WO2021196084A1 - 一种信号传输方法及装置、终端设备 - Google Patents

一种信号传输方法及装置、终端设备 Download PDF

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Publication number
WO2021196084A1
WO2021196084A1 PCT/CN2020/082796 CN2020082796W WO2021196084A1 WO 2021196084 A1 WO2021196084 A1 WO 2021196084A1 CN 2020082796 W CN2020082796 W CN 2020082796W WO 2021196084 A1 WO2021196084 A1 WO 2021196084A1
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WO
WIPO (PCT)
Prior art keywords
base station
gap
terminal device
mode configuration
configuration
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PCT/CN2020/082796
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English (en)
French (fr)
Inventor
王淑坤
许阳
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to CN202080094389.4A priority Critical patent/CN115191125A/zh
Priority to PCT/CN2020/082796 priority patent/WO2021196084A1/zh
Priority to CN202211573434.1A priority patent/CN116074847A/zh
Priority to EP20928377.9A priority patent/EP4087300B1/en
Publication of WO2021196084A1 publication Critical patent/WO2021196084A1/zh
Priority to US17/818,611 priority patent/US20220386210A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/14Spectrum sharing arrangements between different networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0011Control or signalling for completing the hand-off for data sessions of end-to-end connection
    • H04W36/0033Control or signalling for completing the hand-off for data sessions of end-to-end connection with transfer of context information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0055Transmission or use of information for re-establishing the radio link
    • H04W36/0058Transmission of hand-off measurement information, e.g. measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/14Reselecting a network or an air interface
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/24Reselection being triggered by specific parameters
    • H04W36/32Reselection being triggered by specific parameters by location or mobility data, e.g. speed data
    • H04W36/322Reselection being triggered by specific parameters by location or mobility data, e.g. speed data by location data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/90Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/005Transmission of information for alerting of incoming communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • H04W60/005Multiple registrations, e.g. multihoming
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/27Transitions between radio resource control [RRC] states
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/183Processing at user equipment or user record carrier

Definitions

  • the embodiments of the present application relate to the field of mobile communication technology, and in particular to a signal transmission method and device, and terminal equipment.
  • Dual-card dual-standby mobile phone means that a mobile phone can have two communication cards installed at the same time, and the two communication cards are both in the standby state.
  • mobile phones generally do not support pure dual-transmit and dual-receive (referred to as dual-pass).
  • Dual-transmit and dual-receive means that the mobile phone simultaneously transmits and receives data on two networks through two communication cards.
  • the realization of dual communication is a trend in the development of mobile phones in the future, but the realization of dual communication in a mobile phone will have the problem of resource sharing and allocation of two communication cards.
  • the embodiments of the present application provide a signal transmission method and device, and terminal equipment.
  • the terminal device receives first configuration information sent by a first base station, where the first configuration information is used to determine a first time domain position; wherein, the first base station is a base station corresponding to the first communication card in the terminal device, The first communication card is in a connected state;
  • the terminal device receives a signal sent by a second base station at the first time domain location; wherein, the second base station is a base station corresponding to a second communication card in the terminal device.
  • the signal transmission device provided in the embodiment of the present application is applied to terminal equipment, and the device includes:
  • the receiving unit is configured to receive first configuration information sent by a first base station, where the first configuration information is used to determine a first time domain position; wherein, the first base station corresponds to the first communication card in the terminal device The first communication card is in the connected state; the signal sent by the second base station is received at the first time domain position; wherein, the second base station is corresponding to the second communication card in the terminal device Base station.
  • the terminal device provided in the embodiment of the present application includes a processor and a memory.
  • the memory is used to store a computer program
  • the processor is used to call and run the computer program stored in the memory to execute the above-mentioned signal transmission method.
  • the chip provided in the embodiment of the present application is used to implement the above-mentioned signal transmission method.
  • the chip includes: a processor, configured to call and run a computer program from the memory, so that the device installed with the chip executes the above-mentioned signal transmission method.
  • the computer-readable storage medium provided by the embodiment of the present application is used to store a computer program, and the computer program enables a computer to execute the above-mentioned signal transmission method.
  • the computer program product provided by the embodiment of the present application includes computer program instructions, and the computer program instructions cause a computer to execute the above-mentioned signal transmission method.
  • the computer program provided in the embodiment of the present application when it runs on a computer, causes the computer to execute the above-mentioned signal transmission method.
  • the terminal device has a first communication card and a second communication card, wherein the base station corresponding to the first communication card is the first base station, the base station corresponding to the second communication card is the second base station, and the terminal device receives the first base station
  • the sent first configuration information determines a time domain location based on the first configuration information, and receives the signal sent by the second base station at the time domain location.
  • FIG. 1 is a schematic diagram of a communication system architecture provided by an embodiment of the present application.
  • FIG. 2 is a schematic flowchart of a signal transmission method provided by an embodiment of the application.
  • FIG. 3 is a schematic diagram of a dual card scenario provided by an embodiment of the application.
  • FIG. 4 is a schematic diagram of the structural composition of a signal transmission device provided by an embodiment of the application.
  • FIG. 5 is a schematic structural diagram of a communication device provided by an embodiment of the present application.
  • Fig. 6 is a schematic structural diagram of a chip of an embodiment of the present application.
  • Fig. 7 is a schematic block diagram of a communication system provided by an embodiment of the present application.
  • LTE Long Term Evolution
  • FDD Frequency Division Duplex
  • TDD Time Division Duplex
  • 5G communication system or future communication system etc.
  • the communication system 100 applied in the embodiment of the present application is shown in FIG. 1.
  • the communication system 100 may include a network device 110, and the network device 110 may be a device that communicates with a terminal 120 (or called a communication terminal or terminal).
  • the network device 110 may provide communication coverage for a specific geographic area, and may communicate with terminals located in the coverage area.
  • the network device 110 may be an evolved base station (Evolutional Node B, eNB, or eNodeB) in an LTE system, or a wireless controller in a cloud radio access network (Cloud Radio Access Network, CRAN), or
  • the network equipment can be a mobile switching center, a relay station, an access point, an in-vehicle device, a wearable device, a hub, a switch, a bridge, a router, a network side device in a 5G network, or a network device in a future communication system, etc.
  • the communication system 100 also includes at least one terminal 120 located within the coverage area of the network device 110.
  • the "terminal” used here includes, but is not limited to, connection via a wired line, such as via a public switched telephone network (PSTN), digital subscriber line (Digital Subscriber Line, DSL), digital cable, and direct cable connection; And/or another data connection/network; and/or via a wireless interface, such as for cellular networks, wireless local area networks (WLAN), digital TV networks such as DVB-H networks, satellite networks, AM-FM A broadcast transmitter; and/or a device of another terminal configured to receive/send communication signals; and/or an Internet of Things (IoT) device.
  • PSTN public switched telephone network
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscribe
  • a terminal set to communicate through a wireless interface may be referred to as a "wireless communication terminal", a “wireless terminal” or a “mobile terminal”.
  • mobile terminals include, but are not limited to, satellite or cellular phones; Personal Communications System (PCS) terminals that can combine cellular radio phones with data processing, fax, and data communication capabilities; can include radio phones, pagers, Internet/intranet PDA with internet access, web browser, memo pad, calendar, and/or Global Positioning System (GPS) receiver; and conventional laptop and/or palmtop receivers or others including radio telephone transceivers Electronic device.
  • PCS Personal Communications System
  • GPS Global Positioning System
  • Terminal can refer to access terminal, user equipment (UE), user unit, user station, mobile station, mobile station, remote station, remote terminal, mobile device, user terminal, terminal, wireless communication equipment, user agent or user Device.
  • the access terminal can be a cellular phone, a cordless phone, a Session Initiation Protocol (SIP) phone, a wireless local loop (Wireless Local Loop, WLL) station, a personal digital processing (Personal Digital Assistant, PDA), with wireless communication Functional handheld devices, computing devices or other processing devices connected to wireless modems, in-vehicle devices, wearable devices, terminals in 5G networks, or terminals in the future evolution of PLMN, etc.
  • SIP Session Initiation Protocol
  • WLL Wireless Local Loop
  • PDA Personal Digital Assistant
  • direct terminal connection (Device to Device, D2D) communication may be performed between the terminals 120.
  • the 5G communication system or 5G network may also be referred to as a New Radio (NR) system or NR network.
  • NR New Radio
  • FIG. 1 exemplarily shows one network device and two terminals.
  • the communication system 100 may include multiple network devices and the coverage of each network device may include other numbers of terminals. This embodiment of the present application There is no restriction on this.
  • the communication system 100 may also include other network entities such as a network controller and a mobility management entity, which are not limited in the embodiment of the present application.
  • network entities such as a network controller and a mobility management entity, which are not limited in the embodiment of the present application.
  • the devices with communication functions in the network/system in the embodiments of the present application may be referred to as communication devices.
  • the communication device may include a network device 110 and a terminal 120 with communication functions, and the network device 110 and the terminal 120 may be the specific devices described above, which will not be repeated here; communication
  • the device may also include other devices in the communication system 100, such as other network entities such as a network controller and a mobility management entity, which are not limited in the embodiment of the present application.
  • 5G Enhanced Mobile Broadband
  • URLLC Ultra-Reliable Low-Latency Communications
  • mMTC Massive Machine-Type Communications
  • eMBB still targets users to obtain multimedia content, services and data, and its demand is growing very rapidly.
  • eMBB may be deployed in different scenarios, such as indoors, urban areas, rural areas, etc., its capabilities and requirements are also quite different, so it cannot be generalized and must be analyzed in detail in conjunction with specific deployment scenarios.
  • Typical applications of URLLC include: industrial automation, power automation, telemedicine operations (surgery), traffic safety protection, etc.
  • Typical features of mMTC include: high connection density, small data volume, delay-insensitive services, low-cost modules and long service life.
  • RRC Radio Resource Control
  • RRC_INACTIVE Radio Resource Control
  • RRC_IDLE state (abbreviated as idle state): mobility is UE-based cell selection and reselection, paging is initiated by the Core Network (Core Network, CN), and the paging area is configured by the CN. There is no UE context and no RRC connection on the base station side.
  • RRC_CONNECTED state (referred to as connected state for short): There is an RRC connection, and UE context exists on the base station side and the UE side. The network side knows that the location of the UE is of a specific cell level. Mobility is the mobility controlled by the network side. Unicast data can be transmitted between the UE and the base station.
  • Mobility is UE-based cell selection and reselection, there is a connection between CN-NR, UE context is stored on a certain base station, and paging is triggered by RAN, based on The paging area of the RAN is managed by the RAN, and the network side knows that the location of the UE is based on the paging area level of the RAN.
  • Dual-card dual-standby mobile phone means that a mobile phone can have two communication cards installed at the same time, and the two communication cards are both in the standby state.
  • Dual card dual standby generally refers to dual card dual standby of the same network standard, such as dual card dual standby of GSM network, dual card dual standby of CDMA network, and dual card dual standby of PHS network.
  • Dual-network dual-standby means that a mobile phone can be inserted into two communication cards of different networks at the same time and turned on at the same time. Users can make, receive, and send and receive short messages without switching networks.
  • Dual-transmit and dual-receive means that the mobile phone simultaneously transmits and receives data on two networks through two communication cards.
  • most mobile phones only support single-sending and single-receiving or single-sending and double-receiving, which means that the mobile phone can only perform services on one communication card at a certain time.
  • the realization of dual communication is a trend in the development of future mobile phones.
  • one communication card can reside in the LTE cell, and the other communication card can reside in the NR cell; or, two Both communication cards reside in the NR cell.
  • the two communication cards can be communication cards of the same operator, or communication cards of different operators.
  • the "terminal device” in the embodiments of the present application may be a mobile phone, a tablet computer, a wearable device, etc.
  • the terminal device has at least two communication cards, for example, the terminal device has 2 communication cards or 3 communication cards, etc. .
  • the following embodiment takes two communication cards as an example for description, and it is not limited to this, and the solution of more than two communication cards is also applicable to the technical solution of the embodiment of the present application.
  • the embodiment of the present application does not limit the types of the first communication card and the second communication card.
  • the first communication card and the second communication card are both Subscriber Identity Module (SIM) cards.
  • the first communication card and the second communication card are both Universal Subscriber Identity Module (USIM) cards.
  • the first communication card is a SIM card
  • the second communication card is a USIM card.
  • the first communication card is a USIM card
  • the second communication card is a SIM card.
  • the embodiment of the present application does not limit the network types supported by the first communication card and the second communication card.
  • the first communication card supports an LTE network (that is, the first base station corresponding to the first communication card is an LTE base station).
  • the second communication card supports the NR network (that is, the second base station corresponding to the second communication card is an NR base station).
  • both the first communication card and the second communication card support the NR network (that is, the first communication card, the second communication card, and the second base station corresponding to the second communication card are all NR base stations).
  • the embodiments of the present application do not impose restrictions on the operators to which the first communication card and the second communication card belong.
  • the first communication card and the second communication card may belong to the same operator, or they may belong to different operators. .
  • FIG. 2 is a schematic flowchart of a signal transmission method provided by an embodiment of the application. As shown in FIG. 2, the signal transmission method includes the following steps:
  • Step 201 A terminal device receives first configuration information sent by a first base station, where the first configuration information is used to determine a first time domain position; wherein, the first base station corresponds to the first communication card in the terminal device In the base station, the first communication card is in a connected state.
  • the terminal device has a first communication card and a second communication card, where the base station corresponding to the first communication card is the first base station, and the base station corresponding to the second communication card is the second base station.
  • the terminal device can access the first base station through the first communication card to implement uplink transmission and/or downlink reception of data on the first network.
  • the terminal device can access the second base station through the second communication card to implement uplink transmission and/or downlink reception of data on the second network.
  • the types of the first network and the second network may be the same or different.
  • the first network is an LTE network
  • the second network is an NR network.
  • the first network and the second network are both NR networks.
  • the base station corresponding to the first communication card and the base station corresponding to the second communication card are different base stations.
  • the base station corresponding to the first communication card and the base station corresponding to the second communication card are the same base station.
  • the description of is equivalently replaced with “first base station”, or the description of "first base station” is equivalently replaced with “second base station”.
  • the first communication card of the terminal device has a service performed and is in a connected state.
  • the second communication card of the terminal device may be in an idle state, an inactive state, or a connected state.
  • there are two USIM cards in the terminal device namely the USIM-A card and the USIM-B card.
  • the USIM-A card is in the connected state.
  • the USIM-B card is in the idle state or inactive state or connected state.
  • the communication between the terminal device and the first base station is implemented through the first communication card
  • the communication between the terminal device and the second base station is implemented through the second communication card.
  • the terminal device can communicate with the first base station through the USIM-A card
  • the terminal device can communicate with the second base station through the USIM-B card.
  • the terminal device receives first configuration information sent by a first base station.
  • the first configuration information is used to determine a first time domain position.
  • the first time domain position is used to receive a second base station.
  • the time domain position of the transmitted signal is used to determine a first time domain position.
  • Step 202 The terminal device receives a signal sent by a second base station at the first time domain position; wherein, the second base station is a base station corresponding to a second communication card in the terminal device.
  • the first configuration information may be implemented in the following ways. The following describes how to determine the first time domain position in combination with different implementation manners of the first configuration information.
  • the first configuration information includes an autonomous gap (gap) configuration, wherein the first time domain position refers to the time domain position corresponding to the autonomous gap; the terminal device receives the first gap at the time domain position corresponding to the autonomous gap.
  • a paging message a paging message, updated system broadcast information, and public warning system (PWS) information.
  • PWS public warning system
  • the terminal device before the terminal device receives the first configuration information sent by the first base station, the terminal device sends a first request message to the first base station, and the first request message is used to request the The first base station configures an autonomous gap.
  • the first request message carries first indication information
  • the first indication information is used to indicate that the purpose of the terminal device requesting an autonomous gap is to receive at least one of the following from the second base station: paging News, updated system broadcast information, PWS information.
  • the autonomous gap configuration carries second indication information, and the second indication information is used to indicate the purpose of the autonomous gap.
  • the purpose of the autonomous gap includes at least one of the following:
  • the autonomous gap is used by the terminal device to read the broadcast information of the neighboring cell system
  • the autonomous gap is used by the terminal device to receive a paging message from a second base station
  • the autonomous gap is used by the terminal device to receive system broadcast information of the second base station;
  • the autonomous gap is used by the terminal device to receive the PWS information of the second base station.
  • the first base station corresponding to the USIM-A card configures an autonomous gap for the terminal device, and the terminal device uses the autonomous gap configured by the first base station to go to the second base station corresponding to the USIM-B card to search for at least one of the following: Call messages, updated system broadcast information, and PWS information.
  • the terminal device may request the first base station to configure an autonomous gap.
  • the terminal device may also instruct the first base station terminal device to request autonomous gap
  • the purpose of gap is to receive at least one of the following of the second base station corresponding to the USIM-B card in the scenario of multiple communication cards (such as dual communication cards): paging message, updated system broadcast information, and PWS information.
  • the first base station corresponding to the USIM-A card configures the autonomous gap, it also instructs the terminal device to use the autonomous gap.
  • autonomous gap refers to: the terminal device can autonomously leave the currently serving network for a period of time without notifying the network side.
  • the terminal device can autonomously leave the network service provided by the first base station for a period of time, and not notify the first base station.
  • the first base station it is not known when the terminal device leaves the network service provided by the first base station, but only knows that the terminal device can leave the network service provided by the first base station for a period of time.
  • the first configuration information includes a gap pattern configuration, and the gap pattern configuration is used to determine the time domain position of the gap, where the first time domain position refers to the time domain position of the gap;
  • the terminal device receives at least one of the following sent by the second base station at the time domain position of the gap: a paging message, updated system broadcast information, and PWS information. or,
  • the first configuration information includes a TDM pattern (TDM pattern) configuration, and the TDM pattern configuration is used to determine a time domain position where the first base station is not working, where the first time domain position refers to the The time domain location where the first base station is not working; the terminal device receives at least one of the following sent by the second base station at the time domain location where the first base station is not working: paging message, updated system broadcast information, PWS information .
  • TDM pattern TDM pattern
  • the terminal device before the terminal device receives the first configuration information sent by the first base station, the terminal device sends a second request message to the first base station, and the second request message is used to request the The first base station is configured in gap mode or TDM mode.
  • the second request message carries location information of a paging occasion (Paging Occasion, PO), where the location information of the PO is determined based on system broadcast information of the second base station.
  • Paging Occasion Paging Occasion
  • the terminal device receives the system broadcast information of the second base station corresponding to the USIM-B card, calculates the PO location based on the system broadcast information, and the terminal device requests the first base station corresponding to the USIM-A card to configure a gap mode based on the PO location Or TDM mode.
  • the terminal device After obtaining the gap mode configuration or TDM mode configuration configured by the first base station, the terminal device receives the second base station within the gap duration determined by the gap mode configuration or within the time slot or symbol in which the first base station is not working determined by the TDM mode configuration At least one of the following sent: paging message, updated system broadcast information, PWS information.
  • the terminal device receiving the paging message and/or updated system broadcast information and/or PWS information sent by the second base station refers to the cell where the terminal device receives the second communication card (such as the USIM-B card) Paging messages and/or updated system broadcast messages and/or PWS messages.
  • the cell where the second communication card (such as the USIM-B card) is located is a cell covered by the second base station.
  • the first configuration information includes a gap mode configuration, and the gap mode configuration is used to determine the time domain position of the gap, where the first time domain position refers to the time domain position of the gap; the terminal device Perform cell selection measurement and/or cell reselection measurement corresponding to the second communication card at the time domain position of the gap.
  • the first configuration information includes a TDM mode configuration, and the TDM mode configuration is used to determine a time domain position where the first base station is not working, where the first time domain position means that the first base station is not working.
  • Working time domain position the terminal device performs cell selection measurement and/or cell reselection measurement corresponding to the second communication card at the time domain position where the first base station is not working.
  • the terminal device before the terminal device receives the first configuration information sent by the first base station, the terminal device obtains cell selection measurement and/or cell reselection measurement according to the system broadcast information of the second base station. Frequency information; the terminal device generates the gap mode configuration or TDM mode configuration to be requested according to the frequency information of the cell selection measurement and/or cell reselection measurement; the terminal device sends a third request to the first base station Message, the third request message carries the gap mode configuration or the TDM mode configuration to be requested, and the third request message is used to request the first base station to configure the gap mode or the TDM mode.
  • the frequency information includes at least one of the following corresponding to each frequency point in the at least one frequency point: SMTC configuration information and SMTC timing information.
  • the terminal equipment obtains the frequency information of cell selection measurement and/or cell reselection measurement according to the system broadcast information of the cell where the USIM-B card is located, including E-UTRAN frequency information, NR frequency information and the corresponding NR frequency point SMTC measurement configuration (such as SMTC configuration information, SMTC timing information), etc.
  • the terminal device generates the gap mode configuration or the TDM mode configuration to be requested according to the above frequency information, and then requests the first base station corresponding to the USIM-A card to configure the gap mode or the TDM mode.
  • the terminal device After obtaining the gap mode configuration or TDM mode configuration configured by the first base station, the terminal device executes USIM-B within the gap duration determined by the gap mode configuration or within the time slot or symbol in which the first base station is not operating determined by the TDM mode configuration. Cell selection measurement and/or cell reselection measurement required by the cell where the card is located.
  • the terminal device may reject service reception on the side of the second base station, or may accept service reception on the side of the second base station, as follows: Explain the situation by situation.
  • Case 1 Reject the service reception on the side of the second base station.
  • the terminal device After receiving the paging message sent by the second base station, the terminal device decides to reject service reception on the side of the second base station based on the service information that triggered the paging message; the terminal device reports to the second base station Send third indication information, where the third indication information is used to indicate rejection of service reception or to indicate temporary rejection of service reception.
  • the terminal device obtains the service information that triggers the paging message from the paging reason in the paging message; or, after the second communication card enters the connected state, the terminal device obtains information from the The core network corresponding to the second base station obtains the service information that triggers the paging message. For example, after the terminal device receives the paging message sent by the second base station corresponding to the USIM-B card, it learns the service information that triggered the paging through the paging cause in the paging message, or the terminal device enters the connected state on the USIM-B card Then obtain the service information that triggers the paging from the core network.
  • the service information that triggers the paging message is the service information on the second base station side.
  • the terminal device decides to reject the reception of the service on the side of the second base station.
  • the terminal device sends third indication information to the core network corresponding to the second base station, where the third indication information indicates that service reception is temporarily refused, the third The instruction letter also instructs the core network corresponding to the second base station to cache service data locally, and if the duration of the cache service data exceeds the specified duration, the locally cached service data is released.
  • the third indication information carries a first timer configuration, and the first timer configuration is used to determine that the duration of the first timer is the specified duration; wherein the core network corresponding to the second base station receives After carrying the third indication information configured by the first timer, the first timer is started, and the locally cached service data is released when the first timer expires (that is, the locally cached service data is deleted ).
  • the terminal device sends third indication information to the second base station, where the third indication information indicates that service reception is temporarily refused, and the third indication letter returns Instruct the second base station to locally buffer the service data, and if the duration of buffering the service data exceeds the specified duration, release the locally buffered service data and/or release the second communication card to an inactive state.
  • the third indication information carries a second timer configuration, and the second timer configuration is used to determine that the duration of the second timer is the specified duration; wherein, the second base station receives the second timer that carries the second timer configuration.
  • the second timer is started, and the locally cached service data is released (that is, the locally cached service data is deleted) when the second timer expires.
  • Case 2 Accept service reception from the side of the second base station.
  • the terminal device After receiving the paging message sent by the second base station, the terminal device decides to accept the service reception on the side of the second base station based on the service information that triggered the paging message; the terminal device reports to the first base station Send fourth indication information, where the fourth indication information is used to indicate rejection of service reception or to indicate temporary rejection of service reception.
  • the terminal device obtains the service information that triggers the paging message from the paging reason in the paging message; or, after the second communication card enters the connected state, the terminal device obtains information from the The core network corresponding to the second base station obtains the service information that triggers the paging message. For example, after the terminal device receives the paging message sent by the second base station corresponding to the USIM-B card, it learns the service information that triggered the paging through the paging cause in the paging message, or the terminal device enters the connected state on the USIM-B card Then obtain the service information that triggers the paging from the core network.
  • the service information that triggers the paging message is the service information on the second base station side.
  • the priority of the service information on the second base station side is higher than the specified priority or the second base station
  • the terminal device decides to accept the service reception on the second base station side.
  • the terminal device sends fourth indication information to the core network corresponding to the first base station, where the fourth indication information indicates that service reception is temporarily refused, and the fourth indication information
  • the instruction letter also instructs the core network corresponding to the first base station to cache service data locally, and if the duration of the cache service data exceeds the specified duration, the locally cached service data is released.
  • the fourth indication information carries a third timer configuration, and the third timer configuration is used to determine that the duration of the third timer is the specified duration; wherein the core network corresponding to the first base station receives After carrying the fourth indication information configured by the third timer, the third timer is started, and when the third timer expires, the locally cached service data is released (that is, the locally cached service data is deleted ).
  • the terminal device sends fourth indication information to the first base station, where the fourth indication information indicates that service reception is temporarily refused, the fourth indication letter returns Instruct the first base station to locally buffer the service data, and if the duration of buffering the service data exceeds the specified duration, release the locally buffered service data and/or release the first communication card to an inactive state.
  • the fourth indication information carries a fourth timer configuration, and the fourth timer configuration is used to determine that the duration of the fourth timer is the specified duration; wherein, the first base station receives the fourth timer configuration that carries the After the fourth instruction information configured by the four timers, the fourth timer is started, and the locally cached service data is released (that is, the locally cached service data is deleted) when the fourth timer expires.
  • the terminal device After receiving the paging message sent by the second base station, the terminal device decides to accept the service reception on the side of the second base station based on the service information that triggered the paging message; the terminal device receives the first base station The sent service data and the service data sent by the second base station.
  • the terminal device obtains the service information that triggers the paging message from the paging reason in the paging message; or, after the second communication card enters the connected state, the terminal device obtains information from the The core network corresponding to the second base station obtains the service information that triggers the paging message. For example, after the terminal device receives the paging message sent by the second base station corresponding to the USIM-B card, it learns the service information that triggered the paging through the paging cause in the paging message, or the terminal device enters the connected state on the USIM-B card Then obtain the service information that triggers the paging from the core network.
  • the service information that triggers the paging message is the service information on the second base station side.
  • the priority of the service information on the second base station side is higher than the specified priority or the second base station
  • the terminal device decides to accept the service reception on the second base station side.
  • the terminal device renegotiates a gap mode configuration or a TDM mode configuration with the first base station and/or the second base station. For example, the terminal device may renegotiate the gap configuration or TDM configuration according to at least one of the service data on the first base station side and the service data on the second base station side: the type of the service data, the service volume of the service data, and the service QOS of data.
  • the following describes how the terminal device renegotiates a gap mode configuration or a TDM mode configuration with the first base station and/or the second base station.
  • the terminal device sends a fourth request message to the first base station, where the fourth request message carries the gap mode configuration or TDM mode configuration requested by the terminal device; the terminal device receives the target sent by the first base station gap mode configuration or target TDM mode configuration, wherein the target gap mode configuration is the gap mode configuration requested by the terminal device or the gap mode configuration modified by the first base station, and the target TDM mode configuration is the terminal The TDM mode configuration requested by the device or the modified TDM mode configuration of the first base station; the terminal device sends the target gap mode configuration or the target TDM mode configuration to the second base station.
  • the terminal device triggers the process of initiating a gap mode configuration request or a TDM mode configuration request to the first base station corresponding to the USIM-A card.
  • the first base station can reject the gap mode configuration or TDM mode configuration requested by the terminal device; or, the first base station can modify the gap mode configuration or the TDM mode configuration requested by the terminal device, and feed it back to the terminal device for confirmation, and the terminal device will modify the gap
  • the mode configuration or TDM mode configuration is sent to the second base station corresponding to the USIM-B card; or the first base station can accept the gap mode configuration or TDM mode configuration requested by the terminal device, and instruct the terminal device to accept the gap mode configuration requested by the terminal device Or TDM mode configuration, the terminal device sends the requested gap mode configuration or TDM mode configuration to the second base station corresponding to the USIM-B card.
  • the terminal device determines the gap mode configuration or the TDM mode configuration according to at least one of the following: the type of service on the first base station side, the amount of service on the first base station side, the quality of service QoS on the first base station side, and the The service type on the second base station side, the traffic volume on the second base station side, the QoS on the second base station side, the timing deviation between the first base station side and the second base station side;
  • the fixed gap mode configuration or the TDM mode configuration is sent to the first base station and/or the second base station.
  • the negotiation of the gap mode configuration or the TDM mode configuration is triggered by the terminal device; or, the negotiation of the gap mode configuration or the TDM mode configuration is triggered by the first base station; or, the gap The negotiation of mode configuration or TDM mode configuration is triggered by the second base station.
  • cell reselection or cell handover may trigger the renegotiation of the gap mode configuration or the TDM mode configuration.
  • the terminal device in the case of cell reselection or cell handover of the second communication card, the terminal device will re-acquire the system broadcast information of the second base station. In this way, the terminal device triggers the gap mode configuration or TDM mode
  • the configuration negotiation specifically, the terminal device will re-initiate the request process or negotiation process of the gap mode configuration or the TDM mode configuration to the first base station.
  • the gap mode configuration or TDM mode is triggered by the first base station (or the target base station for the first communication card handover) or the terminal equipment Negotiation of configuration.
  • the gap mode configuration includes at least one of the following information: the duration of the gap, the period of the gap, and the offset of the gap. Further, the reference timing of the gap mode configuration is the reference timing of the current cell of the first communication card.
  • the time domain position of the gap is determined based on the following formula, where the system frame (SFN) and subframe (subframe) determined by the following formula are the starting point of the gap:
  • the TDM mode configuration includes at least one of the following information: TDM mode, period of TDM mode, and offset of TDM mode.
  • the reference timing of the TDM mode configuration is the reference timing of the current cell of the first communication card.
  • the TDM mode is in units of subframes, and the SFN and subframes satisfying the following formula are the starting points of the TDM mode:
  • the TDM mode uses SFN as the unit, and the SFN that satisfies the following formula is the starting point of the TDM mode:
  • a fifth request message is sent to the first base station and/or the second base station, and the first base station
  • the fifth request message is used to request the release of the gap mode configuration or the TDM mode configuration; after the terminal device receives the confirmation release message, the terminal device releases the gap mode configuration or the TDM mode configuration.
  • the terminal device has a first communication card and a second communication card, wherein the base station corresponding to the first communication card is the first base station, the base station corresponding to the second communication card is the second base station, and the terminal device receives Based on the first configuration information sent by the first base station, a time domain position is determined based on the first configuration information, and the signal sent by the second base station is received at the time domain position.
  • the terminal device receives Based on the first configuration information sent by the first base station, a time domain position is determined based on the first configuration information, and the signal sent by the second base station is received at the time domain position.
  • FIG. 4 is a schematic structural composition diagram of a signal transmission device provided by an embodiment of the application, which is applied to a terminal device. As shown in FIG. 4, the signal transmission device includes:
  • the receiving unit 401 is configured to receive first configuration information sent by a first base station, where the first configuration information is used to determine a first time domain position; wherein, the first base station is the first communication card in the terminal device In the corresponding base station, the first communication card is in the connected state; the signal sent by the second base station is received at the first time domain position; wherein, the second base station corresponds to the second communication card in the terminal device Base station.
  • the first configuration information includes an autonomous gap configuration, wherein the first time domain position refers to a time domain position corresponding to the autonomous gap;
  • the receiving unit 401 is configured to receive at least one of the following sent by the second base station at a time domain location corresponding to the autonomous gap: a paging message, updated system broadcast information, and PWS information.
  • the device further includes:
  • the sending unit 402 is configured to send a first request message to the first base station, where the first request message is used to request the first base station to configure an autonomous gap.
  • the first request message carries first indication information
  • the first indication information is used to indicate that the purpose of the terminal device requesting an autonomous gap is to receive at least one of the following from the second base station: Call messages, updated system broadcast information, and PWS information.
  • the autonomous gap configuration carries second indication information, and the second indication information is used to indicate the purpose of the autonomous gap.
  • the purpose of the autonomous gap includes at least one of the following:
  • the autonomous gap is used by the terminal device to read the broadcast information of the neighboring cell system
  • the autonomous gap is used by the terminal device to receive a paging message from a second base station
  • the autonomous gap is used by the terminal device to receive system broadcast information of the second base station;
  • the autonomous gap is used by the terminal device to receive the PWS information of the second base station.
  • the first configuration information includes a gap mode configuration, and the gap mode configuration is used to determine the time domain position of the gap, wherein the first time domain position refers to the time domain position of the gap ;
  • the receiving unit 401 is configured to receive at least one of the following sent by the second base station at the time domain position of the gap: a paging message, updated system broadcast information, and PWS information.
  • the first configuration information includes a TDM mode configuration, and the TDM mode configuration is used to determine a time domain position where the first base station is not working, wherein the first time domain position refers to all The time domain position where the first base station is not working;
  • the receiving unit 401 is configured to receive at least one of the following sent by the second base station at a time domain location where the first base station is not working: a paging message, updated system broadcast information, and PWS information.
  • the device further includes:
  • the sending unit 402 is configured to send a second request message to the first base station, where the second request message is used to request the first base station to configure the gap mode or the TDM mode.
  • the second request message carries location information of the PO, where the location information of the PO is determined based on system broadcast information of the second base station.
  • the first configuration information includes a gap mode configuration, and the gap mode configuration is used to determine the time domain position of the gap, wherein the first time domain position refers to the time domain position of the gap ;
  • the device further includes: a measuring unit 403, configured to perform cell selection measurement and/or cell reselection measurement corresponding to the second communication card at the time domain position of the gap.
  • the first configuration information includes a TDM mode configuration, and the TDM mode configuration is used to determine a time domain position where the first base station is not working, wherein the first time domain position refers to all The time domain position where the first base station is not working;
  • the device further includes: a measuring unit 403, configured to perform cell selection measurement and/or cell reselection measurement corresponding to the second communication card at a time domain location where the first base station is not working.
  • the device further includes:
  • the obtaining unit 404 is configured to obtain frequency information for cell selection measurement and/or cell reselection measurement according to the system broadcast information of the second base station;
  • the generating unit 405 is configured to generate the gap mode configuration or the TDM mode configuration to be requested according to the frequency information of the cell selection measurement and/or cell reselection measurement;
  • the sending unit 402 is configured to send a third request message to the first base station, where the third request message carries the gap mode configuration or TDM mode configuration to be requested, and the third request message is used to request the first base station.
  • a base station is configured in gap mode or TDM mode.
  • the frequency information includes at least one of the following corresponding to each frequency point in at least one frequency point: SMTC configuration information and SMTC timing information.
  • the device further includes:
  • a decision unit (not shown in the figure), after receiving the paging message sent by the second base station, decides to reject service reception on the side of the second base station based on the service information that triggered the paging message;
  • the sending unit 402 is configured to send third indication information to the second base station, where the third indication information is used to indicate rejection of service reception or to indicate temporary rejection of service reception.
  • the sending unit 402 is configured to send third indication information to the core network corresponding to the second base station, where the third indication information indicates that service reception is temporarily refused, the The third instruction letter also instructs the core network corresponding to the second base station to cache service data locally, and if the duration of the cache service data exceeds the specified duration, the locally cached service data is released.
  • the third indication information carries a first timer configuration, and the first timer configuration is used to determine that the duration of the first timer is the specified duration; wherein, the second base station corresponds to After receiving the third indication information carrying the configuration of the first timer, the core network of, starts the first timer, and releases the locally buffered service data when the first timer expires.
  • the sending unit 402 is configured to send third indication information to the second base station, where the third indication information indicates that service reception is temporarily refused, the third indication information It also instructs the second base station to locally buffer the service data, and if the buffering time of the service data exceeds the specified time period, release the locally buffered service data and/or release the second communication card to an inactive state.
  • the third indication information carries a second timer configuration, and the second timer configuration is used to determine that the duration of the second timer is the specified duration; wherein, the second base station receives The second timer is started after the third indication information configured by the second timer is carried, and the locally buffered service data is released when the second timer expires.
  • the device further includes:
  • a judging unit configured to, after receiving the paging message sent by the second base station, decide to accept service reception on the side of the second base station based on the service information that triggered the paging message;
  • the sending unit 402 is configured to send fourth indication information to the first base station, where the fourth indication information is used to indicate rejection of service reception or indicate temporary rejection of service reception.
  • the sending unit 402 is configured to send fourth indication information to the core network corresponding to the first base station, where the fourth indication information indicates that service reception is temporarily refused, the The fourth instruction letter also instructs the core network corresponding to the first base station to locally buffer the service data, and if the length of the buffering service data exceeds the specified time period, the locally buffered service data is released.
  • the fourth indication information carries a third timer configuration, and the third timer configuration is used to determine that the duration of the third timer is the specified duration; wherein, the first base station corresponds to After receiving the fourth indication information carrying the configuration of the third timer, the core network in the core network starts the third timer, and releases the locally buffered service data when the third timer expires.
  • the sending unit 402 is configured to send fourth indication information to the first base station, where the fourth indication information indicates that service reception is temporarily refused, the fourth indication information It also instructs the first base station to locally buffer the service data, and if the duration of buffering the service data exceeds the specified duration, release the locally buffered service data and/or release the first communication card to an inactive state.
  • the fourth indication information carries a fourth timer configuration, and the fourth timer configuration is used to determine that the duration of the fourth timer is the specified duration; wherein, the first base station receives The fourth timer is started after the fourth instruction information configured by the fourth timer is carried, and the locally buffered service data is released when the fourth timer expires.
  • the device further includes:
  • a judging unit configured to, after receiving the paging message sent by the second base station, decide to accept service reception on the side of the second base station based on the service information that triggered the paging message;
  • the receiving unit 401 is configured to receive service data sent by the first base station and service data sent by the second base station.
  • the device further includes:
  • the negotiation unit (not shown in the figure) is configured to renegotiate the gap mode configuration or the TDM mode configuration with the first base station and/or the second base station.
  • the negotiation unit is configured to:
  • the target gap mode configuration is the gap mode configuration requested by the terminal device or the gap mode configuration modified by the first base station, so The target TDM mode configuration is the TDM mode configuration requested by the terminal device or the TDM mode configuration modified by the first base station;
  • the negotiation unit is configured to:
  • the gap mode configuration or the TDM mode configuration is determined according to at least one of the following: the service type on the first base station side, the traffic volume on the first base station side, the quality of service QoS on the first base station side, and the second base station The type of service on the side, the amount of service on the second base station side, the QoS on the second base station side, and the timing deviation between the first base station side and the second base station side;
  • the negotiation of the gap mode configuration or the TDM mode configuration is triggered by the terminal device; or,
  • the negotiation of the gap mode configuration or the TDM mode configuration is triggered by the first base station; or,
  • the negotiation of the gap mode configuration or the TDM mode configuration is triggered by the second base station.
  • the terminal device when cell reselection or cell handover occurs on the second communication card, the terminal device triggers the negotiation of the gap mode configuration or the TDM mode configuration; or,
  • the first base station or the terminal device prepares to trigger the negotiation of the gap mode configuration or the TDM mode configuration.
  • the judging unit is further configured to obtain service information that triggers the paging message from the paging reason in the paging message; or, when the second communication card enters the connected state Then, the service information that triggers the paging message is obtained from the core network corresponding to the second base station.
  • the gap mode configuration includes at least one of the following information: the duration of the gap, the period of the gap, and the offset of the gap.
  • the TDM mode configuration includes at least one of the following information: the TDM mode, the period of the TDM mode, and the offset of the TDM mode.
  • the device further includes:
  • the sending unit 402 is configured to send a fifth request message to the first base station and/or the second base station when it is determined that the gap mode configuration or the TDM mode configuration is not required, and the fifth request message is used to request Release gap mode configuration or TDM mode configuration;
  • the releasing unit (not shown in the figure) is configured to release the gap mode configuration or the TDM mode configuration after receiving the release confirmation message.
  • the base station corresponding to the first communication card and the base station corresponding to the second communication card are different base stations; or,
  • the base station corresponding to the first communication card and the base station corresponding to the second communication card are the same base station.
  • FIG. 5 is a schematic structural diagram of a communication device 500 provided by an embodiment of the present application.
  • the communication device may be a terminal device or a network device.
  • the communication device 500 shown in FIG. 5 includes a processor 510, and the processor 510 can call and run a computer program from a memory to implement the method in the embodiment of the present application.
  • the communication device 500 may further include a memory 520.
  • the processor 510 may call and run a computer program from the memory 520 to implement the method in the embodiment of the present application.
  • the memory 520 may be a separate device independent of the processor 510, or may be integrated in the processor 510.
  • the communication device 500 may further include a transceiver 530, and the processor 510 may control the transceiver 530 to communicate with other devices. Specifically, it may send information or data to other devices, or receive other devices. Information or data sent by the device.
  • the transceiver 530 may include a transmitter and a receiver.
  • the transceiver 530 may further include an antenna, and the number of antennas may be one or more.
  • the communication device 500 may specifically be a network device of an embodiment of the present application, and the communication device 500 may implement the corresponding process implemented by the network device in each method of the embodiment of the present application. For the sake of brevity, it will not be repeated here. .
  • the communication device 500 may specifically be a mobile terminal/terminal device of an embodiment of the present application, and the communication device 500 may implement the corresponding process implemented by the mobile terminal/terminal device in each method of the embodiment of the present application.
  • I won’t repeat it here.
  • Fig. 6 is a schematic structural diagram of a chip of an embodiment of the present application.
  • the chip 600 shown in FIG. 6 includes a processor 610, and the processor 610 can call and run a computer program from the memory to implement the method in the embodiment of the present application.
  • the chip 600 may further include a memory 620.
  • the processor 610 may call and run a computer program from the memory 620 to implement the method in the embodiment of the present application.
  • the memory 620 may be a separate device independent of the processor 610, or may be integrated in the processor 610.
  • the chip 600 may further include an input interface 630.
  • the processor 610 can control the input interface 630 to communicate with other devices or chips, and specifically, can obtain information or data sent by other devices or chips.
  • the chip 600 may further include an output interface 640.
  • the processor 610 can control the output interface 640 to communicate with other devices or chips, and specifically, can output information or data to other devices or chips.
  • the chip can be applied to the network device in the embodiment of the present application, and the chip can implement the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • the chip can implement the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • the chip can be applied to the mobile terminal/terminal device in the embodiment of the present application, and the chip can implement the corresponding process implemented by the mobile terminal/terminal device in each method of the embodiment of the present application.
  • the chip can implement the corresponding process implemented by the mobile terminal/terminal device in each method of the embodiment of the present application.
  • the chip can implement the corresponding process implemented by the mobile terminal/terminal device in each method of the embodiment of the present application.
  • the chip mentioned in the embodiment of the present application may also be referred to as a system-level chip, a system-on-chip, a system-on-chip, or a system-on-chip, etc.
  • FIG. 7 is a schematic block diagram of a communication system 700 according to an embodiment of the present application. As shown in FIG. 7, the communication system 700 includes a terminal device 710 and a network device 720.
  • the terminal device 710 can be used to implement the corresponding function implemented by the terminal device in the above method
  • the network device 720 can be used to implement the corresponding function implemented by the network device in the above method. For brevity, it will not be repeated here. .
  • the processor of the embodiment of the present application may be an integrated circuit chip with signal processing capability.
  • the steps of the foregoing method embodiments may be completed by hardware integrated logic circuits in the processor or instructions in the form of software.
  • the above-mentioned processor may be a general-purpose processor, a digital signal processor (Digital Signal Processor, DSP), an application specific integrated circuit (ASIC), a ready-made programmable gate array (Field Programmable Gate Array, FPGA) or other Programming logic devices, discrete gates or transistor logic devices, discrete hardware components.
  • DSP Digital Signal Processor
  • ASIC application specific integrated circuit
  • FPGA Field Programmable Gate Array
  • the methods, steps, and logical block diagrams disclosed in the embodiments of the present application can be implemented or executed.
  • the general-purpose processor may be a microprocessor or the processor may also be any conventional processor or the like.
  • the steps of the method disclosed in the embodiments of the present application may be directly embodied as being executed and completed by a hardware decoding processor, or executed and completed by a combination of hardware and software modules in the decoding processor.
  • the software module can be located in a mature storage medium in the field, such as random access memory, flash memory, read-only memory, programmable read-only memory, or electrically erasable programmable memory, registers.
  • the storage medium is located in the memory, and the processor reads the information in the memory and completes the steps of the above method in combination with its hardware.
  • the memory in the embodiments of the present application may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memory.
  • the non-volatile memory can be read-only memory (Read-Only Memory, ROM), programmable read-only memory (Programmable ROM, PROM), erasable programmable read-only memory (Erasable PROM, EPROM), and electrically available Erase programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
  • the volatile memory may be a random access memory (Random Access Memory, RAM), which is used as an external cache.
  • RAM random access memory
  • SRAM static random access memory
  • DRAM dynamic random access memory
  • DRAM synchronous dynamic random access memory
  • DDR SDRAM Double Data Rate Synchronous Dynamic Random Access Memory
  • Enhanced SDRAM, ESDRAM Enhanced Synchronous Dynamic Random Access Memory
  • Synchronous Link Dynamic Random Access Memory Synchronous Link Dynamic Random Access Memory
  • DR RAM Direct Rambus RAM
  • the memory in the embodiment of the present application may also be static random access memory (static RAM, SRAM), dynamic random access memory (dynamic RAM, DRAM), Synchronous dynamic random access memory (synchronous DRAM, SDRAM), double data rate synchronous dynamic random access memory (double data rate SDRAM, DDR SDRAM), enhanced synchronous dynamic random access memory (enhanced SDRAM, ESDRAM), synchronous connection Dynamic random access memory (synch link DRAM, SLDRAM) and direct memory bus random access memory (Direct Rambus RAM, DR RAM) and so on. That is to say, the memory in the embodiments of the present application is intended to include, but is not limited to, these and any other suitable types of memory.
  • the embodiments of the present application also provide a computer-readable storage medium for storing computer programs.
  • the computer-readable storage medium can be applied to the network device in the embodiment of the present application, and the computer program causes the computer to execute the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • the computer program causes the computer to execute the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • the computer-readable storage medium can be applied to the mobile terminal/terminal device in the embodiment of the present application, and the computer program causes the computer to execute the corresponding process implemented by the mobile terminal/terminal device in each method of the embodiment of the present application , For the sake of brevity, I won’t repeat it here.
  • the embodiments of the present application also provide a computer program product, including computer program instructions.
  • the computer program product can be applied to the network device in the embodiment of the present application, and the computer program instructions cause the computer to execute the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • the computer program instructions cause the computer to execute the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • the computer program product can be applied to the mobile terminal/terminal device in the embodiment of the present application, and the computer program instructions cause the computer to execute the corresponding process implemented by the mobile terminal/terminal device in each method of the embodiment of the present application, For the sake of brevity, I will not repeat them here.
  • the embodiment of the present application also provides a computer program.
  • the computer program can be applied to the network device in the embodiment of the present application.
  • the computer program runs on the computer, it causes the computer to execute the corresponding process implemented by the network device in each method of the embodiment of the present application.
  • I won’t repeat it here.
  • the computer program can be applied to the mobile terminal/terminal device in the embodiment of the present application.
  • the computer program runs on the computer, the computer executes each method in the embodiment of the present application. For the sake of brevity, the corresponding process will not be repeated here.
  • the disclosed system, device, and method can be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the units is only a logical function division, and there may be other divisions in actual implementation, for example, multiple units or components may be combined or It can be integrated into another system, or some features can be ignored or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
  • the functional units in the various embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit.
  • the function is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
  • the technical solution of the present application essentially or the part that contributes to the existing technology or the part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including Several instructions are used to make a computer device (which may be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the methods described in the various embodiments of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory,) ROM, random access memory (Random Access Memory, RAM), magnetic disks or optical disks and other media that can store program codes. .

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Abstract

本申请实施例提供一种信号传输方法及装置、终端设备,该方法包括:终端设备接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态;所述终端设备在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。

Description

一种信号传输方法及装置、终端设备 技术领域
本申请实施例涉及移动通信技术领域,具体涉及一种信号传输方法及装置、终端设备。
背景技术
双卡双待手机,是指一部手机可以同时装下两张通信卡,并且这两张通信卡均处于待机状态。目前,手机一般不支持纯粹的双发双收(简称为双通),双发双收是指手机同时通过两个通信卡在两个网络上进行数据的上行发送和下行接收。然而,实现双通是未来手机发展的一个趋势,但是在一个手机内实现双通,会存在两张通信卡的资源共享分配的问题。
发明内容
本申请实施例提供一种信号传输方法及装置、终端设备。
本申请实施例提供的信号传输方法,包括:
终端设备接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态;
所述终端设备在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。
本申请实施例提供的信号传输装置,应用于终端设备,所述装置包括:
接收单元,用于接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态;在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。
本申请实施例提供的终端设备,包括处理器和存储器。该存储器用于存储计算机程序,该处理器用于调用并运行该存储器中存储的计算机程序,执行上述的信号传输方法。
本申请实施例提供的芯片,用于实现上述的信号传输方法。
具体地,该芯片包括:处理器,用于从存储器中调用并运行计算机程序,使得安装有该芯片的设备执行上述的信号传输方法。
本申请实施例提供的计算机可读存储介质,用于存储计算机程序,该计算机程序使得计算机执行上述的信号传输方法。
本申请实施例提供的计算机程序产品,包括计算机程序指令,该计算机程序指令使得计算机执行上述的信号传输方法。
本申请实施例提供的计算机程序,当其在计算机上运行时,使得计算机执行上述的信号传输方法。
通过上述技术方案,终端设备具有第一通信卡和第二通信卡,其中,第一通信卡对应的基站为第一基站,第二通信卡对应的基站为第二基站,终端设备接收第一基站发送的第一配置信息,基于该第一配置信息确定出一个时域位置,在该时域位置上接收第二基站发送的信号,通过这种资源协商方式能够实现两个通信卡的资源共享,从而实现了终端设备的双通功能。
附图说明
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1是本申请实施例提供的一种通信***架构的示意性图;
图2为本申请实施例提供的信号传输方法的流程示意图;
图3为本申请实施例提供的双卡场景的示意图;
图4为本申请实施例提供的信号传输装置的结构组成示意图;
图5是本申请实施例提供的一种通信设备示意性结构图;
图6是本申请实施例的芯片的示意性结构图;
图7是本申请实施例提供的一种通信***的示意性框图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施例的技术方案可以应用于各种通信***,例如:长期演进(Long Term Evolution,LTE)***、LTE频分双工(Frequency Division Duplex,FDD)***、LTE时分双工(Time Division Duplex,TDD)、***、5G通信***或未来的通信***等。
示例性的,本申请实施例应用的通信***100如图1所示。该通信***100可以包括网络设备110,网络设备110可以是与终端120(或称为通信终端、终端)通信的设备。网络设备110可以为特定的地理区域提供通信覆盖,并且可以与位于该覆盖区域内的终端进行通信。可选地,该网络设备110可以是LTE***中的演进型基站(Evolutional Node B,eNB或eNodeB),或者是云无线接入网络(Cloud Radio Access Network,CRAN)中的无线控制器,或者该网络设备可以为移动交换中心、中继站、接入点、车载设备、可穿戴设备、集线器、交换机、网桥、路由器、5G网络中的网络侧设备或者未来通信***中的网络设备等。
该通信***100还包括位于网络设备110覆盖范围内的至少一个终端120。作为在此使用的“终端”包括但不限于经由有线线路连接,如经由公共交换电话网络(Public Switched Telephone Networks,PSTN)、数字用户线路(Digital Subscriber Line,DSL)、数字电缆、直接电缆连接;和/或另一数据连接/网络;和/或经由无线接口,如,针对蜂窝网络、无线局域网(Wireless Local Area Network,WLAN)、诸如DVB-H网络的数字电视网络、卫星网络、AM-FM广播发送器;和/或另一终端的被设置成接收/发送通信信号的装置;和/或物联网(Internet of Things,IoT)设备。被设置成通过无线接口通信的终端可以被称为“无线通信终端”、“无线终端”或“移动终端”。移动终端的示例包括但不限于卫星或蜂窝电话;可以组合蜂窝无线电电话与数据处理、传真以及数据通信能力的个人通信***(Personal Communications System,PCS)终端;可以包括无线电电话、寻呼机、因特网/内联网接入、Web浏览器、记事簿、日历以及/或全球定位***(Global Positioning System,GPS)接收器的PDA;以及常规膝上型和/或掌上型接收器或包括无线电电话收发器的其它电子装置。终端可以指接入终端、用户设备(User Equipment,UE)、用户单元、用户站、移动站、移动台、远方站、远程终端、移动设备、用户终端、终端、无线通信设备、用户代理或用户装置。接入终端可以是蜂窝电话、无绳电话、会话启动协议(Session Initiation Protocol,SIP)电话、无线本地环路(Wireless Local Loop,WLL)站、个人数字处理(Personal Digital Assistant,PDA)、具有无线通信功能的手持设备、计算设备或连接到无线调制解调器的其它处理设备、车载设备、可穿戴设备、5G网络中的终端或者未来演进的PLMN中的终端等。
可选地,终端120之间可以进行终端直连(Device to Device,D2D)通信。
可选地,5G通信***或5G网络还可以称为新无线(New Radio,NR)***或NR网络。
图1示例性地示出了一个网络设备和两个终端,可选地,该通信***100可以包括多个网络设备并且每个网络设备的覆盖范围内可以包括其它数量的终端,本申请实施例对此不做限定。
可选地,该通信***100还可以包括网络控制器、移动管理实体等其他网络实体,本申请实施例对此不作限定。
应理解,本申请实施例中网络/***中具有通信功能的设备可称为通信设备。以图1示出的通信***100为例,通信设备可包括具有通信功能的网络设备110和终端120,网络设备110和终端120可以为上文所述的具体设备,此处不再赘述;通信设备还可包括通信***100中的其他设备,例如网络控制器、移动管理实体等其他网络实体,本申请实施例中对此不做限定。
应理解,本文中术语“***”和“网络”在本文中常被可互换使用。本文中术语“和/或”,仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或” 的关系。
为便于理解本申请实施例的技术方案,以下对本申请实施例相关的技术方案进行说明。
随着人们对速率、延迟、高速移动性、能效的追求以及未来生活中业务的多样性、复杂性,为此第三代合作伙伴计划(3 rd Generation Partnership Project,3GPP)国际标准组织开始研发5G。5G的主要应用场景为:增强移动超宽带(enhanced Mobile Broadband,eMBB)、低时延高可靠通信(Ultra-Reliable Low-Latency Communications,URLLC)、大规模机器类通信(massive Machine-Type Communications,mMTC)。
一方面,eMBB仍然以用户获得多媒体内容、服务和数据为目标,其需求增长十分迅速。另一方面,由于eMBB可能部署在不同的场景中,例如室内,市区,农村等,其能力和需求的差别也比较大,所以不能一概而论,必须结合具体的部署场景详细分析。URLLC的典型应用包括:工业自动化,电力自动化,远程医疗操作(手术),交通安全保障等。mMTC的典型特点包括:高连接密度,小数据量,时延不敏感业务,模块的低成本和长使用寿命等。
Figure PCTCN2020082796-appb-000001
RRC状态
5G为了降低空口信令和快速恢复无线连接,快速恢复数据业务的目的,定义了一个新的无线资源控制(Radio Resource Control,RRC)状态,即RRC非激活(RRC_INACTIVE)状态。这种状态有别于RRC空闲(RRC_IDLE)状态和RRC激活(RRC_ACTIVE)状态。其中,
1)RRC_IDLE状态(简称为空闲(idle)态):移动性为基于UE的小区选择重选,寻呼由核心网(Core Network,CN)发起,寻呼区域由CN配置。基站侧不存在UE上下文,不存在RRC连接。
2)RRC_CONNECTED状态(简称为连接(connected)态):存在RRC连接,基站侧和UE侧存在UE上下文。网络侧知道UE的位置是具体小区级别的。移动性是网络侧控制的移动性。UE和基站之间可以传输单播数据。
3)RRC_INACTIVE状态(简称为非激活(inactive)态):移动性为基于UE的小区选择重选,存在CN-NR之间的连接,UE上下文存在某个基站上,寻呼由RAN触发,基于RAN的寻呼区域由RAN管理,网络侧知道UE的位置是基于RAN的寻呼区域级别的。
Figure PCTCN2020082796-appb-000002
双卡双待/双网双待
双卡双待手机,是指一部手机可以同时装下两张通信卡,并且这两张通信卡均处于待机状态。双卡双待一般指同一种网络制式的双卡双待,例如GSM网络的双卡双待,CDMA网络的双卡双待,PHS网络的双卡双待。
双网双待是指一部手机可同时***两张不同网络的通信卡,并使之同时处于开机状态,用户无需切换网络,即可任意拨打、接听和收发短信。
目前,手机一般不支持纯粹的双发双收(简称为双通),双发双收是指手机同时通过两个通信卡在两个网络上进行数据的上行发送和下行接收。一般来说,大多数手机都只支持单发单收或单发双收,这也就意味着手机在某一时刻只能执行一张通信卡上的业务。然而,实现双通是未来手机发展的一个趋势。在5G中,对于支持双卡双待或者双网双待的手机的两张通信卡,其中一张通信卡可以驻留在LTE小区,另一张通信卡可以驻留在NR小区;或者,两张通信卡都驻留在NR小区。另一方面,两个通信卡可以是同一个运营商的通信卡,也可以是不同运营商的通信卡。
在一个手机内实现双通,会存在两张通信卡的资源共享分配的问题,为此,提出了本申请实施例的以下技术方案。
需要说明的是,本申请实施例中的“终端设备”可以是手机、平板电脑、穿戴式设备等,终端设备具有至少两张通信卡,例如终端设备具有2张通信卡或3张通信卡等。以下实施例以两张通信卡为例进行说明,不局限于此,两张以上通信卡的方案同样适用于本申请实施例的技术方案。
需要说明的是,本申请实施例对第一通信卡和第二通信卡的类型不做限制。例如第一通信卡和第二通信卡都是用户识别模块(Subscriber Identity Module,SIM)卡。例如第一通信卡和第二通信卡都是全球用户识别模块(Universal Subscriber Identity Module,USIM)卡。例如第一通信卡是SIM卡,第二通信卡是USIM卡。例如第一通信卡是USIM卡,第二通信卡是SIM卡。
另一方面,本申请实施例对第一通信卡和第二通信卡支持的网络类型不做限制,例如第一通信卡支持LTE网络(即第一通信卡对应的第一基站为LTE基站),第二通信卡支持NR网络(即第二通信卡对应的第二基站为NR基站)。例如第一通信卡和第二通信卡都支持NR网络(即第一通信卡和第二通信卡和第二通信卡对应的第二基站均为NR基站)。
再一方面,本申请实施例对第一通信卡和第二通信卡所属的运营商不做限制,例如第一通信卡和第二通信卡可以属于同一个运营商,也可以属于不同的运营商。
图2为本申请实施例提供的信号传输方法的流程示意图,如图2所示,所述信号传输方法包括以下步骤:
步骤201:终端设备接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态。
本申请实施例中,参照图3,终端设备具有第一通信卡和第二通信卡,其中,第一通信卡对应的基站为第一基站,第二通信卡对应的基站为第二基站。一方面,终端设备可以通过第一通信卡接入第一基站,实现在第一网络上进行数据的上行发送和/或下行接收。另一方面,终端设备可以通过第二通信卡接入第二基站,实现在第二网络上进行数据的上行发送和/或下行接收。这里,第一网络和第二网络的类型可以相同,也可以不同。例如第一网络为LTE网络,第二网络为NR网络。再例如第一网络和第二网络都是NR网络。
需要说明的是,在一可选方式中,所述第一通信卡对应的基站和所述第二通信卡对应的基站为不同的基站。在另一可选方式中,所述第一通信卡对应的基站和所述第二通信卡对应的基站为相同的基站,针对这种情况,可以将本申请实施例中关于“第二基站”的描述等效替换成“第一基站”,或者将关于“第一基站”的描述等效替换成“第二基站”。
本申请实施例中,终端设备的第一通信卡存在进行的业务,处于连接态。终端设备的第二通信卡可以处于空闲态或者非激活态或者连接态。举个例子:终端设备中存在两个USIM卡,分别为USIM-A卡和USIM-B卡。其中,USIM-A卡存在进行的业务,处于连接态。USIM-B卡处于空闲态或者非激活态或者连接态。
需要说明的是,终端设备与第一基站之间的通信是通过第一通信卡实现的,终端设备与第二基站之间的通信是通过第二通信卡实现的。举个例子:终端设备中存在两个USIM卡,分别为USIM-A卡和USIM-B卡。其中,终端设备可以通过USIM-A卡与第一基站实现通信,终端设备可以通过USIM-B卡与第二基站实现通信。
本申请实施例中,终端设备接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置,这里,所述第一时域位置是用于接收第二基站发送的信号的时域位置。
步骤202:所述终端设备在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。
本申请实施例中,所述第一配置信息的实现可以有以下几种方式,以下结合所述第一配置信息的不同实现方式说明如何确定第一时域位置。
●方式一
所述第一配置信息包括自主间隔(gap)配置,其中,所述第一时域位置是指自主gap对应的时域位置;所述终端设备在所述自主gap对应的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、公共预警***(Public Warning System,PWS)信息。
在一可选方式中,所述终端设备接收第一基站发送的第一配置信息之前,所述终端设备向所述第一基站发送第一请求消息,所述第一请求消息用于请求所述第一基站配置自主gap。
进一步,可选地,所述第一请求消息携带第一指示信息,所述第一指示信息用于指示所述终端设备请求自主gap的目的是为了接收第二基站的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
进一步,可选地,所述自主gap配置携带第二指示信息,所述第二指示信息用于指示自主gap的用途。其中,所述自主gap的用途包括以下至少之一:
所述自主gap用于所述终端设备读取邻区***广播信息;
所述自主gap用于所述终端设备接收第二基站的寻呼消息;
所述自主gap用于所述终端设备接收第二基站的***广播信息;
所述自主gap用于所述终端设备接收第二基站的PWS信息。
举个例子:USIM-A卡对应的第一基站为终端设备配置了自主Gap,终端设备利用第一基站配置的自主gap,去USIM-B卡对应的第二基站收寻以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
可选地,如果USIM-A卡对应的第一基站没有给终端设备配置自主gap,则终端设备可以请求第一基站配置自主gap,可选的,终端设备还可以指示第一基站终端设备请求自主gap的目的是为了在多通信卡(如双通信卡)场景下接收USIM-B卡对应的第二基站的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
可选地,USIM-A卡对应的第一基站在配置自主gap的时候,同时还指示终端设备该自主gap的用途。
需要说明的是,自主gap是指:终端设备可以自主离开当前正在服务的网络一段时间,不用通知网络侧。对于第一基站配置的自主gap来说,终端设备可以自主离开第一基站提供的网络服务一段时间,不同通知第一基站。对于第一基站来说,是不知道终端设备在哪些时间离开第一基站提供的网络服务的,其仅知道终端设备能够离开第一基站提供的网络服务一段时间。
●方式二
A)所述第一配置信息包括gap模式(gap pattern)配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;所述终端设备在所述gap的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。或者,
B)所述第一配置信息包括TDM模式(TDM pattern)配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;所述终端设备在所述第一基站不工作的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
在一可选方式中,所述终端设备接收第一基站发送的第一配置信息之前,所述终端设备向所述第一基站发送第二请求消息,所述第二请求消息用于请求所述第一基站配置gap模式或者TDM模式。
进一步,可选地,所述第二请求消息携带寻呼时机(Paging Occasion,PO)的位置信息,其中,所述PO的位置信息基于所述第二基站的***广播信息确定。
举个例子:终端设备接收USIM-B卡对应的第二基站的***广播信息,根据该***广播信息计算PO位置,终端设备基于该PO位置请求USIM-A卡对应的第一基站配置一个gap模式或者TDM模式。终端设备获取到第一基站配置的gap模式配置或者TDM模式配置后,在gap模式配置确定的gap时长内或者在TDM模式配置确定的第一基站不工作的时隙或者符号内,接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
需要说明的是,终端设备接收第二基站发送的寻呼消息和/或更新的***广播信息和/或PWS信息,是指:终端设备接收第二通信卡(如USIM-B卡)所在的小区的寻呼消息和/或更新的***广播信息和/或PWS信息。其中,第二通信卡(如USIM-B卡)所在的小区为第二基站覆盖的小区。
●方式三
A)所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;所述终端设备在所述gap的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
B)所述第一配置信息包括TDM模式配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;所述终端设备在所述第一基站不工作的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
在一可选方式中,所述终端设备接收第一基站发送的第一配置信息之前,所述终端设备根据所述第二基站的***广播信息,获得小区选择测量和/或小区重选测量的频率信息;所述终端设备根据所述小区选择测量和/或小区重选测量的频率信息,生成待请求的gap模式配置或者TDM模式配置;所述终端设备向所述第一基站发送第三请求消息,所述第三请求消息携带所述待请求的gap模式配置或者TDM模式配置,所述第三请求消息用于请求所述第一基站配置gap模式或者TDM模式。
进一步,可选地,所述频率信息包括至少一个频点中每个频点对应的以下至少之一:SMTC配置信息、SMTC的定时信息。
举个例子:终端设备根据USIM-B卡所在小区的***广播信息获得小区选择测量和/或小区重选测量的频率信息,包括E-UTRAN频点信息,NR频点信息和该NR频点对应的SMTC测量配置(如SMTC配置信息、SMTC的定时信息)等。终端设备根据上述频率信息生成待请求的gap模式配置或者TDM模式配置,然后请求USIM-A卡对应的第一基站配置gap模式或者TDM模式。终端设备获取到第一基站配置的gap模式配置或者TDM模式配置后,在gap模式配置确定的gap时长内或者在TDM模式配置确定的第一基站不工作的时隙或者符号内,执行USIM-B卡所在小区需要的小区选择测量和/或小区重选测量。
本申请实施例中,所述终端设备接收到所述第二基站发送的寻呼消息后,可以拒绝所述第二基站侧的业务接收,也可以接受所述第二基站侧的业务接收,以下分情况进行说明。
情况一:拒绝所述第二基站侧的业务接收。
所述终端设备接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决拒绝所述第二基站侧的业务接收;所述终端设备向所述第二基站发送第三指示信息,所述第三指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
这里,所述终端设备从所述寻呼消息中的寻呼原因中获取触发所述寻呼消息的业务信息;或者,所述终端设备在所述第二通信卡进入连接态后,从所述第二基站对应的核心网获取触发所述寻呼消息的业务信息。例如:终端设备接收USIM-B卡对应的第二基站发送的寻呼消息后,通过寻呼消息中的paging cause得知触发该寻呼的业务信息,或者终端设备在USIM-B卡进入连接态后从核心网获得触发该寻呼的业务信息。
需要说明的是,触发所述寻呼消息的业务信息为所述第二基站侧的业务信息,在所述第二基站侧的业务信息的优先级低于指定优先级的情况下或者所述第二基站侧的业务信息的优先级低于所述第一基站侧的业务信息的优先级的情况下,所述终端设备判决拒绝所述第二基站侧的业务接收。
I)在一可选方式中,所述终端设备向所述第二基站对应的核心网发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
这里,所述第三指示信息携带第一定时器配置,所述第一定时器配置用于确定第一定时器的时长为所述指定时长;其中,所述第二基站对应的核心网接收到携带所述第一定时器配置的所述第三指示信息后启动所述第一定时器,并在所述第一定时器超时的情况下释放本地缓存的业务数据(即删除本地缓存的业务数据)。
II)在另一可选方式中,所述终端设备向所述第二基站发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第二通信卡到非激活态。
这里,所述第三指示信息携带第二定时器配置,所述第二定时器配置用于确定第二定时器的时长为所述指定时长;其中,所述第二基站接收到携带所述第二定时器配置的所述第三指示信息后启动所述第二定时器,并在所述第二定时器超时的情况下释放本地缓存的业务数据(即删除本地缓存的业务数据)。
情况二:接受所述第二基站侧的业务接收。
所述终端设备接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;所述终端设备向所述第一基站发送第四指示信息,所述第四指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
这里,所述终端设备从所述寻呼消息中的寻呼原因中获取触发所述寻呼消息的业务信息;或者,所述终端设备在所述第二通信卡进入连接态后,从所述第二基站对应的核心网获取触发所述寻呼消息的业务信息。例如:终端设备接收USIM-B卡对应的第二基站发送的寻呼消息后,通过寻呼消息中的paging cause得知触发该寻呼的业务信息,或者终端设备在USIM-B卡进入连接态后从核心网获得触发该寻呼的业务信息。
需要说明的是,触发所述寻呼消息的业务信息为所述第二基站侧的业务信息,在所述第二基站侧的业务信息的优先级高于指定优先级的情况下或者所述第二基站侧的业务信息的优先级高于或等于所述第一基站侧的业务信息的优先级的情况下,所述终端设备判决接受所述第二基站侧的业务接收。
I)在一可选方式中,所述终端设备向所述第一基站对应的核心网发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
这里,所述第四指示信息携带第三定时器配置,所述第三定时器配置用于确定第三定时器的时长为所述指定时长;其中,所述第一基站对应的核心网接收到携带所述第三定时器配置的所述第四指示信息后启动所述第三定时器,并在所述第三定时器超时的情况下释放本地缓存的业务数据(即删除本地缓存的业务数据)。
II)在另一可选方式中,所述终端设备向所述第一基站发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第一通信卡到非激活态。
这里,所述第四指示信息携带第四定时器配置,所述第四定时器配置用于确定第四定时器的时长为所述指定时长;其中,所述第一基站接收到携带所述第四定时器配置的所述第四指示信息后启动所述第四定时器,并在所述第四定时器超时的情况下释放本地缓存的业务数据(即删除本地缓存的业务数据)。
情况三:接受所述第二基站侧的业务接收。
所述终端设备接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;所述终端设备接收所述第一基站发送的业务数据和所述第二基站发送的业务数据。
这里,所述终端设备从所述寻呼消息中的寻呼原因中获取触发所述寻呼消息的业务信息;或者,所述终端设备在所述第二通信卡进入连接态后,从所述第二基站对应的核心网获取触发所述寻呼消息的业务信息。例如:终端设备接收USIM-B卡对应的第二基站发送的寻呼消息后,通过寻呼消息中的paging cause得知触发该寻呼的业务信息,或者终端设备在USIM-B卡进入连接态后从核心网获得触发该寻呼的业务信息。
需要说明的是,触发所述寻呼消息的业务信息为所述第二基站侧的业务信息,在所述第二基站侧的业务信息的优先级高于指定优先级的情况下或者所述第二基站侧的业务信息的优先级高于或等于所述第一基站侧的业务信息的优先级的情况下,所述终端设备判决接受所述第二基站侧的业务接收。
进一步,所述终端设备与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置。例如:终端设备可以根据所述第一基站侧的业务数据和所述第二基站侧的业务数据的以下至少之一重新协商gap配置或TDM配置:业务数据的类型、业务数据的业务量、业务数据的QOS。
以下描述所述终端设备如何与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置。
协商方式一
所述终端设备向所述第一基站发送第四请求消息,所述第四请求消息携带所述终端设备请求的gap模式配置或者TDM模式配置;所述终端设备接收所述第一基站发送的目标gap模式配置或者目标TDM模式配置,其中,所述目标gap模式配置为所述终端设备请求的gap模式配置或者所述第一基站修改后的gap模式配置,所述目标TDM模式配置为所述终端设备请求的TDM模式配置或者所述第一基站修改后的TDM模式配置;所述终端设备将所述目标gap模式配置或者目标TDM模式配置发送给所述第二基站。
举个例子:终端设备触发向USIM-A卡对应的第一基站发起gap模式配置请求或者TDM模式配置请求的过程。第一基站可以拒绝终端设备请求的gap模式配置或者TDM模式配置;或者,第一基站可以修改终端设备请求的gap模式配置或者TDM模式配置,并反馈给终端设备进行确认,终端设备将修改的gap模式配置或者TDM模式配置发送给USIM-B卡对应的第二基站;或者,第一基站可以接受终端设备请求的gap模式配置或者TDM模式配置,并指示终端设备其接受终端设备请求的gap模式配置或者TDM模式配置,终端设备将请求的gap模式配置或者TDM模式配置发送给USIM-B卡对应的第二基站。
协商方式二
所述终端设备根据以下至少之一确定gap模式配置或者TDM模式配置:所述第一基站侧的业务类型、所述第一基站侧的业务量、所述第一基站侧的服务质量QoS、所述第二基站侧的业务类型、所述第二基站侧的业务量、所述第二基站侧的QoS、所述第一基站侧和所述第二基站侧的定时偏差;所述终端设备将所述定gap模式配置或者TDM模式配置发送给所述第一基站和/或所述第二基站。
上述方案中,所述gap模式配置或者TDM模式配置的协商,由所述终端设备触发;或者,所述gap模式配置或者TDM模式配置的协商,由所述第一基站触发;或者,所述gap模式配置或者TDM模式配置的协商,由所述第二基站触发。
在一个示例中,小区重选或者小区切换可以触发所述gap模式配置或者TDM模式配置的重新协商。例如:在所述第二通信卡发生小区重选或者小区切换的情况下,终端设备会重新获取第二基站的***广播广播信息,如此,由所述终端设备触发所述gap模式配置或者TDM模式配置的协商,具体地,所述终端设备会向第一基站重新发起gap模式配置或者TDM模式配置的请求过程或者协商过程。例如:在所述第一通信卡发生小区切换的情况下,由所述第一基站(或者所 述第一通信卡切换的目标基站)或者所述终端设备备触发所述gap模式配置或者TDM模式配置的协商。
本申请实施例上述方案中,所述gap模式配置包括以下至少一种信息:gap的时长、gap的周期、gap的偏置。进一步,gap模式配置的参考定时为所述第一通信卡当前小区的参考定时。
在一个示例中,gap的时域位置基于以下公式确定,其中,通过以下公式确定的***帧(SFN)和子帧(subframe)为gap的起点:
SFN mod T=(FLOOR(Offset/10));
if the Periodicity is larger than sf5:
subframe=Offset mod 10;
else:
subframe=Offset or(Offset+5);
with T=CEIL(Periodicity/10).
本申请实施例上述方案中,所述TDM模式配置包括以下至少一种信息:TDM模式、TDM模式的周期、TDM模式的偏置。TDM模式配置的参考定时为所述第一通信卡当前小区的参考定时。
在一个示例中,TDM模式以子帧为单位,满足如下公式的SFN和子帧为TDM模式的起点:
SFN mod T=(FLOOR(Offset/10));
if the Periodicity is larger than sf5:
subframe=Offset mod 10;
else:
subframe=Offset or(Offset+5);
with T=CEIL(Periodicity/10).
其中,TDM模式为n个比特的比特图(bitmap),例如n=40,bitmap中的每个比特对应一个子帧,该比特设置1或者0表示该子帧是否可以传输或收发数据。
在另一个示例中,TDM模式以SFN为单位,满足如下公式的SFN为TDM模式的起点:
SFN mod T=Offset.
在本申请一可选方式中,所述终端设备判决不需要gap模式配置或者TDM模式配置的情况下,向所述第一基站和/或所述第二基站发生第五请求消息,所述第五请求消息用于请求释放gap模式配置或者TDM模式配置;所述终端设备接收到确认释放消息后,释放所述gap模式配置或者所述TDM模式配置。
本申请实施例的技术方案,终端设备具有第一通信卡和第二通信卡,其中,第一通信卡对应的基站为第一基站,第二通信卡对应的基站为第二基站,终端设备接收第一基站发送的第一配置信息,基于该第一配置信息确定出一个时域位置,在该时域位置上接收第二基站发送的信号,通过这种资源协商方式能够实现两个通信卡的资源共享,从而实现了终端设备的双通功能。
图4为本申请实施例提供的信号传输装置的结构组成示意图,应用于终端设备,如图4所示,所述信号传输装置包括:
接收单元401,用于接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态;在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。
在一可选方式中,所述第一配置信息包括自主gap配置,其中,所述第一时域位置是指自主gap对应的时域位置;
所述接收单元401,用于在所述自主gap对应的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
在一可选方式中,所述装置还包括:
发送单元402,用于向所述第一基站发送第一请求消息,所述第一请求消息用于请求所述第一基站配置自主gap。
在一可选方式中,所述第一请求消息携带第一指示信息,所述第一指示信息用于指示所述终端设备请求自主gap的目的是为了接收第二基站的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
在一可选方式中,所述自主gap配置携带第二指示信息,所述第二指示信息用于指示自主gap的用途。
在一可选方式中,所述自主gap的用途包括以下至少之一:
所述自主gap用于所述终端设备读取邻区***广播信息;
所述自主gap用于所述终端设备接收第二基站的寻呼消息;
所述自主gap用于所述终端设备接收第二基站的***广播信息;
所述自主gap用于所述终端设备接收第二基站的PWS信息。
在一可选方式中,所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;
所述接收单元401,用于在所述gap的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
在一可选方式中,所述第一配置信息包括TDM模式配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;
所述接收单元401,用于在所述第一基站不工作的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
在一可选方式中,所述装置还包括:
发送单元402,用于向所述第一基站发送第二请求消息,所述第二请求消息用于请求所述第一基站配置gap模式或者TDM模式。
在一可选方式中,所述第二请求消息携带PO的位置信息,其中,所述PO的位置信息基于所述第二基站的***广播信息确定。
在一可选方式中,所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;
所述装置还包括:测量单元403,用于在所述gap的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
在一可选方式中,所述第一配置信息包括TDM模式配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;
所述装置还包括:测量单元403,用于在所述第一基站不工作的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
在一可选方式中,所述装置还包括:
获取单元404,用于根据所述第二基站的***广播信息,获得小区选择测量和/或小区重选测量的频率信息;
生成单元405,用于根据所述小区选择测量和/或小区重选测量的频率信息,生成待请求的gap模式配置或者TDM模式配置;
发送单元402,用于向所述第一基站发送第三请求消息,所述第三请求消息携带所述待请求的gap模式配置或者TDM模式配置,所述第三请求消息用于请求所述第一基站配置gap模式或者TDM模式。
在一可选方式中,所述频率信息包括至少一个频点中每个频点对应的以下至少之一:SMTC配置信息、SMTC的定时信息。
在一可选方式中,所述装置还包括:
判决单元(图中未示出),接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决拒绝所述第二基站侧的业务接收;
发送单元402,用于向所述第二基站发送第三指示信息,所述第三指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
在一可选方式中,所述发送单元402,用于向所述第二基站对应的核心网发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
在一可选方式中,所述第三指示信息携带第一定时器配置,所述第一定时器配置用于确定第一定时器的时长为所述指定时长;其中,所述第二基站对应的核心网接收到携带所述第一定时器配置的所述第三指示信息后启动所述第一定时器,并在所述第一定时器超时的情况下释放本地缓存的业务数据。
在一可选方式中,所述发送单元402,用于向所述第二基站发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第二 通信卡到非激活态。
在一可选方式中,所述第三指示信息携带第二定时器配置,所述第二定时器配置用于确定第二定时器的时长为所述指定时长;其中,所述第二基站接收到携带所述第二定时器配置的所述第三指示信息后启动所述第二定时器,并在所述第二定时器超时的情况下释放本地缓存的业务数据。
在一可选方式中,所述装置还包括:
判决单元,用于接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;
发送单元402,用于向所述第一基站发送第四指示信息,所述第四指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
在一可选方式中,所述发送单元402,用于向所述第一基站对应的核心网发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
在一可选方式中,所述第四指示信息携带第三定时器配置,所述第三定时器配置用于确定第三定时器的时长为所述指定时长;其中,所述第一基站对应的核心网接收到携带所述第三定时器配置的所述第四指示信息后启动所述第三定时器,并在所述第三定时器超时的情况下释放本地缓存的业务数据。
在一可选方式中,所述发送单元402,用于向所述第一基站发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第一通信卡到非激活态。
在一可选方式中,所述第四指示信息携带第四定时器配置,所述第四定时器配置用于确定第四定时器的时长为所述指定时长;其中,所述第一基站接收到携带所述第四定时器配置的所述第四指示信息后启动所述第四定时器,并在所述第四定时器超时的情况下释放本地缓存的业务数据。
在一可选方式中,所述装置还包括:
判决单元,用于接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;
所述接收单元401,用于接收所述第一基站发送的业务数据和所述第二基站发送的业务数据。
在一可选方式中,所述装置还包括:
协商单元(图中未示出),用于与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置。
在一可选方式中,所述协商单元,用于:
向所述第一基站发送第四请求消息,所述第四请求消息携带所述终端设备请求的gap模式配置或者TDM模式配置;
接收所述第一基站发送的目标gap模式配置或者目标TDM模式配置,其中,所述目标gap模式配置为所述终端设备请求的gap模式配置或者所述第一基站修改后的gap模式配置,所述目标TDM模式配置为所述终端设备请求的TDM模式配置或者所述第一基站修改后的TDM模式配置;
将所述目标gap模式配置或者目标TDM模式配置发送给所述第二基站。
在一可选方式中,所述协商单元,用于:
根据以下至少之一确定gap模式配置或者TDM模式配置:所述第一基站侧的业务类型、所述第一基站侧的业务量、所述第一基站侧的服务质量QoS、所述第二基站侧的业务类型、所述第二基站侧的业务量、所述第二基站侧的QoS、所述第一基站侧和所述第二基站侧的定时偏差;
将所述定gap模式配置或者TDM模式配置发送给所述第一基站和/或所述第二基站。
在一可选方式中,所述gap模式配置或者TDM模式配置的协商,由所述终端设备触发;或者,
所述gap模式配置或者TDM模式配置的协商,由所述第一基站触发;或者,
所述gap模式配置或者TDM模式配置的协商,由所述第二基站触发。
在一可选方式中,在所述第二通信卡发生小区重选或者小区切换的情况下,由所述终端设备 触发所述gap模式配置或者TDM模式配置的协商;或者,
在所述第一通信卡发生小区切换的情况下,由所述第一基站或者所述终端设备备触发所述gap模式配置或者TDM模式配置的协商。
在一可选方式中,所述判决单元,还用于从所述寻呼消息中的寻呼原因中获取触发所述寻呼消息的业务信息;或者,在所述第二通信卡进入连接态后,从所述第二基站对应的核心网获取触发所述寻呼消息的业务信息。
在一可选方式中,所述gap模式配置包括以下至少一种信息:gap的时长、gap的周期、gap的偏置。
在一可选方式中,所述TDM模式配置包括以下至少一种信息:TDM模式、TDM模式的周期、TDM模式的偏置。
在一可选方式中,所述装置还包括:
发送单元402,用于在判决不需要gap模式配置或者TDM模式配置的情况下,向所述第一基站和/或所述第二基站发生第五请求消息,所述第五请求消息用于请求释放gap模式配置或者TDM模式配置;
释放单元(图中未示出),用于接收到确认释放消息后,释放所述gap模式配置或者所述TDM模式配置。
在一可选方式中,所述第一通信卡对应的基站和所述第二通信卡对应的基站为不同的基站;或者,
所述第一通信卡对应的基站和所述第二通信卡对应的基站为相同的基站。
本领域技术人员应当理解,本申请实施例的上述信号传输装置的相关描述可以参照本申请实施例的信号传输方法的相关描述进行理解。
图5是本申请实施例提供的一种通信设备500示意性结构图。该通信设备可以是终端设备,也可以是网络设备,图5所示的通信设备500包括处理器510,处理器510可以从存储器中调用并运行计算机程序,以实现本申请实施例中的方法。
可选地,如图5所示,通信设备500还可以包括存储器520。其中,处理器510可以从存储器520中调用并运行计算机程序,以实现本申请实施例中的方法。
其中,存储器520可以是独立于处理器510的一个单独的器件,也可以集成在处理器510中。
可选地,如图5所示,通信设备500还可以包括收发器530,处理器510可以控制该收发器530与其他设备进行通信,具体地,可以向其他设备发送信息或数据,或接收其他设备发送的信息或数据。
其中,收发器530可以包括发射机和接收机。收发器530还可以进一步包括天线,天线的数量可以为一个或多个。
可选地,该通信设备500具体可为本申请实施例的网络设备,并且该通信设备500可以实现本申请实施例的各个方法中由网络设备实现的相应流程,为了简洁,在此不再赘述。
可选地,该通信设备500具体可为本申请实施例的移动终端/终端设备,并且该通信设备500可以实现本申请实施例的各个方法中由移动终端/终端设备实现的相应流程,为了简洁,在此不再赘述。
图6是本申请实施例的芯片的示意性结构图。图6所示的芯片600包括处理器610,处理器610可以从存储器中调用并运行计算机程序,以实现本申请实施例中的方法。
可选地,如图6所示,芯片600还可以包括存储器620。其中,处理器610可以从存储器620中调用并运行计算机程序,以实现本申请实施例中的方法。
其中,存储器620可以是独立于处理器610的一个单独的器件,也可以集成在处理器610中。
可选地,该芯片600还可以包括输入接口630。其中,处理器610可以控制该输入接口630与其他设备或芯片进行通信,具体地,可以获取其他设备或芯片发送的信息或数据。
可选地,该芯片600还可以包括输出接口640。其中,处理器610可以控制该输出接口640与其他设备或芯片进行通信,具体地,可以向其他设备或芯片输出信息或数据。
可选地,该芯片可应用于本申请实施例中的网络设备,并且该芯片可以实现本申请实施例的各个方法中由网络设备实现的相应流程,为了简洁,在此不再赘述。
可选地,该芯片可应用于本申请实施例中的移动终端/终端设备,并且该芯片可以实现本申请实施例的各个方法中由移动终端/终端设备实现的相应流程,为了简洁,在此不再赘述。
应理解,本申请实施例提到的芯片还可以称为***级芯片,***芯片,芯片***或片上***芯片等。
图7是本申请实施例提供的一种通信***700的示意性框图。如图7所示,该通信***700包括终端设备710和网络设备720。
其中,该终端设备710可以用于实现上述方法中由终端设备实现的相应的功能,以及该网络设备720可以用于实现上述方法中由网络设备实现的相应的功能为了简洁,在此不再赘述。
应理解,本申请实施例的处理器可能是一种集成电路芯片,具有信号的处理能力。在实现过程中,上述方法实施例的各步骤可以通过处理器中的硬件的集成逻辑电路或者软件形式的指令完成。上述的处理器可以是通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现成可编程门阵列(Field Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件。可以实现或者执行本申请实施例中的公开的各方法、步骤及逻辑框图。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。结合本申请实施例所公开的方法的步骤可以直接体现为硬件译码处理器执行完成,或者用译码处理器中的硬件及软件模块组合执行完成。软件模块可以位于随机存储器,闪存、只读存储器,可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存储介质中。该存储介质位于存储器,处理器读取存储器中的信息,结合其硬件完成上述方法的步骤。
可以理解,本申请实施例中的存储器可以是易失性存储器或非易失性存储器,或可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。易失性存储器可以是随机存取存储器(Random Access Memory,RAM),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(Static RAM,SRAM)、动态随机存取存储器(Dynamic RAM,DRAM)、同步动态随机存取存储器(Synchronous DRAM,SDRAM)、双倍数据速率同步动态随机存取存储器(Double Data Rate SDRAM,DDR SDRAM)、增强型同步动态随机存取存储器(Enhanced SDRAM,ESDRAM)、同步连接动态随机存取存储器(Synchlink DRAM,SLDRAM)和直接内存总线随机存取存储器(Direct Rambus RAM,DR RAM)。应注意,本文描述的***和方法的存储器旨在包括但不限于这些和任意其它适合类型的存储器。
应理解,上述存储器为示例性但不是限制性说明,例如,本申请实施例中的存储器还可以是静态随机存取存储器(static RAM,SRAM)、动态随机存取存储器(dynamic RAM,DRAM)、同步动态随机存取存储器(synchronous DRAM,SDRAM)、双倍数据速率同步动态随机存取存储器(double data rate SDRAM,DDR SDRAM)、增强型同步动态随机存取存储器(enhanced SDRAM,ESDRAM)、同步连接动态随机存取存储器(synch link DRAM,SLDRAM)以及直接内存总线随机存取存储器(Direct Rambus RAM,DR RAM)等等。也就是说,本申请实施例中的存储器旨在包括但不限于这些和任意其它适合类型的存储器。
本申请实施例还提供了一种计算机可读存储介质,用于存储计算机程序。
可选的,该计算机可读存储介质可应用于本申请实施例中的网络设备,并且该计算机程序使得计算机执行本申请实施例的各个方法中由网络设备实现的相应流程,为了简洁,在此不再赘述。
可选地,该计算机可读存储介质可应用于本申请实施例中的移动终端/终端设备,并且该计算机程序使得计算机执行本申请实施例的各个方法中由移动终端/终端设备实现的相应流程,为了简洁,在此不再赘述。
本申请实施例还提供了一种计算机程序产品,包括计算机程序指令。
可选的,该计算机程序产品可应用于本申请实施例中的网络设备,并且该计算机程序指令使得计算机执行本申请实施例的各个方法中由网络设备实现的相应流程,为了简洁,在此不再赘述。
可选地,该计算机程序产品可应用于本申请实施例中的移动终端/终端设备,并且该计算机程序指令使得计算机执行本申请实施例的各个方法中由移动终端/终端设备实现的相应流程,为了简洁,在此不再赘述。
本申请实施例还提供了一种计算机程序。
可选的,该计算机程序可应用于本申请实施例中的网络设备,当该计算机程序在计算机上运行时,使得计算机执行本申请实施例的各个方法中由网络设备实现的相应流程,为了简洁,在此不再赘述。
可选地,该计算机程序可应用于本申请实施例中的移动终端/终端设备,当该计算机程序在计算机上运行时,使得计算机执行本申请实施例的各个方法中由移动终端/终端设备实现的相应流程,为了简洁,在此不再赘述。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的***、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的***、装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个***,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,)ROM、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应所述以权利要求的保护范围为准。

Claims (75)

  1. 一种信号传输方法,所述方法包括:
    终端设备接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态;
    所述终端设备在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。
  2. 根据权利要求1所述的方法,其中,所述第一配置信息包括自主间隔gap配置,其中,所述第一时域位置是指自主gap对应的时域位置;
    所述终端设备在所述第一时域位置上接收第二基站发送的信号,包括:
    所述终端设备在所述自主gap对应的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、公共预警***PWS信息。
  3. 根据权利要求2所述的方法,其中,所述终端设备接收第一基站发送的第一配置信息之前,所述方法还包括:
    所述终端设备向所述第一基站发送第一请求消息,所述第一请求消息用于请求所述第一基站配置自主gap。
  4. 根据权利要求3所述的方法,其中,所述第一请求消息携带第一指示信息,所述第一指示信息用于指示所述终端设备请求自主gap的目的是为了接收第二基站的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  5. 根据权利要求2至4中任一项所述的方法,其中,所述自主gap配置携带第二指示信息,所述第二指示信息用于指示自主gap的用途。
  6. 根据权利要求5所述的方法,其中,所述自主gap的用途包括以下至少之一:
    所述自主gap用于所述终端设备读取邻区***广播信息;
    所述自主gap用于所述终端设备接收第二基站的寻呼消息;
    所述自主gap用于所述终端设备接收第二基站的***广播信息;
    所述自主gap用于所述终端设备接收第二基站的PWS信息。
  7. 根据权利要求1所述的方法,其中,所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;
    所述终端设备在所述第一时域位置上接收第二基站发送的信号,包括:
    所述终端设备在所述gap的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  8. 根据权利要求1所述的方法,其中,所述第一配置信息包括TDM模式配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;
    所述终端设备在所述第一时域位置上接收第二基站发送的信号,包括:
    所述终端设备在所述第一基站不工作的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  9. 根据权利要求7或8所述的方法,其中,所述终端设备接收第一基站发送的第一配置信息之前,所述方法还包括:
    所述终端设备向所述第一基站发送第二请求消息,所述第二请求消息用于请求所述第一基站配置gap模式或者TDM模式。
  10. 根据权利要求9所述的方法,其中,所述第二请求消息携带寻呼时机PO的位置信息,其中,所述PO的位置信息基于所述第二基站的***广播信息确定。
  11. 根据权利要求1或7所述的方法,其中,所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;所述方法还包括:
    所述终端设备在所述gap的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
  12. 根据权利要求1或8所述的方法,其中,所述第一配置信息包括TDM模式配置,所述 TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;所述方法还包括:
    所述终端设备在所述第一基站不工作的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
  13. 根据权利要求11或12所述的方法,其中,所述终端设备接收第一基站发送的第一配置信息之前,所述方法还包括:
    所述终端设备根据所述第二基站的***广播信息,获得小区选择测量和/或小区重选测量的频率信息;
    所述终端设备根据所述小区选择测量和/或小区重选测量的频率信息,生成待请求的gap模式配置或者TDM模式配置;
    所述终端设备向所述第一基站发送第三请求消息,所述第三请求消息携带所述待请求的gap模式配置或者TDM模式配置,所述第三请求消息用于请求所述第一基站配置gap模式或者TDM模式。
  14. 根据权利要求13所述的方法,其中,所述频率信息包括至少一个频点中每个频点对应的以下至少之一:SMTC配置信息、SMTC的定时信息。
  15. 根据权利要求2至10中任一项所述的方法,其中,所述方法还包括:
    所述终端设备接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决拒绝所述第二基站侧的业务接收;
    所述终端设备向所述第二基站发送第三指示信息,所述第三指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
  16. 根据权利要求15所述的方法,其中,所述终端设备向所述第二基站发送第三指示信息,包括:
    所述终端设备向所述第二基站对应的核心网发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
  17. 根据权利要求16所述的方法,其中,所述第三指示信息携带第一定时器配置,所述第一定时器配置用于确定第一定时器的时长为所述指定时长;其中,所述第二基站对应的核心网接收到携带所述第一定时器配置的所述第三指示信息后启动所述第一定时器,并在所述第一定时器超时的情况下释放本地缓存的业务数据。
  18. 根据权利要求15所述的方法,其中,所述终端设备向所述第二基站发送第三指示信息,包括:
    所述终端设备向所述第二基站发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第二通信卡到非激活态。
  19. 根据权利要求18所述的方法,其中,所述第三指示信息携带第二定时器配置,所述第二定时器配置用于确定第二定时器的时长为所述指定时长;其中,所述第二基站接收到携带所述第二定时器配置的所述第三指示信息后启动所述第二定时器,并在所述第二定时器超时的情况下释放本地缓存的业务数据。
  20. 根据权利要求2至10中任一项所述的方法,其中,所述方法还包括:
    所述终端设备接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;
    所述终端设备向所述第一基站发送第四指示信息,所述第四指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
  21. 根据权利要求20所述的方法,其中,所述终端设备向所述第一基站发送第四指示信息,包括:
    所述终端设备向所述第一基站对应的核心网发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
  22. 根据权利要求21所述的方法,其中,所述第四指示信息携带第三定时器配置,所述第三定时器配置用于确定第三定时器的时长为所述指定时长;其中,所述第一基站对应的核心网接收到携带所述第三定时器配置的所述第四指示信息后启动所述第三定时器,并在所述第三定时器 超时的情况下释放本地缓存的业务数据。
  23. 根据权利要求20所述的方法,其中,所述终端设备向所述第二基站发送第三指示信息,包括:
    所述终端设备向所述第一基站发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第一通信卡到非激活态。
  24. 根据权利要求23所述的方法,其中,所述第四指示信息携带第四定时器配置,所述第四定时器配置用于确定第四定时器的时长为所述指定时长;其中,所述第一基站接收到携带所述第四定时器配置的所述第四指示信息后启动所述第四定时器,并在所述第四定时器超时的情况下释放本地缓存的业务数据。
  25. 根据权利要求2至10中任一项所述的方法,其中,所述方法还包括:
    所述终端设备接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;
    所述终端设备接收所述第一基站发送的业务数据和所述第二基站发送的业务数据。
  26. 根据权利要求25所述的方法,其中,所述方法还包括:
    所述终端设备与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置。
  27. 根据权利要求26所述的方法,其中,所述终端设备与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置,包括:
    所述终端设备向所述第一基站发送第四请求消息,所述第四请求消息携带所述终端设备请求的gap模式配置或者TDM模式配置;
    所述终端设备接收所述第一基站发送的目标gap模式配置或者目标TDM模式配置,其中,所述目标gap模式配置为所述终端设备请求的gap模式配置或者所述第一基站修改后的gap模式配置,所述目标TDM模式配置为所述终端设备请求的TDM模式配置或者所述第一基站修改后的TDM模式配置;
    所述终端设备将所述目标gap模式配置或者目标TDM模式配置发送给所述第二基站。
  28. 根据权利要求26所述的方法,其中,所述终端设备与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置,包括:
    所述终端设备根据以下至少之一确定gap模式配置或者TDM模式配置:所述第一基站侧的业务类型、所述第一基站侧的业务量、所述第一基站侧的服务质量QoS、所述第二基站侧的业务类型、所述第二基站侧的业务量、所述第二基站侧的QoS、所述第一基站侧和所述第二基站侧的定时偏差;
    所述终端设备将所述定gap模式配置或者TDM模式配置发送给所述第一基站和/或所述第二基站。
  29. 根据权利要求26至28中任一项所述的方法,其中,
    所述gap模式配置或者TDM模式配置的协商,由所述终端设备触发;或者,
    所述gap模式配置或者TDM模式配置的协商,由所述第一基站触发;或者,
    所述gap模式配置或者TDM模式配置的协商,由所述第二基站触发。
  30. 根据权利要求29所述的方法,其中,
    在所述第二通信卡发生小区重选或者小区切换的情况下,由所述终端设备触发所述gap模式配置或者TDM模式配置的协商;或者,
    在所述第一通信卡发生小区切换的情况下,由所述第一基站或者所述终端设备备触发所述gap模式配置或者TDM模式配置的协商。
  31. 根据权利要求15至30中任一项所述的方法,其中,所述方法还包括:
    所述终端设备从所述寻呼消息中的寻呼原因中获取触发所述寻呼消息的业务信息;或者,
    所述终端设备在所述第二通信卡进入连接态后,从所述第二基站对应的核心网获取触发所述寻呼消息的业务信息。
  32. 根据权利要求7至31中任一项所述的方法,其中,所述gap模式配置包括以下至少一种信息:gap的时长、gap的周期、gap的偏置。
  33. 根据权利要求7至32中任一项所述的方法,其中,所述TDM模式配置包括以下至少一种信息:TDM模式、TDM模式的周期、TDM模式的偏置。
  34. 根据权利要求7至33中任一项所述的方法,其中,所述方法还包括:
    所述终端设备判决不需要gap模式配置或者TDM模式配置的情况下,向所述第一基站和/或所述第二基站发生第五请求消息,所述第五请求消息用于请求释放gap模式配置或者TDM模式配置;
    所述终端设备接收到确认释放消息后,释放所述gap模式配置或者所述TDM模式配置。
  35. 根据权利要求1至34中任一项所述的方法,其中,
    所述第一通信卡对应的基站和所述第二通信卡对应的基站为不同的基站;或者,
    所述第一通信卡对应的基站和所述第二通信卡对应的基站为相同的基站。
  36. 一种信号传输装置,应用于终端设备,所述装置包括:
    接收单元,用于接收第一基站发送的第一配置信息,所述第一配置信息用于确定第一时域位置;其中,所述第一基站为所述终端设备中的第一通信卡对应的基站,所述第一通信卡处于连接态;在所述第一时域位置上接收第二基站发送的信号;其中,所述第二基站为所述终端设备中的第二通信卡对应的基站。
  37. 根据权利要求36所述的装置,其中,所述第一配置信息包括自主gap配置,其中,所述第一时域位置是指自主gap对应的时域位置;
    所述接收单元,用于在所述自主gap对应的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  38. 根据权利要求37所述的装置,其中,所述装置还包括:
    发送单元,用于向所述第一基站发送第一请求消息,所述第一请求消息用于请求所述第一基站配置自主gap。
  39. 根据权利要求38所述的装置,其中,所述第一请求消息携带第一指示信息,所述第一指示信息用于指示所述终端设备请求自主gap的目的是为了接收第二基站的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  40. 根据权利要求37至39中任一项所述的装置,其中,所述自主gap配置携带第二指示信息,所述第二指示信息用于指示自主gap的用途。
  41. 根据权利要求40所述的装置,其中,所述自主gap的用途包括以下至少之一:
    所述自主gap用于所述终端设备读取邻区***广播信息;
    所述自主gap用于所述终端设备接收第二基站的寻呼消息;
    所述自主gap用于所述终端设备接收第二基站的***广播信息;
    所述自主gap用于所述终端设备接收第二基站的PWS信息。
  42. 根据权利要求36所述的装置,其中,所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;
    所述接收单元,用于在所述gap的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  43. 根据权利要求36所述的装置,其中,所述第一配置信息包括TDM模式配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;
    所述接收单元,用于在所述第一基站不工作的时域位置上接收第二基站发送的以下至少之一:寻呼消息、更新的***广播信息、PWS信息。
  44. 根据权利要求42或43所述的装置,其中,所述装置还包括:
    发送单元,用于向所述第一基站发送第二请求消息,所述第二请求消息用于请求所述第一基站配置gap模式或者TDM模式。
  45. 根据权利要求44所述的装置,其中,所述第二请求消息携带PO的位置信息,其中,所述PO的位置信息基于所述第二基站的***广播信息确定。
  46. 根据权利要求36或42所述的装置,其中,所述第一配置信息包括gap模式配置,所述gap模式配置用于确定gap的时域位置,其中,所述第一时域位置是指所述gap的时域位置;
    所述装置还包括:测量单元,用于在所述gap的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
  47. 根据权利要求36或43所述的装置,其中,所述第一配置信息包括TDM模式配置,所述TDM模式配置用于确定所述第一基站不工作的时域位置,其中,所述第一时域位置是指所述第一基站不工作的时域位置;
    所述装置还包括:测量单元,用于在所述第一基站不工作的时域位置上执行所述第二通信卡对应的小区选择测量和/或小区重选测量。
  48. 根据权利要求46或47所述的装置,其中,所述装置还包括:
    获取单元,用于根据所述第二基站的***广播信息,获得小区选择测量和/或小区重选测量的频率信息;
    生成单元,用于根据所述小区选择测量和/或小区重选测量的频率信息,生成待请求的gap模式配置或者TDM模式配置;
    发送单元,用于向所述第一基站发送第三请求消息,所述第三请求消息携带所述待请求的gap模式配置或者TDM模式配置,所述第三请求消息用于请求所述第一基站配置gap模式或者TDM模式。
  49. 根据权利要求48所述的装置,其中,所述频率信息包括至少一个频点中每个频点对应的以下至少之一:SMTC配置信息、SMTC的定时信息。
  50. 根据权利要求37至45中任一项所述的装置,其中,所述装置还包括:
    判决单元,接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决拒绝所述第二基站侧的业务接收;
    发送单元,用于向所述第二基站发送第三指示信息,所述第三指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
  51. 根据权利要求50所述的装置,其中,所述发送单元,用于向所述第二基站对应的核心网发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
  52. 根据权利要求51所述的装置,其中,所述第三指示信息携带第一定时器配置,所述第一定时器配置用于确定第一定时器的时长为所述指定时长;其中,所述第二基站对应的核心网接收到携带所述第一定时器配置的所述第三指示信息后启动所述第一定时器,并在所述第一定时器超时的情况下释放本地缓存的业务数据。
  53. 根据权利要求50所述的装置,其中,所述发送单元,用于向所述第二基站发送第三指示信息,其中,所述第三指示信息指示暂时拒绝业务接收的情况下,所述第三指示信还指示所述第二基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第二通信卡到非激活态。
  54. 根据权利要求53所述的装置,其中,所述第三指示信息携带第二定时器配置,所述第二定时器配置用于确定第二定时器的时长为所述指定时长;其中,所述第二基站接收到携带所述第二定时器配置的所述第三指示信息后启动所述第二定时器,并在所述第二定时器超时的情况下释放本地缓存的业务数据。
  55. 根据权利要求37至45中任一项所述的装置,其中,所述装置还包括:
    判决单元,用于接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;
    发送单元,用于向所述第一基站发送第四指示信息,所述第四指示信息用于指示拒绝业务接收或者指示暂时拒绝业务接收。
  56. 根据权利要求55所述的装置,其中,所述发送单元,用于向所述第一基站对应的核心网发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站对应的核心网在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据。
  57. 根据权利要求56所述的装置,其中,所述第四指示信息携带第三定时器配置,所述第三定时器配置用于确定第三定时器的时长为所述指定时长;其中,所述第一基站对应的核心网接收到携带所述第三定时器配置的所述第四指示信息后启动所述第三定时器,并在所述第三定时器超时的情况下释放本地缓存的业务数据。
  58. 根据权利要求55所述的装置,其中,所述发送单元,用于向所述第一基站发送第四指示信息,其中,所述第四指示信息指示暂时拒绝业务接收的情况下,所述第四指示信还指示所述第一基站在本地缓存业务数据,若缓存业务数据的时长超过指定时长,则释放本地缓存的业务数据和/或释放所述第一通信卡到非激活态。
  59. 根据权利要求58所述的装置,其中,所述第四指示信息携带第四定时器配置,所述第 四定时器配置用于确定第四定时器的时长为所述指定时长;其中,所述第一基站接收到携带所述第四定时器配置的所述第四指示信息后启动所述第四定时器,并在所述第四定时器超时的情况下释放本地缓存的业务数据。
  60. 根据权利要求37至45中任一项所述的装置,其中,所述装置还包括:
    判决单元,用于接收到所述第二基站发送的寻呼消息后,基于触发所述寻呼消息的业务信息判决接受所述第二基站侧的业务接收;
    所述接收单元,用于接收所述第一基站发送的业务数据和所述第二基站发送的业务数据。
  61. 根据权利要求60所述的装置,其中,所述装置还包括:
    协商单元,用于与所述第一基站和/或所述第二基站重新协商gap模式配置或者TDM模式配置。
  62. 根据权利要求61所述的装置,其中,所述协商单元,用于:
    向所述第一基站发送第四请求消息,所述第四请求消息携带所述终端设备请求的gap模式配置或者TDM模式配置;
    接收所述第一基站发送的目标gap模式配置或者目标TDM模式配置,其中,所述目标gap模式配置为所述终端设备请求的gap模式配置或者所述第一基站修改后的gap模式配置,所述目标TDM模式配置为所述终端设备请求的TDM模式配置或者所述第一基站修改后的TDM模式配置;
    将所述目标gap模式配置或者目标TDM模式配置发送给所述第二基站。
  63. 根据权利要求61所述的装置,其中,所述协商单元,用于:
    根据以下至少之一确定gap模式配置或者TDM模式配置:所述第一基站侧的业务类型、所述第一基站侧的业务量、所述第一基站侧的服务质量QoS、所述第二基站侧的业务类型、所述第二基站侧的业务量、所述第二基站侧的QoS、所述第一基站侧和所述第二基站侧的定时偏差;
    将所述定gap模式配置或者TDM模式配置发送给所述第一基站和/或所述第二基站。
  64. 根据权利要求61至63中任一项所述的装置,其中,
    所述gap模式配置或者TDM模式配置的协商,由所述终端设备触发;或者,
    所述gap模式配置或者TDM模式配置的协商,由所述第一基站触发;或者,
    所述gap模式配置或者TDM模式配置的协商,由所述第二基站触发。
  65. 根据权利要求64所述的装置,其中,
    在所述第二通信卡发生小区重选或者小区切换的情况下,由所述终端设备触发所述gap模式配置或者TDM模式配置的协商;或者,
    在所述第一通信卡发生小区切换的情况下,由所述第一基站或者所述终端设备备触发所述gap模式配置或者TDM模式配置的协商。
  66. 根据权利要求50至65中任一项所述的装置,其中,所述判决单元,还用于从所述寻呼消息中的寻呼原因中获取触发所述寻呼消息的业务信息;或者,在所述第二通信卡进入连接态后,从所述第二基站对应的核心网获取触发所述寻呼消息的业务信息。
  67. 根据权利要求42至66中任一项所述的装置,其中,所述gap模式配置包括以下至少一种信息:gap的时长、gap的周期、gap的偏置。
  68. 根据权利要求42至67中任一项所述的装置,其中,所述TDM模式配置包括以下至少一种信息:TDM模式、TDM模式的周期、TDM模式的偏置。
  69. 根据权利要求42至68中任一项所述的装置,其中,所述装置还包括:
    发送单元,用于在判决不需要gap模式配置或者TDM模式配置的情况下,向所述第一基站和/或所述第二基站发生第五请求消息,所述第五请求消息用于请求释放gap模式配置或者TDM模式配置;
    释放单元,用于接收到确认释放消息后,释放所述gap模式配置或者所述TDM模式配置。
  70. 根据权利要求36至69中任一项所述的装置,其中,
    所述第一通信卡对应的基站和所述第二通信卡对应的基站为不同的基站;或者,
    所述第一通信卡对应的基站和所述第二通信卡对应的基站为相同的基站。
  71. 一种终端设备,包括:处理器和存储器,该存储器用于存储计算机程序,所述处理器用于调用并运行所述存储器中存储的计算机程序,执行如权利要求1至35中任一项所述的方法。
  72. 一种芯片,包括:处理器,用于从存储器中调用并运行计算机程序,使得安装有所述芯片的设备执行如权利要求1至35中任一项所述的方法。
  73. 一种计算机可读存储介质,用于存储计算机程序,所述计算机程序使得计算机执行如权利要求1至35中任一项所述的方法。
  74. 一种计算机程序产品,包括计算机程序指令,该计算机程序指令使得计算机执行如权利要求1至35中任一项所述的方法。
  75. 一种计算机程序,所述计算机程序使得计算机执行如权利要求1至35中任一项所述的方法。
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