDCCH-subframe, 进行 DRX定时器计数和 PDCCH子 帧监听。 其中 k的取值可以是 UE和基站间预先约定的或者在协议中给出默认值, 也可以 是基站通过广播或显式信令方式通知的; 具体取值可以是相对值, 也可以是绝对值(如网 络侧通知的固定某个子帧为 TDD UL/DL配置变更时刻)。
即用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到 子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数,在子帧 n+k之后按照 Legacy TDD配置(或更新的 legacy TDD配置)或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时 器计数; 网络侧设备在用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置 后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子 帧 n+k之后按照 legacy方式通知的 TDD配置 ( Legacy TDD配置或更新的 legacy TDD配 置)或特定 TDD配置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式三、 网络侧设备将需要变更的 TDD配置信息作为用于 DRX定时器计数的信息将 需要变更的 TDD配置信息通过广播或专用信令发送给用户设备;
相应的, 用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确 定的 PDCCH子帧对 DRX定时器计数。 方式三中才 居 dynamic TDD 配置确定 PDCCH-subframe, 统计 DRX定时器长度; dynamic TDD配置通过广播方式通知给用户设备。
UE通过 SIB1获知小区 TDD配置( legacy TDD配置), 该配置是 UE最初接入网络时 通过读取***广播获知的。当支持动态 TDD配置的小区后续发生 TDD UL/DL配置变更时, 小区归属基站或其他基站(如宏基站)通过广播方式通知对应 UE新的 TDD 配置信息。 UE收到 eNB通过广播方式更新的 TDD配置后,按照由于 dynamic TDD新获知的 TDD配 置确定哪些子帧为 PDCCH-subframe,并根据确定的 PDCCH-subframe统计以 PDCCH子帧 为计数单位的 DRX定时器的时间长度, 监听 PDCCH子帧, 进行 DRX定时器计数。
釆用广播形式通知用户设备 TDD配置变更时, 可以釆用以下几种通知方式: 广播方式 1 : 通过 Paging + SIB1的方式(包含非 TDD配置变更指示信息的寻呼消息 + 包含需要变更的 TDD配置信息的 SIB1 ), 通知 UE TDD配置变更;
广播方式 2: MIB通知中携带的 TDD配置的方式, 通知 UE TDD变更;
广播方式 3: 通过 Paging ( TDD配置变更指示 ) + SIB1的方式(类似 ETWS ), 通知 UE TDD变更;
广播方式 4: 通过 Paging ( TDD配置变更指示 ) + new SIB的方式(类似 ETWS ), 通 知 UE TDD变更。
也就是说, 网络侧设备将包含非 TDD 配置变更指示信息的寻呼消息和包含需要变更 的 TDD配置信息的 SIB 1发送给用户设备 , 相应地, 用户设备根据包含非 TDD配置变更 指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息确定 PDCCH子帧, 并根 据确定的 PDCCH子帧对 DRX定时器计数; 或
网络侧设备将包含需要变更的 TDD配置信息的 MIB发送给用户设备 , 相应地, 用户 设备根据收到的 MIB 中的需要变更的 TDD 配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或
网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信 息的 SIB 1发送给用户设备 , 相应地, 用户设备根据包含 TDD配置变更指示信息的寻呼消 息对应的 SIB1 中的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH 子帧对 DRX定时器计数; 或
网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信 息的特定 SIB发送给用户设备 , 相应地, 用户设备根据包含 TDD配置变更指示信息的寻 呼消息对应的特定 SIB中的需要变更的 TDD配置信息确定 PDCCH子帧, 并# ^据确定的 PDCCH子帧对 DRX定时器计数; 或
网络侧设备将需要变更的 TDD配置信息通过专用信令如 PDCCH信令发送给所述用户 设备,相应地, 用户设备根据包含需要变更的 TDD配置信息的专用信令如 PDCCH信令确 定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
当网络侧设备釆用专用信令形式通知 UE TDD配置变更时, 通知 UE的可以是一套小 区级 TDD配置, 或者也可以是一套 UE级别的 TDD配置。 UE获知通过专用信令通知的 TDD配置后, 按照专用信令通知的 TDD配置确定 PDCCH-subframe , 进行 DRX Timer计 数。
具体的, 设 UE最初接入网络时通过广播获知小区 legacy TDD 配置为配置 0, UE按 照 TDD配置 0的下行子帧和 DwPTS子帧计数以 PDCCH子帧为计数单位的 DRX定时器。 后续, 若网络侧设备通过广播方式 2\3\4或专用信令方式通知 UE TDD配置变更(如 TDD 配置变更为配置 1 ), 则 UE收到网络侧设备通知的 TDD配置变更消息后, 按照获知的更 新的 TDD配置 ( TDD配置 1 )统计 PDCCH-subframe, 即按照 TDD配置 1的下行子帧和 DwPTS子帧计数 DRX定时器; 若 eNB通过广播方式 1方式通知 UE TDD配置变更为 1 , 则 UE收到 Paging后, 通过在 BCCH modification period获得的更新的 TDD配置 1 , 按照 TDD配置 1的下行子帧和 DwPTS子帧计数 DRX定时器。
较佳的, 考虑到 TDD UL/DL配置变更时延, 若 dynamic TDD配置广播方式 1通知用 户设备, 用户设备在子帧 n通过广播方式 1收到更新的 TDD配置, 用户设备将在子帧 n+k 使用 legacy TDD 更新方式更新的 TDD 配置统计 PDCCH-subframe, 进行定时器计数和 PDCCH监听。在子帧 n到子帧 n+k-1期间, 用户设备和基站仍将使用原先的 TDD 配置或 按照参考 TDD配置(通常,不论小区 TDD UL/DL配置如何变更, DL reference configuration 均为 UL/DL配置 5 , 参考 TDD配置可由基站通过广播通知给 UE, 也可以是 UE和基站间 预先约定好的), 统计 PDCCH-subframe, 进行 DRX定时器计数和 PDCCH子帧监听; 若 dynamic TDD配置变更釆用广播方式 2\3\4或专用信令方式通知用户设备, 用户设备在子 帧 n通过广播方式 2\3\4或专用信令方式收到更新的 TDD配置, 用户设备将在子帧 n+k使 用更新的 TDD配置统计 PDCCH-subframe, 进行定时器计数和 PDCCH监听。在子帧 n到 子帧 n+k-1期间, 用户设备和基站仍将使用原先的 TDD 配置或按照参考 TDD配置, 统计 PDCCH-subframe, 进行 DRX定时器计数和 PDCCH子帧监听。 其中 k的取值可以是 UE 和基站间预先约定的或者在协议中给出默认值, 也可以是基站通过广播或显式信令方式通 知的; 具体取值可以是相对值, 也可以是绝对值(如网络侧通知的固定某个子帧为 TDD UL/DL配置变更时刻)。
即用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到 子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数,在子帧 n+k之后按照变更之后的 TDD配置或特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 网络侧设备在用 户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到子帧 n+k- 1 中按照变更之前的 TDD配置或特定 TDD配置进行处理,在子帧 n+k之后按照 legacy方式 通知的 TDD配置或变更之后的 TDD配置或特定 TDD配置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式四、 方式四与方式三类似, 区别只在于网络侧设备还将 MBSFN子帧的位置信息 或用于下行链路传输的特定子帧的位置信息发送给用户设备; 相应的, 若用户设备接收 MBSFN子帧的位置信息, 用户设备根据需要变更的 TDD配置信息在除 MBSFN子帧之外 的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数;
若用户设备接收用于下行链路传输的特定子帧的位置信息, 用户设备根据需要变更的
TDD配置信息和用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数。
方式五、 网络侧设备将用于下行链路传输的特定子帧的位置信息作为用于 DRX定时 器计数的信息, 将用于下行链路传输的特定子帧的位置信息通过广播或专用信令通知给用 户设备;
相应的, 用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式五中, 用户设备根据广播或专用信令中特定用于下行链路传输的子帧进行计数 (若有那种新的 flexible subframe类型配置出现的话, 这种子帧不用于 PDCCH subframe 计数), 统计 DRX定时器长度。
网络侧设备通过广播或专用信令通知给用户设备的方式与方式三的通知方式类似, 在 此不再赘述。
用于下行链路传输的特定子帧的位置信息包括但不限于下列信息中的一种:
TDD配置和用于 DL传输的 Subframe集合;
TDD配置和其中不用于 DL传输的 Subframe集合(如哪些子帧为 flexible subframe ); 用于 DL传输的 Subframe集合;
不用于 DL传输的 Subframe集合(如哪些子帧为 flexible subframe );
通知当前用于 DL传输的 subframe。
例如, 若网络侧设备通过广播通知 UE小区 TDD配置为配置 1 , 则 UE按照 TDD配 置 1的下行子帧和 DwPTS子帧统计以 PDCCH-subframe为计数单位的 DRX定时器时长。 如后续基站通过广播或专用信令通知 UE子帧 9为 flexible subframe, 则 UE按照 TDD配 置 1的下行子帧 (除子帧 9 )和 DwPTS子帧统计以 PDCCH子帧为计数单位的 DRX定时 器时长。 例如, 若网络侧设备通过广播通知 UE小区 TDD配置为配置 1 , 且子帧 9为 flexible subframe, 则 UE按照 TDD配置 1的下行子帧 (除子帧 9 )和 DwPTS子帧统计 DRX定时 器时长。 若基站后续通过广播或专用信令通知 UE更新 TDD配置为配置 3 , 且子帧 7为 flexible subframe, 则 UE按照 TDD配置 3的下行子帧 (除子帧 7 )和 DwPTS子帧统计以 PDCCH子帧为计数单位的 DRX定时器时长。
较佳的, 考虑到 TDD UL/DL配置变更时延, 若 dynamic TDD配置变更釆用广播方式
1通知用户设备, 用户设备在子帧 n通过广播方式 1收到更新的 TDD配置, 用户设备将在 子帧 n+k使用 legacy TDD配置更新方式通知的 TDD配置统计 PDCCH-subframe, 进行定 时器计数和 PDCCH监听。 在子帧 n到子帧 n+k-1期间, 用户设备和基站仍将使用原先的 TDD 配置或按照参考 TDD配置(通常,不论小区 TDD UL/DL配置如何变更, DL reference configuration均为 UL/DL配置 5 , 参考 TDD配置可由基站通过广播通知给 UE, 也可以是
UE和基站间预先约定好的), 统计 PDCCH-subframe, 进行 DRX定时器计数和 PDCCH子 帧监听; 若 dynamic TDD配置变更釆用广播方式 2\3\4或专用信令方式通知用户设备, 用 户设备在子帧 n通过广播方式 2\3\4或专用信令方式收到更新的 TDD配置, 用户设备将在 子帧 n+k使用更新的 TDD配置统计 PDCCH-subframe, 进行定时器计数和 PDCCH监听。 在子帧 n到子帧 n+k-1期间, 用户设备和基站仍将使用原先的 TDD 配置或按照参考 TDD 配置, 统计 PDCCH-subframe , 进行 DRX定时器计数和 PDCCH子帧监听。 其中 k的取值 可以是 UE和基站间预先约定的或者在协议中给出默认值, 也可以^ &站通过广播或显式 信令方式通知的; 具体取值可以是相对值, 也可以是绝对值(如网络侧通知的固定某个子 帧为 TDD UL/DL配置变更时刻)。
即用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到 子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数, 在子帧 n+k之后按照变更之后的 TDD 配置确定
PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 网络侧设备在用户设备根 据用于 DRX定时器计数的信息确定需要变更 TDD配置后, 在子帧 n到子帧 n+k-1中按照 变更之前的 TDD配置或特定 TDD配置进行处理,在子帧 n+k之后按照 legacy方式通知的
TDD配置或变更之后的 TDD配置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式六、 网络侧设备将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器计 数的信息, 将支持动态 TDD配置的小区的小区信息通过广播或专用信令通知给用户设备; 相应的, 用户设备在接入到支持动态 TDD 配置的小区后, 根据特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式六中, 始终按照参考 TDD配置, 确定 PDCCH-subframe, 统计 DRX定时器长度。 不论 TDD配置如何变更, 以哪种方式通知变更, UE始终按照参考 TDD配置 (比如 配置 5 )确定 PDCCH-subframe, 统计 DRX定时器长度。 参考 TDD配置可以是预配置给 UE的, 也可以是 eNB广播给 UE的。
网络侧设备通过广播、 专用信令等方式, 通知 UE哪些小区支持动态 TDD配置;
UE根据通知, 当其工作在对应 dynamic TDD小区上时, 按照参考 TDD配置(比如配 置 5 ) 中的 PDCCH-subframe统计 DRX定时器长度。
网络侧设备通过广播或专用信令通知给用户设备的方式与方式三的通知方式类似, 在 此不再赘述。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式七、 网络侧设备将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时器 计数的信息, 将用于通知 TDD 配置需要变更的指示信息通过广播或专用信令通知给用户 设备;
相应的, 用户设备在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式七中, 用户设备获知 TDD 配置变更, 此后用户设备按照参考 TDD 配置, 确定 PDCCH-subframe , 统计 DRX定时器长度。
通常, 不论小区 TDD UL/DL配置如何变更, 参考 TDD配置唯一(比如为配置 5 )。 用户设备通过 R8方法, 通过 SIB1获知小区 TDD配置 ( Legacy TDD配置), 该配置 是用户设备最初接入网络时通过读取***广播获知的。 当支持动态 TDD 配置的小区后续 发生 TDD配置变更时,或者 per UE的小区 TDD配置发生变更时, 小区归属基站或其他基 站(如宏基站)通过广播或者专用信令通知对应 UE TDD 配置变更。 UE获知小区 TDD 配置变更后, 按照参考 TDD配置 (比如配置 5 )确定 PDCCH-subframe, 统计 DRX定时 器长度。
较佳的, 考虑到 TDD配置变更时延, 若用户设备在子帧 n收到 TDD配置变更指示, 用户设备和基站将在子帧 n+k同时使用参考 TDD配置 (比如配置 5 )进行定时器计数和 PDCCH监听。其中 k的取值可以是 UE和基站间预先约定的或者在协议中给出默认值,也 可以是基站通过广播或显式信令方式通知的;具体取值可以是相对值,也可以是绝对值(如 网络侧通知的固定某个子帧为 TDD UL/DL配置变更时刻)。而在子帧 n到子帧 n+k-1期间, 用户设备和基站仍将使用原先的 TDD 配置或特定 TDD 配置 (参考 TDD 配置) 确定 PDCCH-subframe。 计数 DRX定时器。 即用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到 子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数, 在子帧 n+k之后按照特定 TDD配置确定 PDCCH子 帧,并根据确定的 PDCCH子帧对 DRX定时器计数;网络侧设备在用户设备根据用于 DRX 定时器计数的信息确定需要变更 TDD配置后, 在子帧 n到子帧 n+k-1 中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子帧 n+k之后按照 legacy方式通知的 TDD配置 或变更之后的 TDD配置或特定 TDD配置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
如图 4所示, 本发明实施例 DRX定时器计数的***中的网络侧设备包括: 确定模块 400和通知模块 410。
确定模块 400, 用于根据 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX 定时器计数的信息;
通知模块 410, 用于将用于 DRX定时器计数的信息通知用户设备, 以使用户设备根据 用于 DRX定时器计数的信息对 DRX定时器计数。
较佳地, 确定模块 400将***信息块 SIB1中通知的 TDD配置信息作为用于 DRX定 时器计数的信息;
相应的, 通知模块 410将包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更 的 TDD配置信息的 SIB 1通过广播发送给用户设备 , 以使用户设备仅根据包含非 TDD配 置变更指示信息的寻呼消息对应的收到的 SIB 1中指示的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 确定模块 400将***信息块 SIB 1中通知的 TDD配置信息, 和用于下行链路 传输的特定子帧的位置信息或 MBSFN子帧位置信息作为用于 DRX定时器计数的信息; 相应的, 通知模块 410将包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX 定时器计数的信息的 SIB1 和用于下行链路传输的特定子帧的位置信息, 或者将包含非
TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和 MBSFN 子帧位置信息通过广播发送给用户设备, 以使用户设备仅根据包含非 TDD 配置变更指示 信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和收到的用于下行链路传输的 特定子帧的位置信息, 或者仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD配置信息和 MBSFN子帧位置信息确定 PDCCH子帧,并根据确定的
PDCCH子帧对 DRX定时器计数。
较佳地,确定模块 400将需要变更的 TDD配置信息作为用于 DRX定时器计数的信息; 相应的, 通知模块 410将需要变更的 TDD配置信息通过广播或专用信令发送给用户 设备, 以使用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数。
比如通知模块 410 将包含非 TDD 配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信息的 SIB1发送给用户设备; 或将包含需要变更的 TDD配置信息的 MIB发送 给用户设备; 或将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信 息的 SIB1发送给用户设备; 或将包含 TDD配置变更指示信息的寻呼消息和包含需要变更 的 TDD配置信息的特定 SIB发送给用户设备; 或将需要变更的 TDD配置信息通过专用信 令如 PDCCH信令发送给所述用户设备。
较佳地, 通知模块 410将 MBSFN子帧的位置信息发送给用户设备, 以使用户设备根 据需要变更的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧,并根 据确定的 PDCCH子帧对 DRX定时器计数;或将用于下行链路传输的特定子帧的位置信息 发送给用户设备, 以使用户设备根据需要变更的 TDD 配置信息和用于下行链路传输的特 定子帧的位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 确定模块 400将用于下行链路传输的特定子帧的位置信息作为用于 DRX定 时器计数的信息;
相应的, 通知模块 410将用于下行链路传输的特定子帧的位置信息通过广播或专用信 令通知给用户设备, 以使用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地,确定模块 400将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器 计数的信息, 以使用户设备在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确 定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地,确定模块 400将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时 器计数的信息, 以使用户设备在收到用于通知 TDD 配置需要变更的指示信息后, 根据特 定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地,确定模块 400在用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD 配置后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配 置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
如图 5所示,本发明实施例 DRX定时器计数的***中的用户设备包括:接收模块 500 和计数模块 510。
接收模块 500, 用于接收来自网络侧设备的用于 DRX定时器计数的信息, 其中用于 DRX定时器计数的信息是网络侧设备根据 T D D配置变更情况确定的;
计数模块 510, 用于根据用于 DRX定时器计数的信息对 DRX定时器计数。
较佳地, 用于 DRX定时器计数的信息为***信息块 SIB 1中通知的 TDD配置信息; 接收模块 500通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含需要变 更的 TDD配置信息的 SIB 1;
计数模块 510仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB 1中 指示的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 用于 DRX定时器计数的信息为需要变更的 TDD配置信息;
接收模块 500通过广播接收包含非 TDD配置变更指示信息的寻呼消息、包含用于 DRX 定时器计数的信息的 SIB1 和用于下行链路传输的特定子帧的位置信息, 或者接收包含非
TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和 MBSFN 子帧位置信息;
计数模块 510仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的需要 变更的 TDD 配置信息和收到的用于下行链路传输的特定子帧的位置信息, 或者仅根据包 含非 TDD 配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD 配置信息和 MBSFN子帧位置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 用于 DRX定时器计数的信息为需要变更的 TDD配置信息;
计数模块 510根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
比如计数模块 510根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的需 要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计 数; 或根据收到的 MIB中的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或根据包含 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX 定时器计数; 或根据包含 TDD配置变更指示信息的寻呼消息对应的特定 SIB中的需要变 更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或所述用户设备根据包含需要变更的 TDD 配置信息的专用信令如 PDCCH信令确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 接收模块 500接收来自网络侧设备的 MBSFN子帧的位置信息或用于下行链 路传输的特定子帧的位置信息;
计数模块 510若接收 MBSFN子帧的位置信息, 根据需要变更的 TDD配置信息在除
MB SFN子帧之外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定 时器计数; 若接收用于下行链路传输的特定子帧的位置信息, 根据需要变更的 TDD 配置 信息和用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧,并根据确定的 PDCCH 子帧对 DRX定时器计数。
较佳地, 用于 DRX定时器计数的信息为用于下行链路传输的特定子帧的位置信息; 计数模块 510根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根 据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 用于 DRX定时器计数的信息为支持动态 TDD配置的小区的小区信息; 计数模块 510在接入到支持动态 TDD配置的小区后,根据特定 TDD配置确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 用于 DRX定时器计数的信息为用于通知 TDD配置需要变更的指示信息; 计数模块 510在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD配置 确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
较佳地, 计数模块 510根据用于 DRX定时器计数的信息确定需要变更 TDD配置后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数, 在子帧 n+k之后按照 legacy方式通知的 TDD 配置或变更之后的 TDD 配置或特定 TDD 配置确定 PDCCH子帧, 并才 居确定的
PDCCH子帧对 DRX定时器计数;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
基于同一发明构思,本发明实施例中还提供了一种网络侧设备通知用户设备进行 DRX 定时器计数的方法, 及用户设备进行 DRX定时器计数的方法, 由于这些方法解决问题的 原理与本发明实施例 DRX定时器计数的***相似, 因此这些方法的实施可以参见***的 实施, 重复之处不再赘述。
如图 6所示, 本发明实施例网络侧设备通知用户设备进行 DRX定时器计数的方法包 括下列步骤:
步骤 601、网络侧设备根据 TDD配置变更情况,确定需要通知给用户设备的用于 DRX 定时器计数的信息;
步骤 602、 网络侧设备将用于 DRX定时器计数的信息通知用户设备, 以使用户设备根 据用于 DRX定时器计数的信息对 DRX定时器计数。
其中, 网络侧设备确定需要通知给用户设备的用于 DRX定时器计数的信息的方式有 很多, 下面分别进行介绍。
方式一、 网络侧设备将包含非 TDD 配置变更指示信息的寻呼消息、 包含需要变更的
TDD配置信息的 SIB1通过广播发送给用户设备,以使用户设备仅根据包含非 TDD配置变 更指示信息的寻呼消息对应的收到的 SIB1 中的 TDD 配置信息确定 PDCCH 子帧
PDCCH-subframe , 并根据确定的 PDCCH子帧对 DRX定时器计数。 方式一考虑 SIB1中指示的 TDD配置中确定 PDCCH-subframe,统计 DRX定时器长度。 进一步的,方式一可以考虑 TDD配置除去 MB SFN之外的子帧配置确定 PDCCH-subframe , 统计 DRX定时器长度。
釆用广播形式通知用户设备 TDD配置变更时, 可以釆用以下几种通知方式: 广播方式 1: 通过 Paging + SIB 1的方式(包含非 TDD配置变更指示信息的寻呼消息 + 包含需要变更的 TDD配置信息的 SIB1 ), 通知 UE TDD配置变更;
广播方式 2: MIB通知中携带的 TDD配置的方式, 通知 UE TDD变更;
广播方式 3: 通过 Paging ( TDD配置变更指示 ) + SIB1的方式(类似 ETWS ), 通知
UE TDD变更;
广播方式 4: 通过 Paging ( TDD配置变更指示 ) + new SIB的方式(类似 ETWS ), 通 知 UE TDD变更。
当网络侧设备釆用专用信令形式通知 UE TDD配置变更时, 通知 UE的可以是一套小 区级 TDD配置, 或者也可以是一套 UE级别的 TDD配置。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式二、 网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定 时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者将包含非 TDD 配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和 MBSFN子帧 位置信息通过广播发送给用户设备, 以使用户设备仅根据包含非 TDD 配置变更指示信息 的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和收到的用于下行链路传输的特定 子帧的位置信息, 或者仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的 需要变更的 TDD 配置信息和 MBSFN 子帧位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式二只考虑 TDD配置中用于下行链路传输的子帧的位置确定 PDCCH-subframe,统 计 DRX定时器长度。
釆用广播形式通知用户设备 TDD配置变更时, 可以釆用以下几种通知方式: 广播方式 1 : 通过 Paging + SIB1的方式(包含非 TDD配置变更指示信息的寻呼消息 + 包含需要变更的 TDD配置信息的 SIB1 ), 通知 UE TDD配置变更;
广播方式 2: MIB通知中携带的 TDD配置的方式, 通知 UE TDD变更;
广播方式 3: 通过 Paging ( TDD配置变更指示 ) + SIB1的方式(类似 ETWS ), 通知
UE TDD变更;
广播方式 4: 通过 Paging ( TDD配置变更指示 ) + new SIB的方式(类似 ETWS ), 通 知 UE TDD变更。 当网络侧设备釆用专用信令形式通知 UE TDD配置变更时, 通知 UE的可以是一套小 区级 TDD配置, 或者也可以是一套 UE级别的 TDD配置。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式三、 网络侧设备将需要变更的 TDD配置信息作为用于 DRX定时器计数的信息将 需要变更的 TDD 配置信息通过广播或专用信令发送给用户设备, 以使用户设备根据收到 的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时 器计数。
方式三中才 居 dynamic TDD 配置确定 PDCCH-subframe, 统计 DRX定时器长度; dynamic TDD配置通过广播方式通知给用户设备。
釆用广播形式通知用户设备 TDD配置变更时, 可以釆用以下几种通知方式: 广播方式 1 : 通过 Paging + SIB1的方式(包含非 TDD配置变更指示信息的寻呼消息 + 包含需要变更的 TDD配置信息的 SIB1 ), 通知 UE TDD配置变更;
广播方式 2: MIB通知中携带的 TDD配置的方式, 通知 UE TDD变更;
广播方式 3: 通过 Paging ( TDD配置变更指示 ) + SIB1的方式(类似 ETWS ), 通知
UE TDD变更;
广播方式 4: 通过 Paging ( TDD配置变更指示 ) + new SIB的方式(类似 ETWS ), 通 知 UE TDD变更。
即, 网络侧设备将包含非 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD 配置信息的 SIB 1发送给用户设备; 或
网络侧设备将包含需要变更的 TDD配置信息的 MIB发送给用户设备; 或
网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信 息的 SIB 1发送给用户设备; 或
网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信 息的特定 SIB发送给用户设备; 或
网络侧设备将需要变更的 TDD配置信息通过专用信令如 PDCCH信令发送给所述用户 设备。
当网络侧设备釆用专用信令形式通知 UE TDD配置变更时, 通知 UE的可以是一套小 区级 TDD配置, 或者也可以是一套 UE级别的 TDD配置。 UE获知通过专用信令通知的 TDD配置后,按照专用信令通知的 TDD配置确定 PDCCH-subframe, 进行 DRX Timer (计 时器)计数。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。 方式四、 方式四与方式三类似, 区别只在于网络侧设备还将 MBSFN子帧的位置信息 或用于下行链路传输的特定子帧的位置信息发送给用户设备。
具体的, 网络侧设备将 MBSFN子帧的位置信息发送给用户设备, 以使用户设备根据 需要变更的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧,并根据 确定的 PDCCH子帧对 DRX定时器计数; 或
网络侧设备将用于下行链路传输的特定子帧的位置信息发送给用户设备, 以使用户设 备根据需要变更的 TDD配置信息和用于下行链路传输的特定子帧的位置信息确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式五、 网络侧设备将用于下行链路传输的特定子帧的位置信息作为用于 DRX定时 器计数的信息, 将用于下行链路传输的特定子帧的位置信息通过广播或专用信令通知给用 户设备。
方式五中, 用户设备根据广播或专用信令中特定用于下行链路传输的子帧进行计数
(若有那种新的 flexible subframe (可变子帧)类型配置出现的话,这种子帧不用于 PDCCH subframe计数), 统计 DRX定时器长度。
网络侧设备通过广播或专用信令通知给用户设备的方式与方式三的通知方式类似, 在 此不再赘述。
用于下行链路传输的特定子帧的位置信息包括但不限于下列信息中的一种:
TDD配置和用于 DL传输的 Subframe集合;
TDD配置和其中不用于 DL传输的 Subframe集合(如哪些子帧为 flexible subframe ); 用于 DL传输的 Subframe集合;
不用于 DL传输的 Subframe集合(如哪些子帧为 flexible subframe );
通知当前用于 DL传输的 subframe。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式六、 网络侧设备将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器计 数的信息, 将支持动态 TDD配置的小区的小区信息通过广播或专用信令通知给用户设备。
方式六中, 始终按照参考 TDD配置, 确定 PDCCH-subframe, 统计 DRX定时器长度。 不论 TDD配置如何变更, 以哪种方式通知变更, UE始终按照参考 TDD配置 (比如 配置 5 )确定 PDCCH-subframe, 统计 DRX定时器长度。 参考 TDD配置可以是预配置给 UE的, 也可以是 e B (演进基站)广播给 UE的。
网络侧设备通过广播、 专用信令等方式, 通知 UE哪些小区支持动态 TDD配置;
UE根据通知, 当其工作在对应 dynamic TDD小区上时, 按照参考 TDD配置(比如配 置 5 ) 中的 PDCCH-subframe统计 DRX定时器长度。 网络侧设备通过广播或专用信令通知给用户设备的方式与方式三的通知方式类似, 在 此不再赘述。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
方式七、 网络侧设备将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时器 计数的信息, 将用于通知 TDD 配置需要变更的指示信息通过广播或专用信令通知给用户 设备。
方式七中, 用户设备获知 TDD 配置变更, 此后用户设备按照参考 TDD 配置, 确定 PDCCH-subframe , 统计 DRX定时器长度。
通常, 不论小区 TDD UL/DL配置如何变更, 参考 TDD配置唯一(比如为配置 5 )。
CA场景下, 若 UE聚合的服务小区发生 TDD UL/DL配置变更, 按照上述类似方式确 定 PDCCH-subframe。
较佳的, 上述方式一〜方式七中, 网络侧设备在用户设备根据用于 DRX定时器计数的 信息确定需要变更 TDD配置后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特 定 TDD配置进行处理, 在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的
TDD配置或特定 TDD配置进行处理;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
如图 7所示, 本发明实施例用户设备进行 DRX定时器计数的方法包括下列步骤: 步骤 701、 用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 其中用于 DRX定时器计数的信息是网络侧设备根据 TDD配置变更情况确定的;
步骤 702、 用户设备根据用于 DRX定时器计数的信息对 DRX定时器计数。
其中, 网络侧设备确定需要通知给用户设备的用于 DRX定时器计数的信息的方式有 很多, 下面分别进行介绍。
方式一、 用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含需 要变更的 TDD配置信息的 SIB 1信息; 仅根据包含非 TDD配置变更指示信息的寻呼消息 对应的收到的 SIB1中的 TDD配置信息确定 PDCCH子帧 PDCCH-subframe, 并根据确定 的 PDCCH子帧对 DRX定时器计数。
方式一考虑 SIB1中指示的 TDD配置中确定 PDCCH-subframe,统计 DRX定时器长度。 进一步的,方式一可以考虑 TDD配置除去 MB SFN之外的子帧配置确定 PDCCH-subframe , 统计 DRX定时器长度。
用户设备通过 SIB1获知小区 TDD配置( Legacy TDD配置), 该配置是用户设备最初 接入网络时通过读取***广播获知的。 当支持动态 TDD配置的小区后续发生 TDD UL/DL 配置变更时, 或者 per UE的小区 TDD配置发生变更时, 小区归属基站或其他基站(如宏 基站)通过广播通知对应的用户设备需要变更的 TDD配置信息(进一步可以包括 MBSFN 子帧的位置信息)。 所谓 Per UE的小区 TDD 配置是指 eNB为某个 UE专门配置的、 区别 于小区级 TDD配置的一个 TDD配置,该 UE使用专门为其配置的 UL/DL子帧配置进行工 作。
也就是说, 此时, 用户设备仅根据包含非 TDD 配置变更指示信息的寻呼消息对应的 收到的 SIB 1中的 TDD配置信息确定 PDCCH子帧 PDCCH-subframe ,并根据确定的 PDCCH 子帧对 DRX定时器计数; 或者, 此时, 用户设备仅根据包含非 TDD配置变更指示信息的 寻呼消息对应的收到的 SIB1中的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧 PDCCH-subframe , 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式二、 用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含用 于 DRX定时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息,或者通过 广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和 MBSFN子帧位置信息, 仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和收到的用于下行链路传输的特定子帧的位置信息, 或者仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD 配置信息和 MBSFN子帧位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX 定时器计数。
方式二只考虑 TDD配置中用于下行链路传输的子帧的位置确定 PDCCH-subframe,统 计 DRX定时器长度。
用户设备通过 SIB1获知小区 TDD配置( Legacy TDD配置), 该配置是用户设备最初 接入网络时通过读取***广播获知的。 当支持动态 TDD配置的小区后续发生 TDD UL/DL 配置变更时, 或者 per UE的小区 TDD配置发生变更时, 小区归属基站或其他基站(如宏 基站)通过广播通知对应的用户设备需要变更的 TDD 配置信息和用于下行链路传输的特 定子帧的位置信息。所谓 Per UE的小区 TDD 配置是指 eNB为某个 UE专门配置的、 区别 于小区级 TDD配置的一个 TDD配置,该 UE使用专门为其配置的 UL/DL子帧配置进行工 作。
也就是说, 此时, 用户设备仅根据包含非 TDD 配置变更指示信息的寻呼消息对应的
SIB1中的需要变更的 TDD配置信息和收到的用于下行链路传输的特定子帧的位置信息确 定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式三、用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确 定的 PDCCH子帧对 DRX定时器计数。
比如: 用户设备根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的需要 变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数; 或
用户设备根据收到的 MIB中的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据 确定的 PDCCH子帧对 DRX定时器计数; 或
用户设备根据包含 TDD 配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或 用户设备根据包含 TDD配置变更指示信息的寻呼消息对应的特定 SIB中的需要变更 的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或 所述用户设备根据包含需要变更的 TDD 配置信息的专用信令如 PDCCH信令确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式三中才 居 dynamic TDD 配置确定 PDCCH-subframe, 统计 DRX定时器长度; dynamic TDD配置通过广播方式通知给用户设备。
UE通过 SIB1获知小区 TDD配置( legacy TDD配置), 该配置是 UE最初接入网络时 通过读取***广播获知的。当支持动态 TDD配置的小区后续发生 TDD UL/DL配置变更时, 小区归属基站或其他基站(如宏基站)通过广播方式通知对应 UE新的 TDD 配置信息。 UE收到 eNB通过广播方式或专用信令更新的 TDD配置后, 按照由于 dynamic TDD新获 知的 TDD配置确定哪些子帧为 PDCCH-subframe, 并根据确定的 PDCCH-subframe统计以 PDCCH子帧为计数单位的 DRX定时器的时间长度, 监听 PDCCH子帧, 进行 DRX定时 器计数。
方式四、 方式四与方式三类似, 区别只在于网络侧设备还将 MBSFN子帧的位置信息 或用于下行链路传输的特定子帧的位置信息发送给用户设备; 相应的, 若用户设备接收 MBSFN子帧的位置信息, 用户设备根据需要变更的 TDD配置信息在除 MBSFN子帧之外 的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数;
若用户设备接收用于下行链路传输的特定子帧的位置信息, 用户设备根据需要变更的 TDD配置信息和用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据确定 的 PDCCH子帧对 DRX定时器计数。
方式五、 用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式五中, 用户设备根据广播或专用信令中特定用于下行链路传输的子帧进行计数 (若有那种新的 flexible subframe类型配置出现的话, 这种子帧不用于 PDCCH subframe 计数), 统计 DRX定时器长度。
方式六、 用户设备在接入到支持动态 TDD 配置的小区后, 根据特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式六中, 始终按照参考 TDD配置, 确定 PDCCH-subframe, 统计 DRX定时器长度。 不论 TDD配置如何变更, 以哪种方式通知变更, UE始终按照参考 TDD配置 (比如 配置 5 )确定 PDCCH-subframe, 统计 DRX定时器长度。 参考 TDD配置可以是预配置给 UE的, 也可以是 eNB广播给 UE的。
UE根据通知, 当其工作在对应 dynamic TDD小区上时, 按照参考 TDD配置(比如配 置 5 ) 中的 PDCCH-subframe统计 DRX定时器长度。
方式七、 用户设备在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
方式七中, 用户设备获知 TDD 配置变更, 此后用户设备按照参考 TDD 配置, 确定 PDCCH-subframe , 统计 DRX定时器长度。
通常, 不论小区 TDD UL/DL配置如何变更, 参考 TDD配置唯一(比如为配置 5 )。 较佳的, 上述方式一〜方式七中, 用户设备根据用于 DRX定时器计数的信息确定需要 变更 TDD配置后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置 确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数,在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数;
其中, 子帧 n为承载用于 DRX定时器计数的信息的子帧, k为正整数。
本发明实施例还提供一种 DRX定时器计数的网络侧设备, 如图 8所示, 包括处理器 801和收发接口 802, 其中:
处理器 801 , 用于根据 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX定 时器计数的信息; 通过收发接口 802将用于 DRX定时器计数的信息通知用户设备, 以使 用户设备根据用于 DRX定时器计数的信息对 DRX定时器计数。
本发明实施例还提供一种 DRX定时器计数的用户设备,如图 9所示, 包括处理器 901 和收发接口 902, 其中:
处理器 901 ,用于通过收发接口 902接收来自网络侧设备的用于 DRX定时器计数的信 息, 其中用于 DRX定时器计数的信息是所述网络侧设备根据 TDD配置变更情况确定的; 根据用于 DRX定时器计数的信息对 DRX定时器计数。
本领域内的技术人员应明白, 本发明的实施例可提供为方法、 ***、 或计算机程序产 品。 因此, 本发明可釆用完全硬件实施例、 完全软件实施例、 或结合软件和硬件方面的实 施例的形式。 而且, 本发明可釆用在一个或多个其中包含有计算机可用程序代码的计算机 可用存储介盾 (包括但不限于磁盘存储器、 CD-ROM、 光学存储器等)上实施的计算机程 序产品的形式。
本发明是参照根据本发明实施例的方法、 设备(***)、 和计算机程序产品的流程图 和 /或方框图来描述的。 应理解可由计算机程序指令实现流程图和 /或方框图中的每一流 程和 /或方框、 以及流程图和 /或方框图中的流程和 /或方框的结合。 可提供这些计算机 程序指令到通用计算机、 专用计算机、 嵌入式处理机或其他可编程数据处理设备的处理器 以产生一个机器, 使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用 于实现在流程图一个流程或多个流程和 /或方框图一个方框或多个方框中指定的功能的 装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方 式工作的计算机可读存储器中, 使得存储在该计算机可读存储器中的指令产生包括指令装 置的制造品, 该指令装置实现在流程图一个流程或多个流程和 /或方框图一个方框或多个 方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上, 使得在计算机 或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理, 从而在计算机或其他 可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和 /或方框图一个 方框或多个方框中指定的功能的步骤。
尽管已描述了本发明的优选实施例, 但本领域内的技术人员一旦得知了基本创造性概 念, 则可对这些实施例作出另外的变更和修改。 所以, 所附权利要求意欲解释为包括优选 实施例以及落入本发明范围的所有变更和修改。
显然, 本领域的技术人员可以对本发明实施例进行各种改动和变型而不脱离本发明实 施例的精神和范围。 这样, 倘若本发明实施例的这些修改和变型属于本发明权利要求及其 等同技术的范围之内, 则本发明也意图包含这些改动和变型在内。

Claims

权 利 要 求
1、 一种非连续接收 DRX定时器计数的方法, 其特征在于, 该方法包括:
网络侧设备根据时分双工 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX 定时器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
2、 如权利要求 1 所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将***信息块 SIB1中通知的 TDD配置信息作为所述用于 DRX定时 器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD 配置信息的 SIB1和多媒体广播多播业务单频网络 MBSFN子帧的位置信息通过广播发送给 所述用户设备, 以使所述用户设备仅根据包含非 TDD 配置变更指示信息的寻呼消息对应 的收到的 SIB1中指示的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定物理下行 控制信道 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
3、 如权利要求 1 所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将***信息块 SIB 1中通知的 TDD配置信息作为所述用于 DRX定时 器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD 配置信息的 SIB 1通过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD配 置变更指示信息的寻呼消息对应的收到的 SIB1中指示的 TDD配置信息确定物理下行控制 信道 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
4、 如权利要求 1 所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将***信息块 SIB 1中通知的 TDD配置信息和用于下行链路传输的特 定子帧的位置信息, 或者将 SIB1中通知的 TDD配置信息和 MBSFN子帧位置信息作为所 述用于 DRX定时器计数的信息; 所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息、 包含所述用于 DRX定 时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者将包含非 TDD 配置变更指示信息的寻呼消息、 包含所述用于 DRX定时器计数的信息的 SIB1和 MBSFN 子帧位置信息通过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD 配置 变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和收到的用于下行链 路传输的特定子帧的位置信息, 或者仅根据包含非 TDD 配置变更指示信息的寻呼消息对 应的 SIB1中的需要变更的 TDD配置信息和 MBSFN子帧位置信息确定 PDCCH子帧, 并 根据确定的 PDCCH子帧对 DRX定时器计数。
5、 如权利要求 1 所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将需要变更的 TDD配置信息作为所述用于 DRX定时器计数的信息; 所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将需要变更的 TDD 配置信息通过广播或专用信令发送给所述用户设 备, 以使所述用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧, 并根据确 定的 PDCCH子帧对 DRX定时器计数。
6、 如权利要求 5所述的方法, 其特征在于, 所述网络侧设备将所述用于 DRX定时器 计数的信息通知所述用户设备, 包括:
所述网络侧设备将包含非 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD 配置信息的 SIB1发送给所述用户设备; 或
所述网络侧设备将包含需要变更的 TDD配置信息的 MIB发送给所述用户设备; 或 所述网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配 置信息的 SIB 1发送给所述用户设备; 或
所述网络侧设备将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配 置信息的特定 SIB发送给所述用户设备; 或
所述网络侧设备将需要变更的 TDD配置信息通过专用信令发送给所述用户设备。
7、 如权利要求 5所述的方法, 其特征在于, 所述网络侧设备将所述用于 DRX定时器 计数的信息通知所述用户设备, 还包括:
所述网络侧设备将 MBSFN子帧的位置信息发送给所述用户设备, 以使所述用户设备 根据需要变更的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧,并 根据确定的 PDCCH子帧对 DRX定时器计数; 或 所述网络侧设备将用于下行链路传输的特定子帧的位置信息发送给所述用户设备, 以 使所述用户设备根据需要变更的 TDD 配置信息和用于下行链路传输的特定子帧的位置信 息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
8、 如权利要求 1 所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将用于下行链路传输的特定子帧的位置信息作为所述用于 DRX定时 器计数的信息;
所述网络侧设备将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括:
所述网络侧设备将用于下行链路传输的特定子帧的位置信息通过广播或专用信令通 知给用户设备, 以使所述用户设备根据用于下行链路传输的特定子帧的位置信息确定
PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
9、 如权利要求 1 所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器计数的 信息, 以使所述用户设备在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
10、 如权利要求 1所述的方法, 其特征在于, 所述网络侧设备确定需要通知给用户设 备的用于 DRX定时器计数的信息, 包括:
所述网络侧设备将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时器计数 的信息, 以使所述用户设备在收到用于通知 TDD 配置需要变更的指示信息后, 根据特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
11、 如权利要求 1~9任一所述的方法, 其特征在于, 所述网络侧设备将所述用于 DRX 定时器计数的信息通知所述用户设备之后, 还包括:
所述网络侧设备在所述用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD 配置后, 在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配 置进行处理;
其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
12、 一种 DRX定时器计数的方法, 其特征在于, 该方法包括:
用户设备接收来自网络侧设备的用于 DRX定时器计数的信息,其中所述用于 DRX定 时器计数的信息是所述网络侧设备根据 TDD配置变更情况确定的;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
13、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为系 统信息块 SIB1中通知的 TDD配置信息;
所述用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 包括:
所述用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含需要变 更的 TDD配置信息的 SIB1和 MBSFN子帧的位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1中 指示的 TDD配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧,并根据确定 的 PDCCH子帧对 DRX定时器计数。
14、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为系 统信息块 SIB1中通知的 TDD配置信息;
所述用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 包括:
所述用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含需要变 更的 TDD配置信息的 SIB1 ;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1中 指示的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
15、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为系 统信息块 SIB1中通知的 TDD配置信息和用于下行链路传输的特定子帧的位置信息, 或者 SIB1中通知的 TDD配置信息和 MBSFN子帧位置信息;
所述用户设备接收来自网络侧设备的用于 DRX定时器计数的信息, 包括:
所述用户设备通过广播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者通过广 播接收包含非 TDD 配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB 1和 MB SFN子帧位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要 变更的 TDD 配置信息和收到的用于下行链路传输的特定子帧的位置信息, 或者仅根据包 含非 TDD 配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD 配置信息和 MBSFN子帧位置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
16、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为需 要变更的 TDD配置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数。
17、 如权利要求 16所述的方法, 其特征在于, 所述用户设备根据所述用于 DRX定时 器计数的信息对 DRX定时器计数, 包括:
所述用户设备根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB 1中的需要变 更的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述用户设备根据收到的 MIB中的需要变更的 TDD配置信息确定 PDCCH子帧, 并 根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述用户设备根据包含 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更 的 TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或 所述用户设备根据包含 TDD配置变更指示信息的寻呼消息对应的特定 SIB中的需要 变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定时器计数; 或
所述用户设备根据包含需要变更的 TDD配置信息的专用信令确定 PDCCH子帧,并根 据确定的 PDCCH子帧对 DRX定时器计数。
18、 如权利要求 16所述的方法, 其特征在于, 所述用户设备根据所述用于 DRX定时 器计数的信息对 DRX定时器计数之前, 还包括:
所述用户设备接收来自网络侧设备的 MBSFN子帧的位置信息或用于下行链路传输的 特定子帧的位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 若所述用户设备接收 MBSFN子帧的位置信息,所述用户设备根据需要变更的 TDD配 置信息在除 MB SFN子帧之外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子 帧对 DRX定时器计数;
若所述用户设备接收用于下行链路传输的特定子帧的位置信息, 所述用户设备根据需 要变更的 TDD配置信息和用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧,并 根据确定的 PDCCH子帧对 DRX定时器计数。
19、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为用 于下行链路传输的特定子帧的位置信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根 据确定的 PDCCH子帧对 DRX定时器计数。
20、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为支 持动态 TDD配置的小区的小区信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备在接入到支持动态 TDD配置的小区后,根据特定 TDD配置确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
21、 如权利要求 12所述的方法, 其特征在于, 所述用于 DRX定时器计数的信息为用 于通知 TDD配置需要变更的指示信息;
所述用户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数, 包括: 所述用户设备在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD配置 确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
22、 如权利要求 12~21 任一所述的方法, 其特征在于, 所述用户设备根据所述用于
DRX定时器计数的信息对 DRX定时器计数, 包括:
所述用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后, 在子帧 n 到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确 定的 PDCCH子帧对 DRX定时器计数,在子帧 n+k之后按照 legacy方式通知的 TDD配置 或变更之后的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧 对 DRX定时器计数;
其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
23、 一种 DRX定时器计数的网络侧设备, 其特征在于, 该网络侧设备包括: 确定模块, 用于根据 TDD配置变更情况, 确定需要通知给用户设备的用于 DRX定时 器计数的信息;
通知模块, 用于将所述用于 DRX定时器计数的信息通知所述用户设备, 以使所述用 户设备根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
24、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将***信息块 SIB1中通知的 TDD配置信息作为所述用于 DRX定时器计数的信息; 所述通知模块具体用于:
将包含非 TDD配置变更指示信息的寻呼消息、包含需要变更的 TDD配置信息的 SIB1 和 MBSFN子帧的位置信息通过广播发送给所述用户设备, 以使所述用户设备仅根据包含 非 TDD 配置变更指示信息的寻呼消息对应的收到的 SIB1 中指示的 TDD 配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧 PDCCH-subframe,并根据确定的 PDCCH 子帧对 DRX定时器计数。
25、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将***信息块 SIB1中通知的 TDD配置信息作为所述用于 DRX定时器计数的信息; 所述通知模块具体用于: 将包含非 TDD配置变更指示信息的寻呼消息、包含需要变更的 TDD配置信息的 SIB1 通过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD 配置变更指示信息 的寻呼消息对应的收到的 SIB 1中指示的 TDD配置信息确定 PDCCH子帧, 并# ^据确定的 PDCCH子帧对 DRX定时器计数。
26、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将***信息块 SIB1中通知的 TDD配置信息和用于下行链路传输的特定子帧的位置信 息, 或者将 SIB1中通知的 TDD配置信息和 MBSFN子帧位置信息作为所述用于 DRX定 时器计数的信息;
所述通知模块具体用于:
将包含非 TDD配置变更指示信息的寻呼消息、 包含所述用于 DRX定时器计数的信息 的 SIB1和用于下行链路传输的特定子帧的位置信息, 或者将包含非 TDD配置变更指示信 息的寻呼消息、 包含所述用于 DRX定时器计数的信息的 SIB1和 MBSFN子帧位置信息通 过广播发送给所述用户设备, 以使所述用户设备仅根据包含非 TDD 配置变更指示信息的 寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和收到的用于下行链路传输的特定子 帧的位置信息, 或者仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需 要变更的 TDD配置信息和 MBSFN子帧位置信息确定 PDCCH子帧,并根据确定的 PDCCH 子帧对 DRX定时器计数。
27、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将需要变更的 TDD配置信息作为所述用于 DRX定时器计数的信息;
所述通知模块具体用于:
将需要变更的 TDD 配置信息通过广播或专用信令发送给所述用户设备, 以使所述用 户设备根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子 帧对 DRX定时器计数。
28、 如权利要求 27所述的网络侧设备, 其特征在于, 所述通知模块具体用于: 将包含非 TDD 配置变更指示信息的寻呼消息和包含所述 TDD 配置变更指示信息的
SIB1发送给所述用户设备;或将包含需要变更的 TDD配置信息的 MIB发送给所述用户设 备;或将包含 TDD配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信息的 SIB1 发送给所述用户设备; 或将包含 TDD 配置变更指示信息的寻呼消息和包含需要变更的 TDD配置信息的特定 SIB发送给所述用户设备; 或将需要变更的 TDD配置信息通过专用 信令发送给所述用户设备。
29、 如权利要求 27所述的网络侧设备, 其特征在于, 所述通知模块还用于: 将 MBSFN子帧的位置信息发送给所述用户设备, 以使所述用户设备根据需要变更的
TDD 配置信息在除 MBSFN 子帧之外的其他子帧中确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或将用于下行链路传输的特定子帧的位置信息发送给所 述用户设备, 以使所述用户设备根据需要变更的 TDD 配置信息和用于下行链路传输的特 定子帧的位置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
30、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将用于下行链路传输的特定子帧的位置信息作为所述用于 DRX定时器计数的信息; 所述通知模块具体用于:
将用于下行链路传输的特定子帧的位置信息通过广播或专用信令通知给用户设备, 以 使所述用户设备根据用于下行链路传输的特定子帧的位置信息确定 PDCCH子帧, 并根据 确定的 PDCCH子帧对 DRX定时器计数。
31、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将支持动态 TDD配置的小区的小区信息作为用于 DRX定时器计数的信息, 以使所述 用户设备在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
32、 如权利要求 23所述的网络侧设备, 其特征在于, 所述确定模块具体用于: 将用于通知 TDD配置需要变更的指示信息作为用于 DRX定时器计数的信息, 以使所 述用户设备在收到用于通知 TDD 配置需要变更的指示信息后, 根据特定 TDD 配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
33、 如权利要求 23~32任一所述的网络侧设备, 其特征在于, 所述确定模块还用于: 在所述用户设备根据用于 DRX定时器计数的信息确定需要变更 TDD配置后,在子帧 n到子帧 n+k-1中按照变更之前的 TDD配置或特定 TDD配置进行处理, 在子帧 n+k之后 按照 legacy方式通知的 TDD配置或变更之后的 TDD配置或特定 TDD配置进行处理; 其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
34、 一种 DRX定时器计数的用户设备, 其特征在于, 该用户设备包括:
接收模块, 用于接收来自网络侧设备的用于 DRX定时器计数的信息, 其中所述用于 DRX定时器计数的信息是所述网络侧设备根据 TDD配置变更情况确定的;
计数模块, 用于根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
35、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为***信息块 SIB1中通知的 TDD配置信息;
所述接收模块具体用于:
通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD配置 信息的 SIB1和 MBSFN子帧的位置信息;
所述计数模块具体用于:
仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1 中指示的 TDD 配置信息在除 MBSFN子帧之外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH 子帧对 DRX定时器计数。
36、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为***信息块 SIB1中通知的 TDD配置信息;
所述接收模块具体用于:
通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含需要变更的 TDD配置 信息的 SIB1 ;
所述计数模块具体用于:
仅根据包含非 TDD配置变更指示信息的寻呼消息对应的收到的 SIB1 中指示的 TDD 配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
37、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为需要变更的 TDD配置信息;
所述接收模块具体用于:
通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数 的信息的 SIB1 和用于下行链路传输的特定子帧的位置信息, 或者通过广播接收包含非 TDD配置变更指示信息的寻呼消息、 包含用于 DRX定时器计数的信息的 SIB1和 MBSFN 子帧位置信息;
所述计数模块具体用于:
仅根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1 中的需要变更的 TDD 配置信息和收到的用于下行链路传输的特定子帧的位置信息, 或者仅根据包含非 TDD 配 置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配置信息和 MBSFN子帧位 置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
38、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为需要变更的 TDD配置信息;
所述计数模块具体用于:
根据收到的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧 对 DRX定时器计数。
39、 如权利要求 38所述的用户设备, 其特征在于, 所述计数模块具体用于: 根据包含非 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的 TDD配 置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或根据收到的
MIB中的需要变更的 TDD配置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX 定时器计数; 或根据包含 TDD配置变更指示信息的寻呼消息对应的 SIB1中的需要变更的
TDD配置信息确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或根 据包含 TDD配置变更指示信息的寻呼消息对应的特定 SIB中的需要变更的 TDD配置信息 确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 或所述用户设备根据 包含需要变更的 TDD配置信息的专用信令确定 PDCCH子帧,并根据确定的 PDCCH子帧 对 DRX定时器计数。
40、 如权利要求 38所述的用户设备, 其特征在于, 所述接收模块还用于:
接收来自网络侧设备的 MBSFN子帧的位置信息或用于下行链路传输的特定子帧的位 置信息;
所述计数模块具体用于:
若接收 MBSFN子帧的位置信息,根据需要变更的 TDD配置信息在除 MBSFN子帧之 外的其他子帧中确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数; 若接 收用于下行链路传输的特定子帧的位置信息, 根据需要变更的 TDD 配置信息和用于下行 链路传输的特定子帧的位置信息确定 PDCCH子帧,并根据确定的 PDCCH子帧对 DRX定 时器计数。
41、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为用于下行链路传输的特定子帧的位置信息;
所述计数模块具体用于:
根据用于下行链路传输的特定子帧的位置信息确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
42、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为支持动态 TDD配置的小区的小区信息;
所述计数模块具体用于:
在接入到支持动态 TDD配置的小区后, 根据特定 TDD配置确定 PDCCH子帧, 并根 据确定的 PDCCH子帧对 DRX定时器计数。
43、 如权利要求 34所述的用户设备, 其特征在于, 所述用于 DRX定时器计数的信息 为用于通知 TDD配置需要变更的指示信息;
所述计数模块具体用于:
在收到用于通知 TDD配置需要变更的指示信息后, 根据特定 TDD配置确定 PDCCH 子帧, 并根据确定的 PDCCH子帧对 DRX定时器计数。
44、 如权利要求 34~43任一所述的用户设备, 其特征在于, 所述计数模块还用于: 根据用于 DRX定时器计数的信息确定需要变更 TDD配置后, 在子帧 n到子帧 n+k-1 中按照变更之前的 TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH 子帧对 DRX定时器计数,在子帧 n+k之后按照 legacy方式通知的 TDD配置或变更之后的
TDD配置或特定 TDD配置确定 PDCCH子帧, 并根据确定的 PDCCH子帧对 DRX定时器 计数;
其中, 子帧 n为承载所述用于 DRX定时器计数的信息的子帧, k为正整数。
45、 一种 DRX定时器计数的***, 其特征在于, 该***包括:
网络侧设备, 用于根据 TDD配置变更情况确定需要通知给用户设备的用于 DRX定时 器计数的信息; 将所述用于 DRX定时器计数的信息通知所述用户设备;
用户设备 , 用于接收来自网络侧设备的用于 DRX定时器计数的信息; 根据所述用于 DRX定时器计数的信息对 DRX定时器计数。
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