WO2019223634A1 - 信息处理方法、装置、终端及通信设备 - Google Patents

信息处理方法、装置、终端及通信设备 Download PDF

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Publication number
WO2019223634A1
WO2019223634A1 PCT/CN2019/087547 CN2019087547W WO2019223634A1 WO 2019223634 A1 WO2019223634 A1 WO 2019223634A1 CN 2019087547 W CN2019087547 W CN 2019087547W WO 2019223634 A1 WO2019223634 A1 WO 2019223634A1
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Prior art keywords
event
report
network
side device
information
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PCT/CN2019/087547
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English (en)
French (fr)
Inventor
杨宇
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维沃移动通信有限公司
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Priority to EP19807095.5A priority Critical patent/EP3817442A4/en
Publication of WO2019223634A1 publication Critical patent/WO2019223634A1/zh
Priority to US17/102,282 priority patent/US11552686B2/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0026Transmission of channel quality indication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0686Hybrid systems, i.e. switching and simultaneous transmission
    • H04B7/0695Hybrid systems, i.e. switching and simultaneous transmission using beam selection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0613Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
    • H04B7/0615Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
    • H04B7/0617Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal for beam forming
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0613Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
    • H04B7/0615Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
    • H04B7/0619Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
    • H04B7/0621Feedback content
    • H04B7/0626Channel coefficients, e.g. channel state information [CSI]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0613Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
    • H04B7/0615Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
    • H04B7/0619Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
    • H04B7/0621Feedback content
    • H04B7/063Parameters other than those covered in groups H04B7/0623 - H04B7/0634, e.g. channel matrix rank or transmit mode selection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0613Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
    • H04B7/0615Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
    • H04B7/0619Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
    • H04B7/0636Feedback format
    • H04B7/0645Variable feedback
    • H04B7/0647Variable feedback rate
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0027Scheduling of signalling, e.g. occurrence thereof
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0028Formatting
    • H04L1/0031Multiple signaling transmission
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • 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
    • H04W72/046Wireless resource allocation based on the type of the allocated resource the resource being in the space domain, e.g. beams
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • 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
    • H04W80/00Wireless network protocols or protocol adaptations to wireless operation
    • H04W80/02Data link layer protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information

Definitions

  • Embodiments of the present disclosure relate to the field of communication technologies, and in particular, to an information processing method, device, terminal, and communication device.
  • LTE Long-Term Evolution
  • LTE-Advanced LTE-Advanced
  • OFDM Orthogonal Frequency Division Multiplexing
  • the MIMO technology utilizes the spatial degrees of freedom that can be obtained by a multi-antenna system to improve the peak rate and system spectrum utilization. It is foreseeable that in the future 5G mobile communication system, MIMO technology with larger scale and more antenna ports will be introduced.
  • Massive MIMO technology uses a large-scale antenna array, which can greatly improve the efficiency of system band utilization and support a larger number of access users. Therefore, major research organizations regard Massive MIMO technology as one of the most promising physical layer technologies in the next generation mobile communication system.
  • MU-MIMO Multi-User Multiple-Input Multiple-Output
  • digital-analog hybrid beamforming technology came into being, that is, based on traditional digital domain beamforming, near the front end of the antenna system, a first-level beamforming is added shape.
  • Analog shaping can make the transmitted signal and channel more roughly matched in a simpler way.
  • the dimensions of the equivalent channels formed after the analog forming are smaller than the actual antennas, so the required AD / DA conversion devices, the number of digital channels, and the corresponding baseband processing complexity can be greatly reduced.
  • the residual interference in the analog forming part can be processed again in the digital domain to ensure the quality of MU-MIMO transmission.
  • Analog beamforming is transmitted in full bandwidth, and each polarization direction array element on the panel of each high-frequency antenna array can only transmit analog beams in a time division multiplexed manner.
  • the shaping weight of the analog beam is achieved by adjusting the parameters of the RF front-end phase shifter and other equipment.
  • the training of the analog beamforming vector is usually performed in a polling manner, that is, the array elements in each polarization direction of each antenna panel sequentially send training signals (that is, candidate forming vectors) at an agreed time in a time division multiplexing manner. After the measurement, the terminal feeds back the beam report for the network side to use the shaping vector used by the training signal to implement the analog beam transmission when transmitting the service next time.
  • the network-side device configures the setting information of the beam report (beam reporting) for the terminal through high-level signaling, that is, the reporting setting, which includes the content information of the beam report, the time-domain related messages of the beam report (periodic, aperiodic, semi-persistent), Reported frequency domain granularity information.
  • the content information in the beam report may include: at least one optimal transmission beam identification information selected by the terminal, a physical layer measurement result of the beam selected by the terminal, grouping information of the beam selected by the terminal, and the like.
  • the reporting of a beam report is taken as an example.
  • the terminal For periodic and semi-continuous beam reports, once the network-side device is configured with relevant information about the beam report, the terminal must periodically report the beam report or periodically after receiving the activation command Beam report; for aperiodic beam report, the terminal also needs to report one or more beam reports according to the trigger of the network-side device.
  • the terminal reports the beam report again. It may cause waste of communication resources. For example, when there is no change in the state of the terminal (such as stationary) or a small change (such as small movement speed), it may happen that the beam report obtained from the current measurement does not change compared to the beam report that has been reported. At this time, the terminal reporting the beam report again may cause a waste of communication resources. Similarly, the same problem exists in the reporting of Channel State Information (CSI) reports.
  • CSI Channel State Information
  • Embodiments of the present disclosure provide an information processing method, device, terminal, and communication device to solve when a beam report obtained by a terminal currently measured does not change or is relatively small compared to a beam report that has been reported, or When there is no change or small change in the CSI report compared with the already reported CSI report, the terminal reports a problem of wasting communication resources caused by the beam report or the CSI report.
  • an embodiment of the present disclosure provides an information processing method applied to a terminal, including:
  • an embodiment of the present disclosure further provides an information processing method, which is applied to a network-side device and includes:
  • an embodiment of the present disclosure further provides a terminal, including:
  • a reporting module configured to determine whether to report an event-based beam report and / or an event-based channel state information CSI report to a network-side device based on detection of a reporting trigger event.
  • an embodiment of the present disclosure further provides an information processing apparatus, including:
  • the receiving module is configured to receive an event-based beam report and / or an event-based CSI report reported by the terminal.
  • an embodiment of the present disclosure further provides a communication device, including: a memory, a processor, and a program stored on the memory and executable on the processor.
  • the program is executed by the processor, the program is implemented as the first
  • the steps in the information processing method according to the aspect or the steps in the information processing method according to the second aspect are implemented.
  • an embodiment of the present disclosure further provides a computer-readable storage medium.
  • the computer-readable storage medium stores a program, and when the program is executed by a processor, the information processing method according to the first aspect is implemented. Steps or steps in an information processing method according to the second aspect.
  • the terminal determines whether to report an event-based beam report and / or an event-based CSI report to the network-side device based on detection of a reporting trigger event, thereby saving communication resources.
  • FIG. 1 is one of the flowcharts of the information processing method provided by the embodiment of the present disclosure
  • FIG. 2 is a second flowchart of an information processing method provided by an embodiment of the present disclosure
  • FIG. 3 is one of the structural diagrams of a terminal provided by an embodiment of the present disclosure.
  • FIG. 4 is a second structural diagram of a terminal provided by an embodiment of the present disclosure.
  • FIG. 5 is one of the structural diagrams of the information processing apparatus provided by the embodiment of the present disclosure.
  • the operating frequency band supported by the system is increased to more than 6GHz, up to about 100GHz.
  • the high frequency band has relatively abundant idle frequency resources, which can provide greater throughput for data transmission.
  • 3GPP has completed the modeling of high-frequency channels.
  • the wavelength of high-frequency signals is short.
  • more antenna elements can be arranged on panels of the same size.
  • the beamforming technology is used to form more directivity. Beams with narrower lobes. Therefore, the combination of large-scale antennas and high-frequency communication is also one of the future trends.
  • analog beamforming is transmitted in full bandwidth, and each polarization direction array element on the panel of each high-frequency antenna array can only send simulations in a time-division multiplexed manner. Beam.
  • the shaping weight of the analog beam is achieved by adjusting the parameters of the RF front-end phase shifter and other equipment.
  • the training of analog beamforming vectors is usually carried out in a polling manner, that is, the array elements of each polarization direction of each antenna panel sequentially send training signals at an agreed time in a time division multiplexing manner ( (Ie, the candidate forming vector).
  • the terminal reports a beam report for the network side to use the forming vector used by the training signal to implement the analog beam transmission in the next transmission service.
  • the content of the beam report usually includes the optimal identification of several transmission beams and the measured received power of each transmission beam.
  • the network-side device configures the setting information of the beam report (beam reporting) for the terminal through high-level signaling, that is, the reporting setting, which includes the content information of the beam report, the time-domain related messages of the beam report (periodic, aperiodic, semi-persistent), the beam Reported frequency domain granularity information.
  • the content information in the beam report may include: at least one optimal transmission beam identification information selected by the terminal, a physical layer measurement result of the beam selected by the terminal, grouping information of the beam selected by the terminal, and the like. details as follows:
  • Channel state information (CSI) information may include: Channel Quality Indicator (CQI), Precoding Matrix Indicator (PMI), Channel State Information Reference Signal Resource Indicator (Channel, State Information, Reference, Signal) Resource Indicator (CSI-RS, Resource Indicator, or CRI), Layer Indication (LI), Rank Indication (RI), Layer 1-Reference Signal Received Power (L1-RSRP).
  • CQI Channel Quality Indicator
  • PMI Precoding Matrix Indicator
  • PMI Channel State Information Reference Signal Resource Indicator
  • Channel Channel State Information Reference Signal Resource Indicator
  • CSI-RS Resource Indicator
  • CRI Layer Indication
  • RI Layer 1-Reference Signal Received Power
  • L1-RSRP Layer 1-Reference Signal Received Power
  • Each setting information (high-level parameter CSI-ReportConfig) is associated with a downlink bandwidth part (BWP), and contains a series of reporting parameters, such as CSI Type (II) or codebook configuration (including code This subset restriction (codebook, restriction), time-domain behavior, frequency domain granularity of CQI and PMI, measurement restriction configurations (LI, L1-RSRP parameters, CSI-RS resource indicator (CSI-RS resource) Indicator (CRI), SSB Resource Indicator (SSBRI), etc.
  • CSI Type II
  • codebook configuration including code This subset restriction (codebook, restriction), time-domain behavior, frequency domain granularity of CQI and PMI, measurement restriction configurations (LI, L1-RSRP parameters, CSI-RS resource indicator (CSI-RS resource) Indicator (CRI), SSB Resource Indicator (SSBRI), etc.
  • the time domain behavior in CSI-ReportConfig is indicated by radio resource control (Radio Resource Control (RRC) signaling reportConfigType), and this parameter can be set to periodic, semi-persistent, and aperiodic.
  • RRC Radio Resource Control
  • the configured periodic value and slot offset are the numerical configuration (numerology) of the currently active uplink bandwidth part (UL BWP).
  • the high-level parameter ReportQuantity indicates the CSI-related or L1-RSRP-related amount used for reporting.
  • the parameter ReportFreqConfiguration indicates the frequency domain granularity of the report, including the CSI report bandwidth (CSI reporting bandwidth) and whether the PMI / CQI report (reporting) is wideband or sub-band.
  • the parameter CSI-ReportConfig may also include timeRestrictionForChannelMeasurements (configuration of time domain restriction for enabling channel measurement) and timeRestrictionForInterferenceMeasurements (configuration of time domain restriction for enabling interference measurement).
  • CSI-ReportConfig may also include CodebookConfig, which includes Type-I or Type-II configuration parameters of CSI (including codebook restriction) and configuration of group-based reporting.
  • the ReportQuantity configuration needs to be set to "CRI / RSRP" or "SSBRI / RSRP", which means that the terminal obtains the L1-RSRP of each beam by measuring the CSI-RS or SSB resource of the network-side device configuration and reports it to the network Side equipment.
  • the terminal For the periodic beam report, using the period, slot offset, and symbols in the time slot of the RRC configuration report, the terminal feedbacks the beam report according to the RRC configuration information, and short (long) / long (long) physical uplink control channel (Physical Uplink (Control Channel, PUCCH).
  • RRC configuration information For the periodic beam report, using the period, slot offset, and symbols in the time slot of the RRC configuration report, the terminal feedbacks the beam report according to the RRC configuration information, and short (long) / long (long) physical uplink control channel (Physical Uplink (Control Channel, PUCCH).
  • PUCCH Physical Uplink
  • RRC For semi-continuous beam reporting, use RRC to configure the reporting period, slot offset, and symbols in the slot.
  • For a semi-persistent report sent using a short / long PUCCH it is activated / deactivated by a Media Access Control (MAC) Control Element (CE).
  • MAC Media Access Control
  • CE Physical uplink shared channel
  • DCI downlink control information
  • aperiodic beam reporting For aperiodic beam reporting, use RRC to configure the periodicity, time slot offset, and symbols in the time slot, and then trigger the aperiodic beam report through DCI.
  • the terminal When triggering, the terminal may be triggered to report multiple component carrier (CC) reports at once, or multiple types of reports (beam reports and CSI reports).
  • CC component carrier
  • Aperiodic beam reports are transmitted on the PUSCH.
  • the terminal For periodic and semi-continuous beam reports, once the network-side device is configured with the relevant information of the report, the terminal must report periodically (for semi-persistent beam reports, it is reported periodically after MAC CE activation); for aperiodic The beam report may also report multiple reports according to the trigger of the network-side device.
  • the beam measurement result of the terminal does not change or changes little, that is, when the beam report obtained by the current measurement does not change or changes less than the reported beam report, for example, when the state of the terminal does not change (such as When stationary) or the change is small (for example, the moving speed is small), it may happen that the beam measurement result of the terminal does not change, and then reporting the beam report at this time will cause waste of resources and is not conducive to terminal power saving.
  • an embodiment of the present disclosure proposes an information processing method.
  • the terminal determines whether to report to a network-side device based on detection of a reporting trigger event, thereby reducing overhead and saving communication resources.
  • the reported report may refer to an event-based beam report below, may also refer to an event-based CSI report, and may also refer to an event-based beam report and an event-based CSI report.
  • FIG. 1 is a flowchart of an information processing method provided by an embodiment of the present disclosure. As shown in Figure 1, the method includes the following steps:
  • Step 101 Determine whether to report an event-based beam report and / or an event-based CSI report to a network-side device based on detection of a report trigger event.
  • the reporting trigger event may be preset or configured by a network-side device or determined by the terminal itself.
  • an event-based beam report or an event-based CSI report can be understood as a beam report or a CSI report that is reported when a reporting trigger event is detected, that is, the beam report or the CSI report here is related to the triggering of a report. Detection of events is associated.
  • Reporting trigger events may include multiple types.
  • the terminal may choose to report event-based beam reports and / or event-based CSI reports, or stop reporting event-based beam reports and / or event-based CSI report.
  • the terminal may report the event-based beam report and / or the event-based CSI report to the network-side device when the report trigger event occurs, or stop reporting to the network-side device.
  • the network-side device reports the event-based beam report and / or the event-based CSI report.
  • the terminal reports when the optimal beam identifier (CRI or SSBRI) to be reported changes, the terminal reports; otherwise, the terminal stops reporting.
  • the terminal reports when the L1-RSRP change corresponding to the beam identifier to be reported reaches a certain preset threshold, the terminal reports; otherwise, the terminal stops reporting.
  • the above method can be applied to a terminal, such as: a mobile phone, a tablet computer, a laptop computer, a personal digital assistant (PDA), and a mobile Internet device (Mobile Internet Device (MID) or Wearable Device (Wearable Device).
  • a terminal such as: a mobile phone, a tablet computer, a laptop computer, a personal digital assistant (PDA), and a mobile Internet device (Mobile Internet Device (MID) or Wearable Device (Wearable Device).
  • a terminal such as: a mobile phone, a tablet computer, a laptop computer, a personal digital assistant (PDA), and a mobile Internet device (Mobile Internet Device (MID) or Wearable Device (Wearable Device).
  • MID Mobile Internet Device
  • Wiarable Device Wireless Device
  • the terminal determines whether to report an event-based beam report and / or an event-based CSI report to the network-side device based on the detection of the reporting trigger event, thereby saving communication resources.
  • the network-side device can also notify the terminal whether to enable event-based reporting. That is, the terminal determines whether to report an event-based beam report and / or an event-based CSI report in conjunction with the notification from the network-side device and whether a reporting trigger event has occurred.
  • the method may further include:
  • the terminal may receive the first information of the network-side device in any of the following ways:
  • the above signaling may be 1 bit.
  • 1 means ON to enable event-based reporting; 0 means OFF to disable event-based reporting.
  • step 101 is specifically: when the first information is used to indicate that event-based reporting is enabled, and when the report trigger event occurs, reporting the event-based report to the network-side device.
  • the terminal reports when the first information indicates that event-based reporting is enabled, when the optimal beam identifier (CRI or SSBRI) to be reported changes, the terminal reports; otherwise, the terminal stops reporting.
  • the terminal reports when the first information indicates that event-based reporting is enabled, when the terminal reports when the L1-RSRP change corresponding to the beam identifier to be reported reaches a preset threshold; otherwise, the terminal stops reporting.
  • the terminal When the first information indicates that the event-based report is turned off, the terminal reports according to the information configured by the network-side device.
  • the terminal may send a report to the network-side device according to the uplink high-level signalling configuration of the network or the uplink physical channel resources or uplink MAC commands (commands agreed by the MAC layer protocol).
  • the terminal may report in any of the following ways:
  • the terminal may report an event-based beam report to the network-side device through any of the methods described above, or report the event-based CSI report to the network-side device through any of the methods described above, or The method reports an event-based beam report and an event-based CSI report to the network-side device.
  • the event-based beam report includes an event-based periodic beam report or an event-based semi-continuous beam report or an event-based aperiodic beam report;
  • the event-based CSI report includes an event-based periodic CSI report or an event-based Semi-persistent CSI report or event-based aperiodic CSI report.
  • the PUCCH may be a periodic PUCCH resource or a semi-persistent PUCCH resource.
  • the PUCCH and the PUSCH are sent with priority. High uplink channel. For example, if the priority of the PUCCH for reporting the event-based beam report is higher than the priority of the PUSCH, the terminal preferentially sends the PUCCH for reporting the event-based beam report, and the PUSCH is postponed until the next transmission time.
  • multiple reports can also be associated with the same PUCCH, that is, multiple reports are sent through the PUCCH.
  • the event-based beam report is configured by the network-side device through RRC or the network-side device passes Multiple event-based beam reports triggered by DCI; and in the case of using the PUCCH to report the event-based CSI report to the network-side device, the event-based CSI report is configured by the network-side device through RRC Or multiple event-based CSI reports triggered by the network-side device through DCI; and when the PUCCH is used to report the event-based beam report and the event-based CSI report to the network-side device,
  • the event-based beam report and the event-based CSI report are one or more event-based beam reports and one or more configured by the network-side device through RRC or triggered by the network-side device through DCI. Event-based CSI report.
  • the multiple reports may be multiple event-based beam reports configured by the network-side device through RRC or triggered by the network-side device through DCI, or the multiple reports may be passed by the network-side device.
  • Multiple event-based CSI reports configured by the RRC or triggered by the network-side device through DCI; or, the multiple reports may be one or configured by the network-side device through RRC or triggered by the network-side device through DCI
  • the event-based beam report and / or the event-based CSI report may be associated with the same PUCCH according to the configuration of the RRC, or multiple event-based beams and / or the event-based CSI may be reported according to the trigger of the DCI. Reports are linked to the same PUCCH. That is, when there are multiple reports reported by the terminal, the reported report may be an event-based beam report, or an event-based CSI report, and may also include both an event-based beam report and an event-based CSI. report.
  • the network-side device can use one or more RRC configurations or use one or more DCI to trigger which reports can be associated with the same PUCCH.
  • the multiple event-based beam reports may be any one or more of an event-based periodic beam report, an event-based semi-continuous beam report, and an event-based aperiodic beam report; the multiple event-based CSI reports may be It is any one or more of an event-based periodic CSI report, an event-based semi-persistent CSI report, and an event-based aperiodic CSI report.
  • the terminal may determine whether each event-based beam report and / or CSI associated with the same PUCCH needs to be reported, and then multiplex the report to be reported on the PUCCH and send it to the network-side device.
  • the terminal determines, from the multiple event-based beam reports and / or the multiple event-based CSI reports, an event-based beam report to be reported and / or an event-based CSI report to be reported. Then, use the PUCCH to report the event-based beam report to be reported and / or the event-based CSI report to be reported to the network-side device.
  • the event-based beam report to be reported is any one or more of an event-based periodic beam report, an event-based semi-continuous beam report, and an event-based aperiodic beam report.
  • the event CSI report is any one or more of an event-based periodic CSI report, an event-based semi-persistent CSI report, and an event-based aperiodic CSI report.
  • the UCI When there are multiple event-based CSI reports, sending UCI to the network-side device, the UCI includes second instruction information, and the second instruction information is used to indicate reporting to the network-side device Event-based CSI report information;
  • the terminal adds a signaling bit to the UCI to indicate which reports are currently reported.
  • the first indication information is a first bitmap bitmap; and when the first bit in the first bitmap is a first preset value, it indicates that the first bitmap is reported to the network-side device.
  • the values of the first preset value and the second preset value can be set as required.
  • the first preset value may be 1 and the second preset value may be 0.
  • the second indication information is a second bitmap bitmap; when the second bit in the second bitmap is a third preset value, it indicates that the second bit is reported to the network-side device Corresponding report; when the second bit in the second bitmap is a fourth preset value, it means that the report corresponding to the second bit is not reported to the network-side device.
  • the values of the third preset value and the fourth preset value can be set as required.
  • the third preset value may be 1, and the fourth preset value may be 0.
  • the third indication information is a third bitmap bitmap; and when the third bit in the third bitmap is a fifth preset value, it indicates that the third bit is reported to the network-side device Corresponding report; when the third bit in the third bitmap is a sixth preset value, it means that the report corresponding to the third bit is not reported to the network-side device.
  • the values of the fifth preset value and the sixth preset value can be set as required.
  • the fifth preset value may be 1 and the sixth preset value may be 0.
  • the first indication information is represented by a newly added signaling field in the UCI, or the first indication information is represented by a signaling bit newly added in a target signaling domain existing in the UCI, or The first indication information is represented by an unused state of a signaling bit that is already in the target signaling domain.
  • the first indication information is separately encoded or jointly encoded with an existing signaling domain of the UCI; in the first In the case where the indication information is expressed by using a signaling bit newly added in the target signaling domain already existing in the UCI, the first indication information is jointly encoded with the signaling bit existing in the target signaling domain; When the first indication information is represented by an unused state of a signaling bit that is already in the target signaling domain, the first indication information is encoded by using a coding manner of the target signaling domain.
  • the second indication information is represented by a newly added signaling domain in the UCI, or the second indication information is represented by a signaling bit newly added in a target signaling domain existing in the UCI, or The second indication information is represented by an unused state of a signaling bit that is already in the target signaling domain.
  • the second instruction information is separately encoded or jointly encoded with an existing signaling domain of the UCI; in the second In the case where the indication information is represented by a signaling bit newly added in the target signaling domain already existing in the UCI, the second indication information is jointly encoded with the signaling bit already existing in the target signaling domain; When the second indication information is represented by an unused state of a signaling bit that is already in the target signaling domain, the second indication information is encoded by using a coding manner of the target signaling domain.
  • the third indication information is expressed by a signaling field added in the UCI, or the third indication information is expressed by a signaling bit added in a target signaling field existing in the UCI, or The third indication information is represented by an unused state of a signaling bit that is already in the target signaling domain.
  • the third instruction information is separately encoded or jointly encoded with an existing signaling domain of the UCI;
  • the indication information is represented by a signaling bit newly added in the target signaling domain already existing in the UCI
  • the third indication information is jointly encoded with the signaling bit existing in the target signaling domain;
  • the third indication information is encoded by using a coding manner of the target signaling domain.
  • existing signaling fields in UCI include: Scheduling Request (SR); ACK / NACK; CSI reports (including: RI, PMI, CQI, beam measurement results, etc.).
  • SR Scheduling Request
  • ACK / NACK ACK / NACK
  • CSI reports including: RI, PMI, CQI, beam measurement results, etc.
  • the existing target signaling domain of the UCI includes, but is not limited to, the signaling domain in the first part (part1) of the CSI report.
  • a signaling domain may be added to the UCI, and the first signaling information may be represented by using the newly added signaling domain.
  • the UCI information carried in PUCCH format 1 (PUCCH format 1) is ACK / NACK and has a length of 2 bits.
  • a new signaling domain is added, and its length is N (N is a positive integer).
  • UCI carries two signaling domains, that is, a newly added signaling domain and an ACK / NACK signaling domain.
  • the newly added signaling domain may be encoded separately or jointly with the existing ACK / NACK signaling domain.
  • the first signaling domain is represented by using a newly added signaling bit in the UCI target signaling domain.
  • the target signaling domain is ACK / NACK
  • M M is a positive integer
  • the length of the ACK / NACK signaling domain is M + 2 bits.
  • the number of bits in the first bitmap is equal to the number of reports, and each bit corresponds to the report index (such as the CC index).
  • the corresponding relationship can be the default index size order or The order of network configuration.
  • Each bit is 1 if the report corresponding to that bit is reported, and 0 if it is not reported.
  • the new signaling bit can be placed outside the CSI report in the UCI or the new signaling bit can be placed in part1 of the CSI report.
  • the newly added signaling bits can be encoded separately and then sent to other network-side devices together with other UCI content. Alternatively, the newly added signaling bits are jointly encoded with other UCI signaling, such as jointly encoded with a CSI report.
  • the processing method of the terminal may refer to the processing of the terminal in the method (1) the way.
  • the network-side device performs a blind check on the event-based beam report and / or the event-based CSI report reported by the terminal to determine the event-based beam actually reported by the terminal. Reports and / or actually reported event-based CSI reports.
  • the terminal when the measurement result changes little, the terminal does not need to report a beam report and / or a CSI report, which can save resource overhead and help the terminal save power.
  • FIG. 2 is a flowchart of an information processing method according to an embodiment of the present disclosure, which is applied to a network-side device. As shown in Figure 2, the method includes the following steps:
  • Step 201 Receive an event-based beam report and / or event-based CSI report reported by a terminal.
  • the network-side device may receive the event-based beam report and / or the event-based CSI report reported by the terminal using a PUCCH; or receive the event-based report reported by the terminal using a semi-persistently scheduled PUSCH.
  • the terminal determines whether to report an event-based beam report and / or an event-based CSI report to the network-side device based on the detection of the reporting trigger event, thereby saving communication resources.
  • the method further includes: sending first information to the terminal; wherein the first information is used to indicate whether to enable event-based reporting.
  • the network-side device may send the first information to the terminal by: sending the first information to the terminal through DCI; or sending the first information to the terminal through MAC; or sending the first information to the terminal through RRC Send the first message.
  • the method further includes:
  • the network-side device receives the UCI of the terminal; and determines, based on the UCI, the event-based beam report actually reported by the terminal and / or the event-based CSI report actually reported.
  • the UCI includes at least one of the following information: first indication information, where the first indication information is used to indicate information of an event-based beam report reported by the terminal to the network-side device; and the second indication information The second indication information is used to indicate information of the event-based CSI report reported by the terminal to the network-side device; the third indication information is used to indicate that the terminal is reported to the network The event-based beam report information and event-based CSI report information reported by the side device.
  • the method further includes: a network-side device performs a blind check on the event-based beam report and / or the event-based CSI report reported by the terminal, and determines what the terminal actually reports. Event-based beam reporting and / or event-based CSI reporting.
  • the terminal when the measurement result changes little, the terminal does not need to report a beam report and / or a CSI report, which can save resource overhead and help the terminal save power.
  • FIG. 3 is a structural diagram of a terminal provided by an embodiment of the present disclosure. As shown in FIG. 3, the terminal 300 includes:
  • the reporting module 301 is configured to determine whether to report an event-based beam report and / or an event-based channel state information CSI report to a network-side device based on detection of a reporting trigger event.
  • the reporting module 301 is configured to report the event-based beam report and / or the event-based CSI report to the network-side device in a case where the reporting trigger event occurs, or stop reporting to the network-side device.
  • the network-side device reports the event-based beam report and / or the event-based CSI report.
  • the terminal may further include: a first receiving module configured to receive first information of the network-side device; wherein the first information is used to indicate whether to enable event-based reporting.
  • the reporting module 301 is specifically configured to report to the network-side device when the first information is used to indicate that event-based reporting is enabled, and when the reporting trigger event occurs.
  • the information is used to indicate that when an event-based report is turned off, a beam report and / or a CSI report is reported to the network-side device.
  • the first receiving module is configured to: receive the first information of the network-side device through DCI; or receive the first information of the network-side device through MAC; or receive the first information through RRC The first information of the network-side device.
  • the reporting module uses the PUCCH to report the event-based beam to the network-side device.
  • Report and / or the event-based CSI report ; or report the event-based beam report and / or the event-based CSI report to the network side device using a semi-continuously scheduled PUSCH; or use MAC and CE to report to all
  • the network-side device reports the event-based beam report and / or the event-based CSI report.
  • the reporting module preferentially sends the PUCCH and the PUSCH with a higher priority uplink channel.
  • the event-based beam report includes an event-based periodic beam report or an event-based semi-continuous beam report or an event-based aperiodic beam report;
  • the event-based CSI report includes an event-based periodic CSI report or an event-based Semi-persistent CSI report or event-based aperiodic CSI report.
  • the event-based beam report is reported to the network-side device by using the PUCCH
  • the event-based beam report is configured by the network-side device through RRC or the network-side device through DCI.
  • the event-based beam report and the event-based CSI report are: one or more event-based beam reports configured by the network-side device through RRC or triggered by the network-side device through DCI, and one or more CSI report of the event.
  • the terminal may further include: a determining module, configured to determine, from the multiple event-based beam reports and / or the multiple event-based CSI reports, an event-based beam report to be reported and / Or an event-based CSI report to be reported.
  • the reporting module is configured to use the PUCCH to report the event-based beam report to be reported and / or the event-based CSI report to be reported to the network-side device.
  • the event-based beam report to be reported is any one or more of an event-based periodic beam report, an event-based semi-continuous beam report, and an event-based aperiodic beam report.
  • the event CSI report is any one or more of an event-based periodic CSI report, an event-based semi-persistent CSI report, and an event-based aperiodic CSI report.
  • the terminal may further include a sending module for: When there are multiple event-based beam reports, sending uplink control information UCI to the network-side device, where the UCI includes first indication information, and the first indication information is used to indicate to the network device.
  • sending UCI to the network-side device and the UCI includes a third indication Information, the third indication information indicating the information beam and the information reported by an event report to the network side device based on CSI reporting event.
  • the first indication information is a first bitmap bitmap; and when the first bit in the first bitmap is a first preset value, it indicates that the first bitmap is reported to the network-side device.
  • a report corresponding to the bit when the first bit in the first bitmap is a second preset value, it means that the report corresponding to the first bit is not reported to the network-side device.
  • the second indication information is a second bitmap bitmap; when the second bit in the second bitmap is a third preset value, it indicates that the second bit is reported to the network-side device Corresponding report; when the second bit in the second bitmap is a fourth preset value, it means that the report corresponding to the second bit is not reported to the network-side device.
  • the third indication information is a third bitmap bitmap; and when the third bit in the third bitmap is a fifth preset value, it indicates that the third bit is reported to the network-side device Corresponding report; when the third bit in the third bitmap is a sixth preset value, it means that the report corresponding to the third bit is not reported to the network-side device.
  • the first indication information is represented by a newly added signaling field in the UCI, or the first indication information is represented by a signaling bit newly added in a target signaling domain existing in the UCI, or The first indication information is represented by an unused state of a signaling bit that is already in the target signaling domain;
  • the second indication information is represented by a newly added signaling domain in the UCI, or the second indication information is represented by a signaling bit newly added in a target signaling domain existing in the UCI, or The second indication information is represented by an unused state of a signaling bit that is already in the target signaling domain;
  • the third indication information is expressed by a signaling field added in the UCI, or the third indication information is expressed by a signaling bit added in a target signaling field existing in the UCI, or The third indication information is represented by an unused state of a signaling bit that is already in the target signaling domain.
  • the first indication information is separately encoded or jointly encoded with an existing signaling domain of the UCI;
  • the first indication information is jointly encoded with the signaling bit existing in the target signaling domain;
  • the first indication information is encoded by using an encoding manner of the target signaling domain;
  • the second instruction information in a case where the second instruction information is represented by a newly added signaling domain in the UCI, the second instruction information is separately encoded or jointly encoded with an existing signaling domain of the UCI;
  • the second indication information is expressed by using a new signaling bit in the target signaling domain existing in the UCI, the second indication information is jointly encoded with the existing signaling bit in the target signaling domain;
  • the second indication information is represented by an unused state of a signaling bit that is already in the target signaling domain, the second indication information is encoded by using a coding manner of the target signaling domain;
  • the third indication information is separately encoded or jointly encoded with the existing signaling domain of the UCI;
  • the third indication information is jointly encoded with the existing signaling bits in the target signaling domain;
  • the third indication information is encoded by using a coding manner of the target signaling domain.
  • the terminal 300 can implement the processes implemented by the terminal in the method embodiments in FIG. 1 to FIG. 2. To avoid repetition, details are not described herein again.
  • the terminal determines whether to report an event-based beam report and / or an event-based CSI report to the network-side device based on the detection of the reporting trigger event, thereby saving communication resources.
  • FIG. 4 is a schematic diagram of a hardware structure of a terminal that implements various embodiments of the present disclosure.
  • the terminal 400 includes, but is not limited to, a radio frequency unit 401, a network module 402, an audio output unit 403, an input unit 404, a sensor 405, a display unit 406, a user input unit 407, an interface unit 408, a memory 409, a processor 410, and a power supply. 411 and other components.
  • the terminal structure shown in FIG. 4 does not constitute a limitation on the terminal, and the terminal may include more or fewer components than shown in the figure, or combine certain components, or arrange different components.
  • the terminal includes, but is not limited to, a mobile phone, a tablet computer, a notebook computer, a palmtop computer, a car terminal, a wearable device, and a pedometer.
  • the processor 410 is configured to determine whether to report an event-based beam report and / or an event-based channel state information CSI report to a network-side device based on detection of a reporting trigger event.
  • the terminal determines whether to report an event-based beam report and / or an event-based CSI report to the network-side device based on the detection of the reporting trigger event, thereby saving communication resources.
  • the processor 410 is configured to report the event-based beam report and / or the event-based CSI report to the network-side device in a case where the reporting trigger event occurs, or stop reporting to the network-side device.
  • the network-side device reports the event-based beam report and / or the event-based CSI report.
  • the processor 410 is configured to receive first information of the network-side device; and the first information is used to indicate whether to enable event-based reporting.
  • the processor 410 is configured to report the event-based report to the network-side device when the first information is used to indicate that event-based reporting is enabled, and when the report trigger event occurs.
  • the processor 410 is configured to receive the first information of the network-side device through downlink control information DCI; or receive the first information of the network-side device through a media access control MAC control element CE; or Receiving the first information of the network-side device through radio resource control RRC.
  • the processor 410 is configured to use the physical uplink control channel PUCCH to report the event-based beam report and / or the event-based CSI report to the network-side device; or use semi-persistent scheduling for physical uplink sharing
  • the channel PUSCH reports the event-based beam report and / or the event-based CSI report to the network-side device; or uses MAC CE to report the event-based beam report and / or the event-based beam report to the network-side device.
  • Event-based CSI report is configured to use the physical uplink control channel PUCCH to report the event-based beam report and / or the event-based CSI report to the network-side device; or use semi-persistent scheduling for physical uplink sharing
  • the channel PUSCH reports the event-based beam report and / or the event-based CSI report to the network-side device; or uses MAC CE to report the event-based beam report and / or the event-based beam report to the network-side device.
  • Event-based CSI report is configured to use the physical
  • the processor 410 is configured to, when the PUCCH and the PUSCH collide, send the PUCCH and the PUSCH with a higher priority uplink channel first.
  • the event-based beam report includes an event-based periodic beam report or an event-based semi-continuous beam report or an event-based aperiodic beam report;
  • the event-based CSI report includes an event-based periodic CSI report or an event-based Semi-persistent CSI report or event-based aperiodic CSI report.
  • the event-based beam report is reported to the network-side device by using the PUCCH
  • the event-based beam report is configured by the network-side device through RRC or the network-side device through DCI.
  • the event-based beam report and the event-based CSI report are: one or more event-based beam reports configured by the network-side device through RRC or triggered by the network-side device through DCI, and one or more CSI report of the event.
  • the processor 410 is configured to determine, from the multiple event-based beam reports and / or the multiple event-based CSI reports, an event-based beam report to be reported and / or an event-based report to be reported.
  • CSI report ; using the PUCCH to report the event-based beam report to be reported and / or the event-based CSI report to be reported to the network-side device.
  • the event-based beam report to be reported is any one or more of an event-based periodic beam report, an event-based semi-continuous beam report, and an event-based aperiodic beam report; the event-based to-be-reported The CSI report is any one or more of an event-based periodic CSI report, an event-based semi-persistent CSI report, and an event-based aperiodic CSI report.
  • the processor 410 is configured to send uplink control information UCI to the network-side device when the event-based beam reports are multiple, and the UCI includes first indication information and the first indication.
  • the information is used to indicate information of an event-based beam report reported to the network-side device; and when there are multiple event-based CSI reports, UCI is sent to the network-side device, and the UCI includes a first Two indication information, the second indication information is used to indicate information of an event-based CSI report reported to the network-side device; an event-based beam report and an event-based CSI report are reported to the network-side device, and When the event-based beam report is one or more, and the event-based CSI report is one or more, sending UCI to the network-side device, where the UCI includes third indication information, so The third indication information is used to indicate information of an event-based beam report and event-based CSI report reported to the network-side device.
  • the first indication information is a first bitmap bitmap; when the first bit in the first bitmap is a first preset value, it indicates that the first bit is reported to the network-side device A corresponding report; when the first bit in the first bitmap is a second preset value, it means that the report corresponding to the first bit is not reported to the network-side device;
  • the second indication information is a second bitmap bitmap; when the second bit in the second bitmap is a third preset value, it indicates that the second bit is reported to the network-side device A corresponding report; when the second bit in the second bitmap is a fourth preset value, it means that the report corresponding to the second bit is not reported to the network-side device;
  • the third indication information is a third bitmap bitmap; and when the third bit in the third bitmap is a fifth preset value, it indicates that the third bit is reported to the network-side device Corresponding report; when the third bit in the third bitmap is a sixth preset value, it means that the report corresponding to the third bit is not reported to the network-side device.
  • the first indication information is represented by a newly added signaling field in the UCI, or the first indication information is represented by a signaling bit newly added in a target signaling domain existing in the UCI, or The first indication information is represented by an unused state of a signaling bit that is already in the target signaling domain;
  • the second indication information is represented by a newly added signaling domain in the UCI, or the second indication information is represented by a signaling bit newly added in a target signaling domain existing in the UCI, or The second indication information is represented by an unused state of a signaling bit that is already in the target signaling domain;
  • the third indication information is expressed by a signaling field added in the UCI, or the third indication information is expressed by a signaling bit added in a target signaling field existing in the UCI, or The third indication information is represented by an unused state of a signaling bit that is already in the target signaling domain.
  • the first indication information is separately encoded or jointly encoded with an existing signaling domain of the UCI;
  • the first indication information is jointly encoded with the signaling bit existing in the target signaling domain;
  • the first indication information is encoded by using an encoding manner of the target signaling domain;
  • the second instruction information in a case where the second instruction information is represented by a newly added signaling domain in the UCI, the second instruction information is separately encoded or jointly encoded with an existing signaling domain of the UCI;
  • the second indication information is expressed by using a new signaling bit in the target signaling domain existing in the UCI, the second indication information is jointly encoded with the existing signaling bit in the target signaling domain;
  • the second indication information is represented by an unused state of a signaling bit that is already in the target signaling domain, the second indication information is encoded by using a coding manner of the target signaling domain;
  • the third indication information is separately encoded or jointly encoded with the existing signaling domain of the UCI;
  • the third indication information is jointly encoded with the existing signaling bits in the target signaling domain;
  • the third indication information is encoded by using a coding manner of the target signaling domain.
  • the radio frequency unit 401 may be used to receive and send signals during the transmission and reception of information or during a call. Specifically, the downlink data from the base station is received and processed by the processor 410; The uplink data is sent to the base station.
  • the radio frequency unit 401 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the radio frequency unit 401 can also communicate with a network and other devices through a wireless communication system.
  • the terminal provides users with wireless broadband Internet access through the network module 402, such as helping users to send and receive email, browse web pages, and access streaming media.
  • the audio output unit 403 may convert audio data received by the radio frequency unit 401 or the network module 402 or stored in the memory 409 into audio signals and output them as sound. Also, the audio output unit 403 may also provide audio output (for example, a call signal receiving sound, a message receiving sound, etc.) related to a specific function performed by the terminal 400.
  • the audio output unit 403 includes a speaker, a buzzer, a receiver, and the like.
  • the input unit 404 is used to receive audio or video signals.
  • the input unit 404 may include a GPU (Graphics Processing Unit) 4041 and a microphone 4042.
  • the graphics processor 4041 pairs images of still pictures or videos obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. Data is processed.
  • the processed image frame may be displayed on the display unit 406.
  • the image frames processed by the graphics processor 4041 may be stored in the memory 409 (or other storage medium) or transmitted via the radio frequency unit 401 or the network module 402.
  • the microphone 4042 can receive sound, and can process such sound into audio data.
  • the processed audio data can be converted into a format that can be transmitted to a mobile communication base station via the radio frequency unit 401 in the case of a telephone call mode.
  • the terminal 400 further includes at least one sensor 405, such as a light sensor, a motion sensor, and other sensors.
  • the light sensor includes an ambient light sensor and a proximity sensor.
  • the ambient light sensor can adjust the brightness of the display panel 4061 according to the brightness of the ambient light.
  • the proximity sensor can close the display panel 4061 and / when the terminal 400 is moved to the ear. Or backlight.
  • the accelerometer sensor can detect the magnitude of acceleration in various directions (usually three axes), and can detect the magnitude and direction of gravity when it is stationary, and can be used to identify the attitude of the terminal (such as horizontal and vertical screen switching, related games, Magnetometer attitude calibration), vibration recognition related functions (such as pedometer, tap), etc .; sensor 405 can also include fingerprint sensor, pressure sensor, iris sensor, molecular sensor, gyroscope, barometer, hygrometer, thermometer, infrared The sensors and the like are not repeated here.
  • the display unit 406 is configured to display information input by the user or information provided to the user.
  • the display unit 406 may include a display panel 4061.
  • the display panel 4061 may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.
  • the user input unit 407 may be used to receive inputted numeric or character information, and generate key signal inputs related to user settings and function control of the terminal.
  • the user input unit 407 includes a touch panel 4071 and other input devices 4072.
  • Touch panel 4071 also known as touch screen, can collect user's touch operations on or near it (such as the user using a finger, stylus, etc. any suitable object or accessory on touch panel 4071 or near touch panel 4071 operating).
  • the touch panel 4071 may include two parts, a touch detection device and a touch controller.
  • the touch detection device detects the user's touch position, and detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives touch information from the touch detection device, converts it into contact coordinates, and sends it To the processor 410, receive the command sent by the processor 410 and execute it.
  • various types such as resistive, capacitive, infrared, and surface acoustic wave can be used to implement the touch panel 4071.
  • the user input unit 407 may also include other input devices 4072.
  • other input devices 4072 may include, but are not limited to, a physical keyboard, function keys (such as volume control keys, switch keys, etc.), a trackball, a mouse, and a joystick, and details are not described herein again.
  • the touch panel 4071 may be overlaid on the display panel 4061.
  • the touch panel 4071 detects a touch operation on or near the touch panel 4071, the touch panel 4071 transmits the touch operation to the processor 410 to determine the type of the touch event.
  • the type of event provides corresponding visual output on the display panel 4061.
  • the touch panel 4071 and the display panel 4061 are implemented as two independent components to implement the input and output functions of the terminal, in some embodiments, the touch panel 4071 and the display panel 4061 can be integrated and Implement the input and output functions of the terminal, which are not limited here.
  • the interface unit 408 is an interface for connecting an external device with the terminal 400.
  • the external device may include a wired or wireless headset port, an external power (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, audio input / output (I / O) port, video I / O port, headphone port, and more.
  • the interface unit 408 may be used to receive an input (e.g., data information, power, etc.) from an external device and transmit the received input to one or more elements within the terminal 400 or may be used between the terminal 400 and an external device. Transfer data.
  • the memory 409 can be used to store software programs and various data.
  • the memory 409 may mainly include a storage program area and a storage data area, where the storage program area may store an operating system, at least one application required by a function (such as a sound playback function, an image playback function, etc.), etc .; Data (such as audio data, phone book, etc.) created by the use of mobile phones.
  • the memory 409 may include a high-speed random access memory, and may further include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.
  • the processor 410 is a control center of the terminal, and uses various interfaces and lines to connect various parts of the entire terminal.
  • the processor 410 runs or executes software programs and / or modules stored in the memory 409, and calls data stored in the memory 409 to execute Various functions and processing data of the terminal, so as to monitor the terminal as a whole.
  • the processor 410 may include one or more processing units; optionally, the processor 410 may integrate an application processor and a modem processor, wherein the application processor mainly processes an operating system, a user interface, and an application program, etc.
  • the tuning processor mainly handles wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 410.
  • the terminal 400 may further include a power source 411 (such as a battery) for supplying power to various components.
  • a power source 411 such as a battery
  • the power source 411 may be logically connected to the processor 410 through a power management system, thereby implementing management of charging, discharging, and power management through the power management system And other functions.
  • the terminal 400 includes some functional modules that are not shown, and details are not described herein again.
  • an information processing apparatus 500 includes:
  • the first receiving module 501 is configured to receive an event-based beam report and / or an event-based CSI report reported by a terminal.
  • the first receiving module 501 is configured to receive the event-based beam report and / or the event-based CSI report reported by the terminal by using the PUCCH; or receive the terminal's PUSCH report by using semi-persistent scheduling. Receiving the event-based beam report and / or the event-based CSI report; or receiving the event-based beam report and / or the event-based CSI report reported by the terminal using a MAC CE.
  • the information processing apparatus 500 may further include: a first sending module configured to send first information to the terminal; wherein the first information is used to indicate whether to enable event-based reporting.
  • the first sending module is configured to send the first information to the terminal through DCI; or send the first information to the terminal through MAC; or send the first information to the terminal through RRC.
  • First information is configured to send the first information to the terminal through DCI; or send the first information to the terminal through MAC; or send the first information to the terminal through RRC.
  • the information processing apparatus 500 may further include a second receiving module For receiving the UCI of the terminal; and a determining module for determining, based on the UCI, an event-based beam report actually reported by the terminal and / or an event-based CSI report actually reported.
  • the UCI includes at least one of the following information: first indication information, where the first indication information is used to indicate information of an event-based beam report reported by the terminal to the network-side device; and the second indication information The second indication information is used to indicate information of the event-based CSI report reported by the terminal to the network-side device; the third indication information is used to indicate that the terminal is reported to the network The event-based beam report information and event-based CSI report information reported by the side device.
  • the information processing apparatus 500 may further include a detection module configured to perform a blind check on the event-based beam report and / or the event-based CSI report reported by the terminal, and determine the Beam reporting of events and / or event-based CSI reporting actually reported.
  • a detection module configured to perform a blind check on the event-based beam report and / or the event-based CSI report reported by the terminal, and determine the Beam reporting of events and / or event-based CSI reporting actually reported.
  • the information processing apparatus 500 can implement each process implemented by the network-side device in the method embodiments in FIG. 1 to FIG. 2. To avoid repetition, details are not described herein again.
  • the terminal determines whether to report an event-based beam report and / or an event-based CSI report to the network-side device based on the detection of the reporting trigger event, thereby saving communication resources.
  • an embodiment of the present disclosure further provides a communication device including a processor, a memory, and a computer program stored on the memory and executable on the processor.
  • the computer program implements the foregoing information processing when executed by the processor.
  • An embodiment of the present disclosure further provides a computer-readable storage medium.
  • a computer program is stored on the computer-readable storage medium.
  • the computer program is executed by a processor, the processes of any one of the foregoing embodiments of the information processing method are implemented, and The same technical effects are omitted here to avoid repetition.
  • the computer-readable storage medium is, for example, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.
  • the methods in the above embodiments can be implemented by means of software plus a necessary universal hardware platform, and of course, also by hardware, but in many cases the former is better.
  • Implementation Based on this understanding, the technical solution of the present disclosure that is essentially or contributes to the existing technology can be embodied in the form of a software product that is stored in a storage medium (such as ROM / RAM, magnetic disk, The optical disc) includes several instructions for causing a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to execute the methods described in the embodiments of the present disclosure.
  • a terminal which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.

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Abstract

本公开提供一种信息处理方法、装置、终端及通信设备。方法包括:基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。

Description

信息处理方法、装置、终端及通信设备
相关申请的交叉引用
本申请主张在2018年5月25日在中国提交的中国专利申请号No.201810516930.0的优先权,其全部内容通过引用包含于此。
技术领域
本公开实施例涉及通信技术领域,尤其涉及一种信息处理方法、装置、终端及通信设备。
背景技术
长期演进(Long Term Evolution,LTE)/LTE的演进(LTE-Advanced,LTE-A)等无线接入技术标准都是以多输入多输出(Multiple-Input Multiple-Output,MIMO)+正交频分复用(Orthogonal Frequency Division Multiplexing,OFDM)技术为基础构建起来的。其中,MIMO技术利用多天线***所能获得的空间自由度,来提高峰值速率与***频谱利用率。可以预见,在未来的5G移动通信***中,更大规模、更多天线端口的MIMO技术将被引入。
大规模(Massive)MIMO技术使用大规模天线阵列,能够极大地提升***频带利用效率,支持更大数量的接入用户。因此各大研究组织均将Massive MIMO技术视为下一代移动通信***中最有潜力的物理层技术之一。
在Massive MIMO技术中如果采用全数字阵列,可以实现最大化的空间分辨率以及最优多用户多输入多输出(Multi-User Multiple-Input Multiple-Output,MU-MIMO)性能,但是这种结构需要大量的模拟数字(AD)/数字模拟(DA)转换器件以及大量完整的射频-基带处理通道,无论是设备成本还是基带处理复杂度都将是巨大的负担。
为了避免上述的实现成本与设备复杂度,数模混合波束赋形技术应运而生,即在传统的数字域波束赋形基础上,在靠近天线***的前端,在射频信号上增加一级波束赋形。模拟赋形能够通过较为简单的方式,使发送信号与信道实现较为粗略的匹配。模拟赋形后形成的等效信道的维度小于实际的天 线数量,因此其后所需的AD/DA转换器件、数字通道数以及相应的基带处理复杂度都可以大为降低。模拟赋形部分残余的干扰可以在数字域再进行一次处理,从而保证MU-MIMO传输的质量。
模拟波束赋形是全带宽发射的,并且每个高频天线阵列的面板上每个极化方向阵元仅能以时分复用的方式发送模拟波束。模拟波束的赋形权值是通过调整射频前端移相器等设备的参数来实现。目前通常是使用轮询的方式进行模拟波束赋形向量的训练,即每个天线面板每个极化方向的阵元以时分复用方式依次在约定时间发送训练信号(即候选的赋形向量),终端经过测量后反馈波束报告,供网络侧在下一次传输业务时采用该训练信号所使用的赋形向量来实现模拟波束发射。
网络侧设备通过高层信令为终端配置波束报告(beam reporting)的设置信息,即reporting setting,其中包括波束报告的内容信息、波束报告的时域相关消息(周期、非周期、半持续)、波束报告的频域粒度(frequency granularity)信息等。波束报告中的内容信息可以包括:终端所选的至少一个最优发射波束标识信息、终端所选波束的物理层测量结果、终端所选波束的分组信息等。
在相关技术中,以波束报告的上报为例,对于周期和半持续波束报告,一旦网络侧设备配置了波束报告的相关信息,则终端就要周期上报波束报告或在收到激活命令后周期上报波束报告;对于非周期波束报告,终端也需要根据网络侧设备的触发而上报一个或多个波束报告。
但是,当终端的波束测量结果不发生变化或者变化较小时,也即当前测量获得的波束报告与已经上报的波束报告相比不发生变化或者变化较小时,那么,此时终端再上报波束报告就有可能造成通信资源的浪费。例如,终端的状态没有变化(如静止)或者变化很小(如移动速度很小)时,可能出现当前测量获得的波束报告与已经上报的波束报告相比不发生变化。此时终端再上报波束报告就可能造成通信资源的浪费。同理,对于信道状态信息(Channel State Information,CSI)报告的上报也存在相同的问题。
发明内容
本公开实施例提供一种信息处理方法、装置、终端及通信设备,以解决 当终端当前测量获得的波束报告与已经上报的波束报告相比没有变化或者变化较小,或者当终端当前测量获得的CSI报告与已经上报的CSI报告相比没有变化或者变化较小时,终端上报波束报告或者CSI报告所造成的通信资源浪费的问题。
第一方面,本公开实施例提供了一种信息处理方法,应用于终端,包括:
基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
第二方面,本公开实施例还提供一种信息处理方法,应用于网络侧设备,包括:
接收终端上报的基于事件的波束报告和/或基于事件的CSI报告。
第三方面,本公开实施例还提供一种终端,包括:
上报模块,用于基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
第四方面,本公开实施例还提供一种信息处理装置,包括:
接收模块,用于接收终端上报的基于事件的波束报告和/或基于事件的CSI报告。
第五方面,本公开实施例还提供一种通信设备,包括:存储器、处理器及存储在存储器上并可在处理器上运行的程序,所述程序被所述处理器执行时实现如第一方面所述的信息处理方法中的步骤或实现如第二方面所述的信息处理方法中的步骤。
第六方面,本公开实施例还提供一种计算机可读存储介质,所述计算机可读存储介质上存储有程序,所述程序被处理器执行时实现如第一方面所述的信息处理方法中的步骤或实现如第二方面所述的信息处理方法中的步骤。
这样,在本公开实施例中,终端基于对上报触发事件的检测确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告,从而可节约通信资源。
附图说明
为了更清楚地说明本公开实施例的技术方案,下面将对本公开实施例描 述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本公开的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本公开实施例提供的信息处理方法的流程图之一;
图2是本公开实施例提供的信息处理方法的流程图之二;
图3是本公开实施例提供的终端的结构图之一;
图4是本公开实施例提供的终端的结构图之二;
图5是本公开实施例提供的信息处理装置的结构图之一。
具体实施方式
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。此外,说明书以及权利要求中使用“和/或”表示所连接对象的至少其中之一,例如A和/或B,表示包含单独A,单独B,以及A和B都存在三种情况。
在对4G以后的下一代通信***的研究中,将***支持的工作频段提升至6GHz以上,最高约达100GHz。高频段具有较为丰富的空闲频率资源,可以为数据传输提供更大的吞吐量。目前3GPP已经完成了高频信道建模工作,高频信号的波长短,同低频段相比,能够在同样大小的面板上布置更多的天线阵元,利用波束赋形技术形成指向性更强、波瓣更窄的波束。因此,将大规模天线和高频通信相结合,也是未来的趋势之一。
关于波束测量和报告(beam measurement and beam reporting),模拟波束赋形是全带宽发射的,并且每个高频天线阵列的面板上每个极化方向阵元仅能以时分复用的方式发送模拟波束。模拟波束的赋形权值是通过调整射频前端移相器等设备的参数来实现。
目前在学术界和工业界,通常是使用轮询的方式进行模拟波束赋形向量的训练,即每个天线面板每个极化方向的阵元以时分复用方式依次在约定时间发送训练信号(即候选的赋形向量),终端经过测量后反馈波束报告,供网 络侧在下一次传输业务时采用该训练信号所用的赋形向量来实现模拟波束发射。波束报告的内容通常包括最优的若干个发射波束标识以及测量出的每个发射波束的接收功率。
网络侧设备通过高层信令为终端配置波束报告(beam reporting)的设置信息,即reporting setting,其中包括波束报告的内容信息、波束报告的时域相关消息(周期、非周期、半持续)、波束报告的频域粒度(frequency granularity)信息等。波束报告中的内容信息可以包括:终端所选的至少一个最优发射波束标识信息、终端所选波束的物理层测量结果、终端所选波束的分组信息等。具体如下:
信道状态信息(Channel State Information,CSI)信息可以包括:信道质量指示(Channel Quality Indicator,CQI),预编码矩阵指示(Precoding Matrix Indicator,PMI),信道状态信息参考信号资源指示(Channel State Information Reference Signal resource indicator,CSI-RS resource indicator或CRI),层指示(layer indication,LI),秩指示(rank indication,RI),层1-参考信号接收功率(Layer1-Reference Signal Receiving Power,L1-RSRP)。对于波束报告和CSI报告需要上报不同的CSI信息。
每个设置信息(高层参数CSI-ReportConfig)关联到一个下行带宽部分(Bandwidth part,BWP),并且包含一系列上报参数,如CSI类型(CSI Type)(I or II)、码本配置(包括码本子集限制(codebook subset restriction))、时域行为、CQI和PMI的频域颗粒度、测量限制配置(measurement restriction configurations)、LI、L1-RSRP参数、CSI-RS资源指示(CSI-RS Resource Indicator,CRI)、SSB资源指示(SSB Resource Indicator,SSBRI)等。
CSI-ReportConfig中的时域行为是由无线资源控制(Radio Resource Control,RRC)信令reportConfigType来指示,该参数可以设置为周期(periodic)、半持续(semi-persistent)、非周期(aperiodic)。对于周期和半持续CSI报告,所配置的周期值和时隙偏移(slot offset)是应用当前激活上行带宽部分(active UL BWP)的数值配置(numerology)。高层参数ReportQuantity指示用于上报的CSI相关(CSI-related)或L1-RSRP相关(L1-RSRP-related)量。参数ReportFreqConfiguration指示报告的频域颗粒度,包括CSI报告带 宽(CSI reporting band)和PMI/CQI报告(reporting)是宽带(wideband)还是子带(sub-band)。参数CSI-ReportConfig还可以包括timeRestrictionForChannelMeasurements(用于使能信道测量的time domain restriction的配置)和timeRestrictionForInterferenceMeasurements(用于使能干扰测量的time domain restriction的配置)。CSI-ReportConfig还可以包括CodebookConfig,其包括Type-I or Type II CSI的配置参数(包括codebook subset restriction)和基于分组的报告(group based reporting)的配置。
对于波束报告,需要将ReportQuantity配置取值为“CRI/RSRP”或“SSBRI/RSRP”,表示终端通过测量网络侧设备配置的CSI-RS或SSB resource获得各波束的L1-RSRP,并上报给网络侧设备。
对于周期波束报告,使用RRC配置报告的周期、时隙偏移、时隙内的符号,终端根据RRC配置信息反馈波束报告,在short(短)/long(长)物理上行链路控制信道(Physical Uplink Control Channel,PUCCH)上传输。
对于半持续波束报告,使用RRC配置报告的周期、时隙偏移、时隙内的符号。对于使用short/long PUCCH发送的半持续报告,由媒体接入控制(Media Access Control,MAC)控制元素(Control Element,CE)激活/去激活。对于使用物理上行共享信道(Physical Uplink Shared Channel,PUSCH)发送的半持续报告,由下行控制信息(Downlink Control Information,DCI)激活/去激活。
对于非周期波束报告,使用RRC配置报告的周期、时隙偏移、时隙内的符号,再通过DCI触发非周期波束报告。在触发时,可以触发终端一次反馈多个成员载波(Component Carrier,CC)的报告,或者多种类型的报告(波束报告和CSI报告)。非周期波束报告在PUSCH上传输。
在相关技术中,对于周期和半持续波束报告,一旦网络侧设备配置了报告的相关信息,则终端就要进行周期上报(对于半持续波束报告是在MAC CE激活后周期上报);对于非周期波束报告,也可能根据网络侧设备的触发而上报多个报告。但是,当终端的波束测量结果不发生变化或者变化较小时,也即当前测量获得的波束报告与已经上报的波束报告相比不发生变化或者变化较小时,例如,当终端的状态没有变化(如静止)或者变化很小(如移动速度很小)时,可能出现终端的波束测量结果不发生变化,那么此时再上报波 束报告就会产生资源浪费,也不利于终端节电。
为解决上述问题,本公开实施例提出了一种信息处理方法,终端基于对上报触发事件的检测以确定是否向网络侧设备上报报告,从而可降低开销,并节约通信资源。在本公开实施例中,上报的报告可以指的是下文的基于事件的波束报告,也可以指的是基于事件的CSI报告,还可以指的是基于事件的波束报告和基于事件的CSI报告。
需要说明的是,本公开实施例所述的方案并不局限于应用于4G及下一代通信***中,还可随着技术的发展,应用到未来的通信***中。以下,结合具体的实施例详细描述一下本公开实施例的实现过程。
参见图1,图1是本公开实施例提供的信息处理方法的流程图。如图1所示,该方法包括以下步骤:
步骤101、基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告。
在本公开实施例中,所述上报触发事件可以预设的或网络侧设备配置的或终端自身确定的。在此,基于事件的波束报告或者基于事件的CSI报告,可以理解为在检测到了上报触发事件发生时上报的波束报告或者CSI报告,也即,在此的波束报告或CSI报告是与对上报触发事件的检测相关联的。
上报触发事件可包括多种,终端在发生了上报触发事件的情况下,可选择上报基于事件的波束报告和/或基于事件的CSI报告,或者停止上报基于事件的波束报告和/或基于事件的CSI报告。那么,在此步骤中,终端可在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
例如,当需要上报的最优波束标识(CRI或SSBRI)发生变化时,终端进行上报;否则停止上报。又例如,所需上报的波束标识所对应的L1-RSRP变化达到某个预设门限时,终端进行上报;否则,停止上报。
本公开实施例中,上述方法可以应用于终端,例如:手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)、个人数字助理(personal digital assistant,PDA)、移动上网装置(Mobile Internet Device,MID)或可 穿戴式设备(Wearable Device)等。
由上可以看出,终端基于对上报触发事件的检测确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告,从而可节约通信资源。
在实际应用中,还可由网络侧设备通知终端是否开启基于事件的报告。也就是说,终端结合网络侧设备的通知以及是否发生了上报触发事件,确定是否上报基于事件的波束报告和/或基于事件的CSI报告。
在这种情况下,在步骤101之前,所述方法还可包括:
接收所述网络侧设备的第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。
具体的,终端可通过以下任一方式接收所述网络侧设备的第一信息:
通过DCI接收所述网络侧设备的第一信息;或者通过MAC CE接收所述网络侧设备的第一信息;或者通过RRC接收所述网络侧设备的第一信息。
其中,上述信令可以为1比特,如1表示ON,即开启基于事件的报告;0表示OFF,即关闭基于事件的报告。
此时,步骤101具体为:在所述第一信息用于表示开启基于事件的报告的情况下,以及在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;在所述第一信息用于表示关闭基于事件的报告的情况下,向所述网络侧设备上报波束报告和/或CSI报告。
例如,当第一信息表示开启基于事件的报告的情况下,当需要上报的最优波束标识(CRI或SSBRI)发生变化时,终端进行上报;否则停止上报。又例如,当第一信息表示开启基于事件的报告的情况下,所需上报的波束标识所对应的L1-RSRP变化达到某个预设门限时,终端进行上报;否则,停止上报。当第一信息表示关闭基于事件的报告的情况下,终端按照网络侧设备配置的信息进行上报。
在实际应用中,终端可根据网络高层信令配置或者协议约定的上行物理信道资源或上行MAC命令(MAC层协议约定好的命令)向网络侧设备发送报告。具体的,在终端向网络侧设备上报所述基于事件的波束报告和/或所述 基于事件的CSI报告的情况下,终端可利用以下任一方式进行上报:
(1)利用PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;
(2)利用半持续调度的PUSCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;
(3)利用MAC CE向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
也即,在实际应用中,终端可通过上述任一方式向网络侧设备上报基于事件的波束报告,或者,通过上述任一方式向网络侧设备上报基于事件的CSI报告,或者,通过上述任一方式向网络侧设备上报基于事件的波束报告以及基于事件的CSI报告。
其中,所述基于事件的波束报告包括基于事件的周期波束报告或者基于事件的半持续波束报告或者基于事件的非周期波束报告;所述基于事件的CSI报告包括基于事件的周期CSI报告或者基于事件的半持续CSI报告或者基于事件的非周期CSI报告。
在方式(1)的情况下,PUCCH可以是周期PUCCH资源或者半持续PUCCH资源。此外,在这种情况下,当上报基于事件的波束报告和/或基于事件的CSI报告的PUCCH和PUSCH发生碰撞(即发生资源重叠)时,优先发送所述PUCCH和所述PUSCH中优先级较高的上行信道。例如,如果上报基于事件的波束报告的PUCCH的优先级高于PUSCH的优先级,那么终端优先发送上报基于事件的波束报告的PUCCH,将PUSCH推迟到下一个发送时刻再发送。
为了进一步节约资源,在这种情况下,还可以将多个报告关联到相同的PUCCH,也即通过PUCCH发送多个报告。
具体的,在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告的情况下,所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告;在利用所述PUCCH向所述网络侧设备上报所述基于事件的CSI报告的情况下,所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所述网络侧设备 通过DCI触发的多个基于事件的CSI报告;在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告和所述基于事件的CSI报告的情况下,所述基于事件的波束报告和所述基于事件的CSI报告为,所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的一个或者多个基于事件的波束报告以及一个或多个基于事件的CSI报告。
也即,这多个报告可以是所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告,或者,这多个报告可以是所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的CSI报告;或者,这多个报告可以是所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的一个或多个基于事件的波束报告,以及一个或多个基于事件的CSI报告。
也即,可根据RRC的配置将基于事件的波束报告和/或将基于事件的CSI报告关联到相同PUCCH,或者可根据DCI的触发将多个基于事件的波束报告和/或将基于事件的CSI报告关联到相同的PUCCH。也就是说,在终端上报的报告为多个的情况下,上报的报告可以为基于事件的波束报告,也可以是基于事件的CSI报告,还可以同时包括基于事件的波束报告和基于事件的CSI报告。此外,网络侧设备可利用一个或者多个RRC配置或者利用一个或者多个DCI触发哪些报告可以关联到相同的PUCCH中。
这多个基于事件的波束报告可以是基于事件的周期波束报告、基于事件的半持续波束报告、基于事件的非周期波束报告中的任意一种或者多种;这多个基于事件的CSI报告可以是基于事件的周期CSI报告、基于事件的半持续CSI报告、基于事件的非周期CSI报告中的任意一种或者多种。
此外,终端还可确定关联到相同PUCCH的每个基于事件的波束报告和/或CSI是否需要上报,再将需要上报的报告复用到PUCCH上发送给网络侧设备。
具体的,终端从所述多个基于事件的波束报告和/或所述多个基于事件的CSI报告中,确定待上报的基于事件的波束报告和/或待上报的基于事件的CSI报告。而后,利用所述PUCCH向所述网络侧设备上报所述待上报的基于事件的波束报告和/或所述待上报的基于事件的CSI报告。其中,所述待上报的 基于事件的波束报告为基于事件的周期波束报告、基于事件的半持续波束报告、基于事件的非周期波束报告中的任意一种或者多种;所述待上报的基于事件的CSI报告为基于事件的周期CSI报告、基于事件的半持续CSI报告、基于事件的非周期CSI报告中的任意一种或者多种。
此外,在方式(1)下,还可包括如下步骤:
在所述基于事件的波束报告为多个的情况下,向所述网络侧设备发送上行控制信息UCI,所述UCI中包括第一指示信息,所述第一指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息;
在所述基于事件的CSI报告为多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第二指示信息,所述第二指示信息用于表示向所述网络侧设备上报的基于事件的CSI报告的信息;
在向所述网络侧设备上报基于事件的波束报告和基于事件的CSI报告,以及在所述基于事件的波束报告为一个或者多个、所述基于事件的CSI报告为一个或者多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第三指示信息,所述第三指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
也即,终端在UCI中增加信令比特,来指示当前上报了哪些报告。
例如,所述第一指示信息为第一位图bitmap;在所述第一bitmap中的第一比特位为第一预设值的情况下,表示向所述网络侧设备上报有所述第一比特位对应的报告;在所述第一bitmap中的第一比特位为第二预设值的情况下,表示未向所述网络侧设备上报所述第一比特位对应的报告。实际应用中可根据需要设置第一预设值和第二预设值的值。例如,所述第一预设值可以为1,所述第二预设值可以为0。
所述第二指示信息为第二位图bitmap;在所述第二bitmap中的第二比特位为第三预设值的情况下,表示向所述网络侧设备上报有所述第二比特位对应的报告;在所述第二bitmap中的第二比特位为第四预设值的情况下,表示未向所述网络侧设备上报所述第二比特位对应的报告。实际应用中可根据需要设置第三预设值和第四预设值的值。例如,所述第三预设值可以为1,所述第四预设值可以为0。
所述第三指示信息为第三位图bitmap;在所述第三bitmap中的第三比特位为第五预设值的情况下,表示向所述网络侧设备上报有所述第三比特位对应的报告;在所述第三bitmap中的第三比特位为第六预设值的情况下,表示未向所述网络侧设备上报所述第三比特位对应的报告。实际应用中可根据需要设置第五预设值和第六预设值的值。例如,所述第五预设值可以为1,所述第六预设值可以为0。
其中,所述第一指示信息利用所述UCI中新增的信令域表示,或者所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态(state)表示。
在所述第一指示信息利用所述UCI中新增的信令域表示的情况下,所述第一指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第一指示信息与所述目标信令域中已有的信令比特联合编码;在所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第一指示信息利用所述目标信令域的编码方式进行编码。
其中,所述第二指示信息利用所述UCI中新增的信令域表示,或者所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示。
在所述第二指示信息利用所述UCI中新增的信令域表示的情况下,所述第二指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第二指示信息与所述目标信令域中已有的信令比特联合编码;在所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第二指示信息利用所述目标信令域的编码方式进行编码。
其中,所述第三指示信息利用所述UCI中新增的信令域表示,或者所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示。
在所述第三指示信息利用所述UCI中新增的信令域表示的情况下,所述 第三指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第三指示信息与所述目标信令域中已有的信令比特联合编码;在所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第三指示信息利用所述目标信令域的编码方式进行编码。
相关技术中,UCI中已有的信令域包括:调度请求(Scheduling Request,SR);应答/非应答(ACK/NACK);CSI报告(包括:RI、PMI、CQI、波束测量结果等)。其中,所述UCI已有的目标信令域包括但不限于为CSI报告的第一部分(part1)中的信令域。
以第一指示信息为例,可以在UCI中新增信令域,并利用该新增的信令域表示第一指示信息。假设,PUCCH格式1(PUCCH format 1)携带的UCI信息为ACK/NACK,且长度为2比特。在此,新增信令域,且其长度为N(N为正整数),此时UCI携带了两个信令域,即新增的信令域和ACK/NACK信令域。此时,该新增信令域可单独编码,或者和已有的ACK/NACK信令域联合编码。
或者,第一信令域利用所述UCI已有的目标信令域中新增的信令比特表示。例如,该目标信令域为ACK/NACK,那么可在ACK/NACK信令域中增加M个(M为正整数)比特,则该ACK/NACK信令域的长度为M+2比特。此时,该新增的M比特和已有的2比特ACK/NACK联合编码。
以第一位图为例,第一位图中的比特个数与报告个数相等,每个比特依次对应报告索引(如CC索引等来表示),该对应关系可以是默认的索引大小顺序或网络配置的顺序。每个比特为1表示上报了该比特对应的报告,为0则表示没有上报。新增的信令比特可以放置于UCI中的CSI报告之外或者将新增信令比特放在CSI报告的part1中。新增的信令比特可以单独编码,再与其它UCI内容共同发送给网络侧设备。或者,新增的信令比特与其它UCI信令联合编码,如与CSI报告联合编码。
在上述方式(2)和方式(3)下,如果终端上报的基于事件的波束报告和/或基于事件的CSI报告为多个,那么终端的处理方式可参照在方式(1)中终端的处理方式。
若终端不进行上述指示,那么,网络侧设备对所述终端上报的所述基于事件的波束报告和/或所述基于事件的CSI报告进行盲检,确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告。
由上可以看出,在本公开实施例中,在测量结果变化较小时,终端不需上报波束报告和/或CSI报告,进而可节省资源开销,并有利于终端省电。
参见图2,图2是本公开实施例提供的信息处理方法的流程图,应用于网络侧设备。如图2所示,该方法包括以下步骤:
步骤201、接收终端上报的基于事件的波束报告和/或基于事件的CSI报告。
具体的,网络侧设备可接收所述终端利用PUCCH上报的所述基于事件的波束报告和/或所述基于事件的CSI报告;或者接收所述终端利用半持续调度的PUSCH上报的所述基于事件的波束报告和/或所述基于事件的CSI报告;或者接收所述终端利用MAC CE上报的所述基于事件的波束报告和/或所述基于事件的CSI报告。
由上可以看出,终端基于对上报触发事件的检测确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告,从而可节约通信资源。
其中,为提高上报效率,进一步节约资源,在步骤201之前,所述方法还包括:向所述终端发送第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。
具体的,网络侧设备可通过如下方式向所述终端发送第一信息:通过DCI向所述终端发送第一信息;或者通过MAC CE向所述终端发送第一信息;或者通过RRC向所述终端发送第一信息。
其中,为进一步节约资源,在所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告的情况下,和/或,在所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的CSI报告的情况下,所述方法还包括:
网络侧设备接收所述终端的UCI;根据所述UCI确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告。其中,所述 UCI中包括以下至少一项信息:第一指示信息,所述第一指示信息用于表示所述终端向所述网络侧设备上报的基于事件的波束报告的信息;第二指示信息,所述第二指示信息用于表示所述终端向所述网络侧设备上报的基于事件的CSI报告的信息;第三指示信息,所述第三指示信息用于表示所述终端向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
其中,为进一步节约资源,所述方法还包括:网络侧设备对所述终端上报的所述基于事件的波束报告和/或所述基于事件的CSI报告进行盲检,确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告。
由上可以看出,在本公开实施例中,在测量结果变化较小时,终端不需上报波束报告和/或CSI报告,进而可节省资源开销,并有利于终端省电。
参见图3,图3是本公开实施例提供的终端的结构图。如图3所示,终端300包括:
上报模块301,用于基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
其中,所述上报模块301用于,在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
可选的,所述终端还可包括:第一接收模块,用于接收所述网络侧设备的第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。此时,所述上报模块301具体用于,在所述第一信息用于表示开启基于事件的报告的情况下,以及在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;在所述第一信息用于表示关闭基于事件的报告的情况下,向所述网络侧设备上报波束报告和/或CSI报告。
可选的,所述第一接收模块用于:通过DCI接收所述网络侧设备的所述 第一信息;或者通过MAC CE接收所述网络侧设备的所述第一信息;或者通过RRC接收所述网络侧设备的所述第一信息。
可选的,所述上报模块在向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告时,利用PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;或者利用半持续调度的PUSCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;或者利用MAC CE向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。当所述PUCCH和PUSCH发生碰撞时,所述上报模块优先发送所述PUCCH和所述PUSCH中优先级较高的上行信道。
其中,所述基于事件的波束报告包括基于事件的周期波束报告或者基于事件的半持续波束报告或者基于事件的非周期波束报告;所述基于事件的CSI报告包括基于事件的周期CSI报告或者基于事件的半持续CSI报告或者基于事件的非周期CSI报告。
其中,在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告的情况下,所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告;在利用所述PUCCH向所述网络侧设备上报所述基于事件的CSI报告的情况下,所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的CSI报告;在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告和所述基于事件的CSI报告的情况下,所述基于事件的波束报告和所述基于事件的CSI报告为,所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的一个或者多个基于事件的波束报告以及一个或多个基于事件的CSI报告。
此时,所述终端还可包括:确定模块,用于从所述多个基于事件的波束报告和/或所述多个基于事件的CSI报告中,确定待上报的基于事件的波束报告和/或待上报的基于事件的CSI报告。此时,所述上报模块用于,利用所述PUCCH向所述网络侧设备上报所述待上报的基于事件的波束报告和/或所述待上报的基于事件的CSI报告。
其中,所述待上报的基于事件的波束报告为基于事件的周期波束报告、基于事件的半持续波束报告、基于事件的非周期波束报告中的任意一种或者多种;所述待上报的基于事件的CSI报告为基于事件的周期CSI报告、基于事件的半持续CSI报告、基于事件的非周期CSI报告中的任意一种或者多种。
在所述利用物理上行链路控制信道PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告的情况下,所述终端还可包括:发送模块,用于在所述基于事件的波束报告为多个的情况下,向所述网络侧设备发送上行控制信息UCI,所述UCI中包括第一指示信息,所述第一指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息;在所述基于事件的CSI报告为多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第二指示信息,所述第二指示信息用于表示向所述网络侧设备上报的基于事件的CSI报告的信息;在向所述网络侧设备上报基于事件的波束报告和基于事件的CSI报告,以及在所述基于事件的波束报告为一个或者多个、所述基于事件的CSI报告为一个或者多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第三指示信息,所述第三指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
其中,所述第一指示信息为第一位图bitmap;在所述第一bitmap中的第一比特位为第一预设值的情况下,表示向所述网络侧设备上报有所述第一比特位对应的报告;在所述第一bitmap中的第一比特位为第二预设值的情况下,表示未向所述网络侧设备上报所述第一比特位对应的报告。所述第二指示信息为第二位图bitmap;在所述第二bitmap中的第二比特位为第三预设值的情况下,表示向所述网络侧设备上报有所述第二比特位对应的报告;在所述第二bitmap中的第二比特位为第四预设值的情况下,表示未向所述网络侧设备上报所述第二比特位对应的报告。所述第三指示信息为第三位图bitmap;在所述第三bitmap中的第三比特位为第五预设值的情况下,表示向所述网络侧设备上报有所述第三比特位对应的报告;在所述第三bitmap中的第三比特位为第六预设值的情况下,表示未向所述网络侧设备上报所述第三比特位对应的报告。
其中,所述第一指示信息利用所述UCI中新增的信令域表示,或者所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示;
其中,所述第二指示信息利用所述UCI中新增的信令域表示,或者所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示;
其中,所述第三指示信息利用所述UCI中新增的信令域表示,或者所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示。
其中,在所述第一指示信息利用所述UCI中新增的信令域表示的情况下,所述第一指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第一指示信息与所述目标信令域中已有的信令比特联合编码;在所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第一指示信息利用所述目标信令域的编码方式进行编码;
其中,在所述第二指示信息利用所述UCI中新增的信令域表示的情况下,所述第二指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第二指示信息与所述目标信令域中已有的信令比特联合编码;在所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第二指示信息利用所述目标信令域的编码方式进行编码;
其中,在所述第三指示信息利用所述UCI中新增的信令域表示的情况下,所述第三指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第三指示信息与所述目标信令域中已有的信令比特联合编码;在所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第三指示信息利用所述目标信令域的编码方式进行编码。
终端300能够实现图1至图2的方法实施例中终端实现的各个过程,为避免重复,这里不再赘述。
由上可以看出,终端基于对上报触发事件的检测确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告,从而可节约通信资源。
图4为实现本公开各个实施例的一种终端的硬件结构示意图。该终端400包括但不限于:射频单元401、网络模块402、音频输出单元403、输入单元404、传感器405、显示单元406、用户输入单元407、接口单元408、存储器409、处理器410,以及电源411等部件。本领域技术人员可以理解,图4中示出的终端结构并不构成对终端的限定,终端可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。在本公开实施例中,终端包括但不限于手机、平板电脑、笔记本电脑、掌上电脑、车载终端、可穿戴设备,以及计步器等。
其中,处理器410,用于基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
由上可以看出,终端基于对上报触发事件的检测确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告,从而可节约通信资源。
其中,处理器410,用于在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
其中,处理器410,用于接收所述网络侧设备的第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。
其中,处理器410,用于在所述第一信息用于表示开启基于事件的报告的情况下,以及在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;在所述第一信息用于表示关闭基于事件的报告的情况下,向所述网络侧设备上报波束报告和/或CSI报告。
其中,处理器410,用于通过下行控制信息DCI接收所述网络侧设备的所述第一信息;或者通过媒体接入控制MAC控制元素CE接收所述网络侧设备的所述第一信息;或者通过无线资源控制RRC接收所述网络侧设备的所 述第一信息。
其中,处理器410,用于利用物理上行链路控制信道PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;或者利用半持续调度的物理上行共享信道PUSCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;或者利用MAC CE向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
其中,处理器410,用于当所述PUCCH和PUSCH发生碰撞时,优先发送所述PUCCH和所述PUSCH中优先级较高的上行信道。
其中,所述基于事件的波束报告包括基于事件的周期波束报告或者基于事件的半持续波束报告或者基于事件的非周期波束报告;所述基于事件的CSI报告包括基于事件的周期CSI报告或者基于事件的半持续CSI报告或者基于事件的非周期CSI报告。
其中,在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告的情况下,所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告;在利用所述PUCCH向所述网络侧设备上报所述基于事件的CSI报告的情况下,所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的CSI报告;在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告和所述基于事件的CSI报告的情况下,所述基于事件的波束报告和所述基于事件的CSI报告为,所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的一个或者多个基于事件的波束报告以及一个或多个基于事件的CSI报告。
其中,处理器410,用于从所述多个基于事件的波束报告和/或所述多个基于事件的CSI报告中,确定待上报的基于事件的波束报告和/或待上报的基于事件的CSI报告;利用所述PUCCH向所述网络侧设备上报所述待上报的基于事件的波束报告和/或所述待上报的基于事件的CSI报告。
所述待上报的基于事件的波束报告为基于事件的周期波束报告、基于事件的半持续波束报告、基于事件的非周期波束报告中的任意一种或者多种;所述待上报的基于事件的CSI报告为基于事件的周期CSI报告、基于事件的 半持续CSI报告、基于事件的非周期CSI报告中的任意一种或者多种。
其中,处理器410,用于在所述基于事件的波束报告为多个的情况下,向所述网络侧设备发送上行控制信息UCI,所述UCI中包括第一指示信息,所述第一指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息;在所述基于事件的CSI报告为多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第二指示信息,所述第二指示信息用于表示向所述网络侧设备上报的基于事件的CSI报告的信息;在向所述网络侧设备上报基于事件的波束报告和基于事件的CSI报告,以及在所述基于事件的波束报告为一个或者多个、所述基于事件的CSI报告为一个或者多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第三指示信息,所述第三指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
所述第一指示信息为第一位图bitmap;在所述第一bitmap中的第一比特位为第一预设值的情况下,表示向所述网络侧设备上报有所述第一比特位对应的报告;在所述第一bitmap中的第一比特位为第二预设值的情况下,表示未向所述网络侧设备上报所述第一比特位对应的报告;
所述第二指示信息为第二位图bitmap;在所述第二bitmap中的第二比特位为第三预设值的情况下,表示向所述网络侧设备上报有所述第二比特位对应的报告;在所述第二bitmap中的第二比特位为第四预设值的情况下,表示未向所述网络侧设备上报所述第二比特位对应的报告;
所述第三指示信息为第三位图bitmap;在所述第三bitmap中的第三比特位为第五预设值的情况下,表示向所述网络侧设备上报有所述第三比特位对应的报告;在所述第三bitmap中的第三比特位为第六预设值的情况下,表示未向所述网络侧设备上报所述第三比特位对应的报告。
其中,所述第一指示信息利用所述UCI中新增的信令域表示,或者所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示;
其中,所述第二指示信息利用所述UCI中新增的信令域表示,或者所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者 所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示;
其中,所述第三指示信息利用所述UCI中新增的信令域表示,或者所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示。
其中,在所述第一指示信息利用所述UCI中新增的信令域表示的情况下,所述第一指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第一指示信息与所述目标信令域中已有的信令比特联合编码;在所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第一指示信息利用所述目标信令域的编码方式进行编码;
其中,在所述第二指示信息利用所述UCI中新增的信令域表示的情况下,所述第二指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第二指示信息与所述目标信令域中已有的信令比特联合编码;在所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第二指示信息利用所述目标信令域的编码方式进行编码;
其中,在所述第三指示信息利用所述UCI中新增的信令域表示的情况下,所述第三指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第三指示信息与所述目标信令域中已有的信令比特联合编码;在所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第三指示信息利用所述目标信令域的编码方式进行编码。
应理解的是,本公开实施例中,射频单元401可用于收发信息或通话过程中,信号的接收和发送,具体的,将来自基站的下行数据接收后,给处理器410处理;另外,将上行的数据发送给基站。通常,射频单元401包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。此外,射频单元401还可以通过无线通信***与网络和其他设备通信。
终端通过网络模块402为用户提供了无线的宽带互联网访问,如帮助用户收发电子邮件、浏览网页和访问流式媒体等。
音频输出单元403可以将射频单元401或网络模块402接收的或者在存储器409中存储的音频数据转换成音频信号并且输出为声音。而且,音频输出单元403还可以提供与终端400执行的特定功能相关的音频输出(例如,呼叫信号接收声音、消息接收声音等等)。音频输出单元403包括扬声器、蜂鸣器以及受话器等。
输入单元404用于接收音频或视频信号。输入单元404可以包括GPU(Graphics Processing Unit,图形处理器)4041和麦克风4042,图形处理器4041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。处理后的图像帧可以显示在显示单元406上。经图形处理器4041处理后的图像帧可以存储在存储器409(或其它存储介质)中或者经由射频单元401或网络模块402进行发送。麦克风4042可以接收声音,并且能够将这样的声音处理为音频数据。处理后的音频数据可以在电话通话模式的情况下转换为可经由射频单元401发送到移动通信基站的格式输出。
终端400还包括至少一种传感器405,比如光传感器、运动传感器以及其他传感器。具体地,光传感器包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示面板4061的亮度,接近传感器可在终端400移动到耳边时,关闭显示面板4061和/或背光。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别终端姿态(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;传感器405还可以包括指纹传感器、压力传感器、虹膜传感器、分子传感器、陀螺仪、气压计、湿度计、温度计、红外线传感器等,在此不再赘述。
显示单元406用于显示由用户输入的信息或提供给用户的信息。显示单元406可包括显示面板4061,可以采用液晶显示器(Liquid Crystal Display,LCD)、有机发光二极管(Organic Light-Emitting Diode,OLED)等形式来配置显示面板4061。
用户输入单元407可用于接收输入的数字或字符信息,以及产生与终端的用户设置以及功能控制有关的键信号输入。具体地,用户输入单元407包 括触控面板4071以及其他输入设备4072。触控面板4071,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板4071上或在触控面板4071附近的操作)。触控面板4071可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器410,接收处理器410发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板4071。除了触控面板4071,用户输入单元407还可以包括其他输入设备4072。具体地,其他输入设备4072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
进一步的,触控面板4071可覆盖在显示面板4061上,当触控面板4071检测到在其上或附近的触摸操作后,传送给处理器410以确定触摸事件的类型,随后处理器410根据触摸事件的类型在显示面板4061上提供相应的视觉输出。虽然在图4中,触控面板4071与显示面板4061是作为两个独立的部件来实现终端的输入和输出功能,但是在某些实施例中,可以将触控面板4071与显示面板4061集成而实现终端的输入和输出功能,具体此处不做限定。
接口单元408为外部装置与终端400连接的接口。例如,外部装置可以包括有线或无线头戴式耳机端口、外部电源(或电池充电器)端口、有线或无线数据端口、存储卡端口、用于连接具有识别模块的装置的端口、音频输入/输出(I/O)端口、视频I/O端口、耳机端口等等。接口单元408可以用于接收来自外部装置的输入(例如,数据信息、电力等等)并且将接收到的输入传输到终端400内的一个或多个元件或者可以用于在终端400和外部装置之间传输数据。
存储器409可用于存储软件程序以及各种数据。存储器409可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作***、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据手机的使用所创建的数据(比如音频数据、电话本等)等。此外, 存储器409可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件,或其他易失性固态存储器件。
处理器410是终端的控制中心,利用各种接口和线路连接整个终端的各个部分,通过运行或执行存储在存储器409内的软件程序和/或模块,以及调用存储在存储器409内的数据,执行终端的各种功能和处理数据,从而对终端进行整体监控。处理器410可包括一个或多个处理单元;可选的,处理器410可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作***、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器410中。
终端400还可以包括给各个部件供电的电源411(比如电池),可选的,电源411可以通过电源管理***与处理器410逻辑相连,从而通过电源管理***实现管理充电、放电,以及功耗管理等功能。
另外,终端400包括一些未示出的功能模块,在此不再赘述。
如图5所示,本公开实施例的信息处理装置500包括:
第一接收模块501,用于接收终端上报的基于事件的波束报告和/或基于事件的CSI报告。
可选的,第一接收模块501,用于接收所述终端利用PUCCH上报的所述基于事件的波束报告和/或所述基于事件的CSI报告;或者接收所述终端利用半持续调度的PUSCH上报的所述基于事件的波束报告和/或所述基于事件的CSI报告;或者接收所述终端利用MAC CE上报的所述基于事件的波束报告和/或所述基于事件的CSI报告。
可选的,所述信息处理装置500还可包括:第一发送模块,用于向所述终端发送第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。具体的,所述第一发送模块用于,通过DCI向所述终端发送所述第一信息;或者通过MAC CE向所述终端发送所述第一信息;或者通过RRC向所述终端发送所述第一信息。
可选的,在所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告的情况下,和/或,在所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所 述网络侧设备通过DCI触发的多个基于事件的CSI报告的情况下,所述信息处理装置500还可包括:第二接收模块,用于接收所述终端的UCI;确定模块,用于根据所述UCI确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告。
其中,所述UCI中包括以下至少一项信息:第一指示信息,所述第一指示信息用于表示所述终端向所述网络侧设备上报的基于事件的波束报告的信息;第二指示信息,所述第二指示信息用于表示所述终端向所述网络侧设备上报的基于事件的CSI报告的信息;第三指示信息,所述第三指示信息用于表示所述终端向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
所述信息处理装置500还可包括:检测模块,用于对所述终端上报的所述基于事件的波束报告和/或所述基于事件的CSI报告进行盲检,确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告。
信息处理装置500能够实现图1至图2的方法实施例中网络侧设备实现的各个过程,为避免重复,这里不再赘述。
由上可以看出,终端基于对上报触发事件的检测确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的CSI报告,从而可节约通信资源。
可选的,本公开实施例还提供一种通信设备,包括处理器,存储器,存储在存储器上并可在所述处理器上运行的计算机程序,该计算机程序被处理器执行时实现上述信息处理方法的任一实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
本公开实施例还提供一种计算机可读存储介质,计算机可读存储介质上存储有计算机程序,该计算机程序被处理器执行时实现上述信息处理方法的任一实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,所述的计算机可读存储介质,如只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包 括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对现有技术做出贡献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(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本公开各个实施例所述的方法。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本公开的保护之内。

Claims (25)

  1. 一种信息处理方法,应用于终端,包括:
    基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
  2. 根据权利要求1所述的方法,其中,所述基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告,包括:
    在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
  3. 根据权利要求1所述的方法,其中,在所述基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告之前,所述方法还包括:
    接收所述网络侧设备的第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。
  4. 根据权利要求3所述的方法,其中,所述基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告,包括:
    在所述第一信息用于表示开启基于事件的报告的情况下,以及在发生了所述上报触发事件的情况下,向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,或者停止向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;
    在所述第一信息用于表示关闭基于事件的报告的情况下,向所述网络侧设备上报波束报告和/或CSI报告。
  5. 根据权利要求3所述的方法,其中,所述接收所述网络侧设备的第一信息,包括:
    通过下行控制信息DCI接收所述网络侧设备的所述第一信息;或者
    通过媒体接入控制MAC控制元素CE接收所述网络侧设备的所述第一 信息;或者
    通过无线资源控制RRC接收所述网络侧设备的所述第一信息。
  6. 根据权利要求2-5中任一项所述的方法,其中,所述向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,包括:
    利用物理上行链路控制信道PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;或者
    利用半持续调度的物理上行共享信道PUSCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告;或者
    利用MAC CE向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告。
  7. 根据权利要求6所述的方法,其中,在所述利用物理上行链路控制信道PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告的情况下,所述方法还包括:
    当所述PUCCH和PUSCH发生碰撞时,优先发送所述PUCCH和所述PUSCH中优先级较高的上行信道。
  8. 根据权利要求6所述的方法,其中,
    所述基于事件的波束报告包括基于事件的周期波束报告或者基于事件的半持续波束报告或者基于事件的非周期波束报告;
    所述基于事件的CSI报告包括基于事件的周期CSI报告或者基于事件的半持续CSI报告或者基于事件的非周期CSI报告。
  9. 根据权利要求6所述的方法,其中,
    在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告的情况下,所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告;
    在利用所述PUCCH向所述网络侧设备上报所述基于事件的CSI报告的情况下,所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的CSI报告;
    在利用所述PUCCH向所述网络侧设备上报所述基于事件的波束报告和所述基于事件的CSI报告的情况下,所述基于事件的波束报告和所述基于事 件的CSI报告为,所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的一个或者多个基于事件的波束报告以及一个或多个基于事件的CSI报告。
  10. 根据权利要求9所述的方法,还包括:
    从所述多个基于事件的波束报告和/或所述多个基于事件的CSI报告中,确定待上报的基于事件的波束报告和/或待上报的基于事件的CSI报告;
    所述利用物理上行链路控制信道PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告,包括:
    利用所述PUCCH向所述网络侧设备上报所述待上报的基于事件的波束报告和/或所述待上报的基于事件的CSI报告。
  11. 根据权利要求10所述的方法,其中,
    所述待上报的基于事件的波束报告为基于事件的周期波束报告、基于事件的半持续波束报告、基于事件的非周期波束报告中的任意一种或者多种;
    所述待上报的基于事件的CSI报告为基于事件的周期CSI报告、基于事件的半持续CSI报告、基于事件的非周期CSI报告中的任意一种或者多种。
  12. 根据权利要求6所述的方法,其中,在所述利用物理上行链路控制信道PUCCH向所述网络侧设备上报所述基于事件的波束报告和/或所述基于事件的CSI报告的情况下,所述方法还包括以下至少一个步骤:
    在所述基于事件的波束报告为多个的情况下,向所述网络侧设备发送上行控制信息UCI,所述UCI中包括第一指示信息,所述第一指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息;
    在所述基于事件的CSI报告为多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第二指示信息,所述第二指示信息用于表示向所述网络侧设备上报的基于事件的CSI报告的信息;
    在向所述网络侧设备上报基于事件的波束报告和基于事件的CSI报告,以及在所述基于事件的波束报告为一个或者多个、所述基于事件的CSI报告为一个或者多个的情况下,向所述网络侧设备发送UCI,所述UCI中包括第三指示信息,所述第三指示信息用于表示向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
  13. 根据权利要求12所述的方法,其中,
    所述第一指示信息为第一位图bitmap;在所述第一bitmap中的第一比特位为第一预设值的情况下,表示向所述网络侧设备上报有所述第一比特位对应的报告;在所述第一bitmap中的第一比特位为第二预设值的情况下,表示未向所述网络侧设备上报所述第一比特位对应的报告;
    所述第二指示信息为第二位图bitmap;在所述第二bitmap中的第二比特位为第三预设值的情况下,表示向所述网络侧设备上报有所述第二比特位对应的报告;在所述第二bitmap中的第二比特位为第四预设值的情况下,表示未向所述网络侧设备上报所述第二比特位对应的报告;
    所述第三指示信息为第三位图bitmap;在所述第三bitmap中的第三比特位为第五预设值的情况下,表示向所述网络侧设备上报有所述第三比特位对应的报告;在所述第三bitmap中的第三比特位为第六预设值的情况下,表示未向所述网络侧设备上报所述第三比特位对应的报告。
  14. 根据权利要求12所述的方法,其中,
    所述第一指示信息利用所述UCI中新增的信令域表示,或者所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示;
    所述第二指示信息利用所述UCI中新增的信令域表示,或者所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示;
    所述第三指示信息利用所述UCI中新增的信令域表示,或者所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示,或者所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示。
  15. 根据权利要求14所述的方法,其中,
    在所述第一指示信息利用所述UCI中新增的信令域表示的情况下,所述第一指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第一指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第一指示信息与所述目标信令域中已有的信令比特联合编码;在所述第一指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下, 所述第一指示信息利用所述目标信令域的编码方式进行编码;
    在所述第二指示信息利用所述UCI中新增的信令域表示的情况下,所述第二指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第二指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第二指示信息与所述目标信令域中已有的信令比特联合编码;在所述第二指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第二指示信息利用所述目标信令域的编码方式进行编码;
    在所述第三指示信息利用所述UCI中新增的信令域表示的情况下,所述第三指示信息单独编码或与所述UCI已有的信令域联合编码;在所述第三指示信息利用所述UCI已有的目标信令域中新增的信令比特表示的情况下,所述第三指示信息与所述目标信令域中已有的信令比特联合编码;在所述第三指示信息利用所述目标信令域中已有的信令比特的未使用状态表示的情况下,所述第三指示信息利用所述目标信令域的编码方式进行编码。
  16. 一种信息处理方法,应用于网络侧设备,包括:
    接收终端上报的基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
  17. 根据权利要求16所述的方法,其中,所述接收终端上报的基于事件的波束报告和/或基于事件的CSI报告,包括:
    接收所述终端利用物理上行链路控制信道PUCCH上报的所述基于事件的波束报告和/或所述基于事件的CSI报告;或者
    接收所述终端利用半持续调度的物理上行共享信道PUSCH上报的所述基于事件的波束报告和/或所述基于事件的CSI报告;或者
    接收所述终端利用媒体接入控制MAC控制元素CE上报的所述基于事件的波束报告和/或所述基于事件的CSI报告。
  18. 根据权利要求16所述的方法,其中,在所述接收终端上报的基于事件的波束报告和/或基于事件的CSI报告之前,所述方法还包括:
    向所述终端发送第一信息;其中,所述第一信息用于表示是否开启基于事件的报告。
  19. 根据权利要求18所述的方法,其中,所述向所述终端发送第一信息, 包括:
    通过下行控制信息DCI向所述终端发送所述第一信息;或者
    通过MAC CE向所述终端发送所述第一信息;或者
    通过无线资源控制RRC向所述终端发送所述第一信息。
  20. 根据权利要求16所述的方法,其中,在所述基于事件的波束报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的波束报告的情况下,和/或,在所述基于事件的CSI报告为所述网络侧设备通过RRC配置的或者所述网络侧设备通过DCI触发的多个基于事件的CSI报告的情况下,所述方法还包括:
    接收所述终端的上行控制信息UCI;
    根据所述UCI确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告;
    其中,所述UCI中包括以下至少一项信息:
    第一指示信息,所述第一指示信息用于表示所述终端向所述网络侧设备上报的基于事件的波束报告的信息;
    第二指示信息,所述第二指示信息用于表示所述终端向所述网络侧设备上报的基于事件的CSI报告的信息;
    第三指示信息,所述第三指示信息用于表示所述终端向所述网络侧设备上报的基于事件的波束报告的信息以及基于事件的CSI报告的信息。
  21. 根据权利要求16所述的方法,还包括:
    对所述终端上报的所述基于事件的波束报告和/或所述基于事件的CSI报告进行盲检,确定所述终端实际上报的基于事件的波束报告和/或实际上报的基于事件的CSI报告。
  22. 一种终端,包括:
    上报模块,用于基于对上报触发事件的检测,确定是否向网络侧设备上报基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
  23. 一种信息处理装置,包括:
    接收模块,用于接收终端上报的基于事件的波束报告和/或基于事件的信道状态信息CSI报告。
  24. 一种通信设备,包括:存储器、处理器及存储在存储器上并可在处理器上运行的程序,所述程序被所述处理器执行时实现如权利要求1至15中任一项所述的信息处理方法中的步骤,或实现如权利要求16至21中任一项所述的信息处理方法中的步骤。
  25. 一种计算机可读存储介质,其中,所述计算机可读存储介质上存储有程序,所述程序被处理器执行时实现如权利要求1至15中任一项所述的信息处理方法中的步骤,或实现如权利要求16至21中任一项所述的信息处理方法中的步骤。
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