WO2021027387A1 - Procédé de rapport d'informations de capacité et terminal - Google Patents

Procédé de rapport d'informations de capacité et terminal Download PDF

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Publication number
WO2021027387A1
WO2021027387A1 PCT/CN2020/096138 CN2020096138W WO2021027387A1 WO 2021027387 A1 WO2021027387 A1 WO 2021027387A1 CN 2020096138 W CN2020096138 W CN 2020096138W WO 2021027387 A1 WO2021027387 A1 WO 2021027387A1
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WO
WIPO (PCT)
Prior art keywords
capabilities
capability
terminal
information
card
Prior art date
Application number
PCT/CN2020/096138
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English (en)
Chinese (zh)
Inventor
邝奕如
薛祎凡
王键
徐海博
Original Assignee
华为技术有限公司
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Publication of WO2021027387A1 publication Critical patent/WO2021027387A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/20Transfer of user or subscriber data
    • H04W8/205Transfer to or from user equipment or user record carrier
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/51Allocation or scheduling criteria for wireless resources based on terminal or device properties
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/20Transfer of user or subscriber data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/22Processing or transfer of terminal data, e.g. status or physical capabilities
    • H04W8/24Transfer of terminal data

Definitions

  • the embodiments of the present application relate to the field of communications, and in particular, to a method and terminal for reporting capability information.
  • UE User Equipment
  • UE capability information UE capability information
  • the UE reports the capability information, so that the base station can coordinate the transmission resources based on the capability information reported by the UE, and try to achieve the optimal resource scheduling plan.
  • UE capability information UE capability information
  • This application provides a complete and flexible method for reporting capability information, and a corresponding terminal.
  • an embodiment of the present application provides a method for reporting capability information.
  • the method may include: a terminal sends first capability information to a network device, the first capability information may be used to indicate one or more first capabilities supported by the terminal .
  • the terminal sends second capability information to the network device.
  • the second capability information may be used to indicate one or more second capabilities supported by the terminal, and at least one of the one or more first capabilities and the one or more second capabilities At least one of them is not the same.
  • the terminal may also send time information to the network device for instructing to alternately use one or more first capabilities and one or more second capabilities.
  • the network device may be a base station.
  • the foregoing first capability information, second capability information, and time information may be sent to the base station at the same time, or may be sent to the base station in a sequential order.
  • the specific sending method will be described in detail in the specific embodiment.
  • this application proposes a complete and flexible method for reporting capability information, which enables the terminal to use one capability alone (for example, one or more first capabilities) and alternately use multiple capabilities (using one or more first capabilities alternately). Choose between multiple first capabilities and one or more second capabilities) according to requirements.
  • the time information is also used to indicate the allocation of one or more time domain resources of the first capability and one or more time domain resources of the second capability.
  • the terminal can alternately use one or more first capabilities and one or more second capabilities according to the time domain resource allocation situation indicated by the time information.
  • the first capability information, the second capability information, and the time information are carried in the first message; the method may further include: the terminal sends a second message to the network device, the second message contains indication information, To indicate that the terminal desires to alternately use one or more first capabilities and one or more second capabilities.
  • the terminal can select different reporting methods according to different scenarios, which improves the flexibility of reporting capability information.
  • the first capability information is carried in a first message
  • the second capability information and time information are carried in a second message.
  • the terminal can select different reporting methods according to different scenarios, which improves the flexibility of reporting capability information.
  • the first capability information and the second capability information are carried in the first message; the time information is carried in the second message.
  • the terminal can select different reporting methods according to different scenarios, which improves the flexibility of reporting capability information.
  • the second message is also used to indicate that the terminal desires to alternately use one or more first capabilities and one or more second capabilities.
  • the terminal can select different reporting methods according to different scenarios, which improves the flexibility of reporting capability information.
  • the second message is sent when one or more first capabilities supported by the terminal are updated to one or more second capabilities.
  • the terminal can select different reporting methods according to different scenarios, which improves the flexibility of reporting capability information.
  • the number of one or more second capabilities is different from the number of one or more first capabilities; and/or, the capability value of one or more second capabilities is different from the number of one or more first capabilities.
  • the ability value of one ability is different.
  • the capability information is updated, that is, in this application, it can be the update of the number of capabilities, or the update of the capability value of the ability, which can be set according to actual needs, and this application does not make advance decisions. .
  • the first capability information includes one or more first capability parameters, and the one or more first capability parameters are used to indicate one or more first capabilities;
  • the second capability information includes one or more Second capability parameter; wherein, one or more second capability parameters are used to indicate one or more second capabilities; or, one or more second capability parameters are used to indicate that they are different from one or more first capabilities
  • the second capability information is also used to instruct the terminal to support one or more of the first capabilities other than the first capability corresponding to the one or more target second capabilities.
  • One ability is also used to instruct the terminal to support one or more of the first capabilities other than the first capability corresponding to the one or more target second capabilities.
  • the terminal can notify the peer (network device) terminal of the capability corresponding to the parameter that it expects to use by reporting the parameter corresponding to the capability it expects to use.
  • the manner of reporting the second capability information may be: reporting all parameters corresponding to the second capability.
  • the manner of reporting the second capability information may also be to report the updated parameters of the second capability corresponding to the first capability, thereby reducing network and device pressure.
  • the one or more second capability parameters are one or more second capability parameters under one or more frequency band combinations, and the one or more frequency band combinations are all frequency band combinations supported by the terminal, or , One or more frequency band combinations are frequency band combinations with changed capabilities, or one or more frequency band combinations are frequency band combinations currently used by the terminal; correspondingly, the method further includes: the terminal sends frequency band combination information to the network device for indicating a Or a combination of multiple frequency bands.
  • the terminal can report the frequency band combination supported by it in different ways, and the ability under the frequency band combination.
  • the method further includes: the terminal receives confirmation instruction information sent by the network device, the confirmation instruction information is used to confirm that the terminal performs alternate use of the first capability and the second capability; and the terminal performs alternate use of the first capability and the second capability. Two capabilities.
  • the terminal can initiate a manner in which one or more first capabilities and one or more second capabilities are alternately used.
  • the method may further include: the terminal sends restoration instruction information to the network device, where the restoration instruction information is used to indicate that the capabilities supported by the terminal are restored to one or more first capabilities.
  • the terminal can flexibly choose between using the first capability set or alternately using the first capability set and the second capability set.
  • one or more first capabilities and one or more second capabilities are uplink capabilities supported by the terminal; or, one or more first capabilities and one or more second capabilities are terminal Supported downlink capabilities.
  • the terminal can flexibly select the required capability information reporting method when sending uplink data and/or receiving downlink data.
  • the first capability information or the second capability information includes at least one of the following: packet data convergence protocol parameters of the terminal, radio link layer control parameters of the terminal, medium access control parameters of the terminal, and Physical layer parameters, terminal radio frequency parameters, terminal measurement parameters.
  • the embodiments of the present application provide a method for reporting capability information, which can be applied to a terminal, where the terminal includes a first SIM card and a second SIM card, and the method may include: when the first SIM card communicates , The first SIM card uses one or more first capabilities; when the first SIM card communicates with the second SIM card at the same time, the first SIM card alternately uses one or more first capabilities and one or more second capabilities, Wherein, at least one of the one or more first capabilities is different from at least one of the one or more second capabilities.
  • the alternate use of one or more first capabilities and one or more second capabilities by the first SIM includes: the first SIM card uses one or more first capabilities in the first time period, and the terminal One or more second abilities are used in the second time period, and the first time period and the second time period alternate.
  • an embodiment of the present application provides a terminal.
  • the terminal may include: a memory and a processor, and the memory is coupled with the processor; the memory stores program instructions, and when the program instructions are executed by the processor, the terminal executes the following steps:
  • the network device sends first capability information to indicate one or more first capabilities supported by the terminal; and sends second capability information to the network device to indicate one or more second capabilities supported by the terminal, and one or more first capabilities At least one of the one capability is different from at least one of the one or more second capabilities; sending time information to the network device to indicate that one or more first capabilities and one or more second capabilities are alternately used.
  • the time information is also used to indicate the allocation of one or more time domain resources of the first capability and one or more time domain resources of the second capability.
  • the first capability information, the second capability information, and the time information are carried in the first message; the program instructions can also cause the terminal to perform the following steps: send a second message to the network device, the second message contains The indication information is used to indicate that the terminal expects to alternately use one or more first capabilities and one or more second capabilities.
  • the first capability information is carried in a first message
  • the second capability information and time information are carried in a second message.
  • the first capability information and the second capability information are carried in the first message; the time information is carried in the second message.
  • the second message is also used to indicate that the terminal desires to alternately use one or more first capabilities and one or more second capabilities.
  • the second message is sent when one or more first capabilities supported by the terminal are updated to one or more second capabilities.
  • the number of one or more second capabilities is different from the number of one or more first capabilities; and/or, the capability value of one or more second capabilities is different from the number of one or more first capabilities.
  • the ability value of one ability is different.
  • the first capability information includes one or more first capability parameters, and the one or more first capability parameters are used to indicate one or more first capabilities;
  • the second capability information includes one or more Second capability parameter; wherein, one or more second capability parameters are used to indicate one or more second capabilities; or, one or more second capability parameters are used to indicate that they are different from one or more first capabilities
  • the second capability information is also used to instruct the terminal to support one or more of the first capabilities other than the first capability corresponding to the one or more target second capabilities.
  • One ability is also used to instruct the terminal to support one or more of the first capabilities other than the first capability corresponding to the one or more target second capabilities.
  • the one or more second capability parameters are one or more second capability parameters under one or more frequency band combinations, and the one or more frequency band combinations are all frequency band combinations supported by the terminal, or , One or more frequency band combinations are frequency band combinations with changed capabilities, or one or more frequency band combinations are frequency band combinations currently used by the terminal; correspondingly, the program instructions are also used to support the terminal to perform the following steps: send the frequency band combination to the network device Information, used to indicate one or more frequency band combinations.
  • the program instructions are also used to support the terminal to perform the following steps: receive confirmation instructions sent by the network device, the confirmation instructions are used to confirm that the terminal performs alternate use of the first capability and the second capability; perform alternate use The first ability and the second ability.
  • the program instructions are also used to support the terminal to perform the following steps: send recovery instruction information to the network device, and the recovery instruction information is used to indicate that the capabilities supported by the terminal are restored to one or more first capabilities.
  • one or more first capabilities and one or more second capabilities are uplink capabilities supported by the terminal; or, one or more first capabilities and one or more second capabilities are terminal Supported downlink capabilities.
  • the first capability information or the second capability information includes at least one of the following: packet data convergence protocol parameters of the terminal, radio link layer control parameters of the terminal, medium access control parameters of the terminal, and Physical layer parameters, terminal radio frequency parameters, terminal measurement parameters.
  • an embodiment of the present application provides a terminal, which may include a first SIM card and a second SIM card; wherein, when the first SIM card communicates, the first SIM card uses one or more first capabilities; When the first SIM card communicates with the second SIM card at the same time, the first SIM card alternately uses one or more first capabilities and one or more second capabilities, wherein at least one of the one or more first capabilities and At least one of the one or more second capabilities is not the same.
  • the first SIM card uses one or more first capabilities in the first time period
  • the terminal uses one or more second capabilities in the second time period.
  • the first time period and the second time period The segments appear alternately.
  • an embodiment of the present application provides a method for reporting capability information.
  • the method may include: a terminal sends first capability information to a network device, where the first capability information includes one or more first capability parameters, The first capability information is used to indicate that the terminal expects to use one or more first capabilities; the terminal sends second capability information to the network device, and the second capability information includes one or more second capability parameters.
  • the capability information is used to indicate that the terminal expects to use one or more second capabilities; wherein at least one of the one or more first capabilities is different from at least one of the one or more second capabilities.
  • one or more second capability parameters are used to indicate one or more second capabilities.
  • one or more second capability parameters are used to indicate one or more target second capabilities that are different from one or more first capabilities, and correspondingly, the second capability information is also used to indicate The terminal supports other first capabilities among the one or more first capabilities except the first capabilities corresponding to the one or more target second capabilities.
  • the one or more second capability parameters are one or more second capability parameters under one or more frequency band combinations, and the one or more frequency band combinations are all frequency band combinations supported by the terminal, or, One or more frequency band combinations are frequency band combinations with changed capabilities, or one or more frequency band combinations are frequency band combinations currently used by the terminal; correspondingly, the method further includes: the terminal sends frequency band combination information to the network device to indicate A combination of one or more frequency bands.
  • the second capability information is sent when one or more first capabilities that the terminal expects to use are updated to one or more second capabilities.
  • the number of one or more second capabilities is different from the number of one or more first capabilities; and/or, the capability value of one or more second capabilities is different from the number of one or more first capabilities.
  • the ability value of one ability is different.
  • one or more first capabilities and one or more second capabilities are uplink capabilities supported by the terminal; or, one or more first capabilities and one or more second capabilities are terminal Supported downlink capabilities.
  • the first capability information or the second capability information includes at least one of the following: packet data convergence protocol parameters of the terminal, radio link layer control parameters of the terminal, medium access control parameters of the terminal, and Physical layer parameters, terminal radio frequency parameters, terminal measurement parameters.
  • the embodiments of the present application provide a computer-readable medium for storing a computer program, the computer program including instructions for executing the first aspect or any possible implementation of the first aspect.
  • an embodiment of the present application provides a computer-readable medium for storing a computer program, and the computer program includes instructions for executing the second aspect or any possible implementation of the second aspect.
  • embodiments of the present application provide a computer-readable medium for storing a computer program, the computer program including instructions for executing the fifth aspect or any possible implementation of the fifth aspect.
  • an embodiment of the present application provides a computer program, which includes instructions for executing the first aspect or any possible implementation of the first aspect.
  • embodiments of the present application provide a computer program, which includes instructions for executing the second aspect or any possible implementation of the second aspect.
  • an embodiment of the present application provides a computer program, the computer program including instructions for executing the third aspect or any possible implementation of the third aspect.
  • an embodiment of the present application provides a chip, which includes a processing circuit and transceiver pins.
  • the transceiver pin and the processing circuit communicate with each other through an internal connection path, and the processing circuit executes the method in the first aspect or any one of the possible implementations of the first aspect to control the receiving pin to receive signals, and Control the sending pin to send signals.
  • an embodiment of the present application provides a chip, which includes a processing circuit and transceiver pins.
  • the transceiver pin and the processing circuit communicate with each other through an internal connection path, and the processing circuit executes the method in the second aspect or any one of the possible implementations of the second aspect to control the receiving pin to receive signals, and Control the sending pin to send signals.
  • an embodiment of the present application provides a chip, which includes a processing circuit and transceiver pins.
  • the transceiver pin and the processing circuit communicate with each other through an internal connection path, and the processor executes the method in the fifth aspect or any one of the possible implementation manners of the fifth aspect to control the receiving pin to receive the signal, and Control the sending pin to send signals.
  • an embodiment of the present application provides a communication system, which includes the terminal and network equipment involved in the first and second aspects described above.
  • Fig. 1 is a schematic diagram of a communication system provided by an embodiment of the present application.
  • FIG. 2 is one of the schematic structural diagrams of a terminal provided by an embodiment of the present application.
  • FIG. 3 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application
  • Figure 4a is one of the schematic diagrams of the capability set provided by the embodiment of the present application.
  • Figure 4b is one of the schematic diagrams of the capability set provided by an embodiment of the present application.
  • FIG. 5 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application
  • FIG. 6 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application.
  • FIG. 7 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application.
  • FIG. 8 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application.
  • FIG. 9 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application.
  • FIG. 10 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application.
  • FIG. 11 is one of the schematic flowcharts of a method for reporting capability information provided by an embodiment of the present application.
  • FIG. 12 is one of schematic structural diagrams of a terminal provided by an embodiment of the present application.
  • FIG. 13 is a schematic structural diagram of a device provided by an embodiment of the present application.
  • first and second in the description and claims of the embodiments of the present application are used to distinguish different objects, rather than to describe a specific order of objects.
  • first target object and the second target object are used to distinguish different target objects, rather than to describe the specific order of the target objects.
  • words such as “exemplary” or “for example” are used as examples, illustrations, or illustrations. Any embodiment or design solution described as “exemplary” or “for example” in the embodiments of the present application should not be construed as being more preferable or advantageous than other embodiments or design solutions. To be precise, words such as “exemplary” or “for example” are used to present related concepts in a specific manner.
  • multiple means two or more.
  • multiple first capabilities refer to two or more first capabilities.
  • Fig. 1 is a schematic diagram of a communication system provided by an embodiment of this application.
  • the communication system includes base stations and terminals. It should be noted that in practical applications, the number of base stations and terminals may be one or more. The number of base stations and terminals in the communication system shown in FIG. 1 is only an example of adaptability, which is not limited in this application.
  • the aforementioned communication system can be used to support fourth generation (4G) access technology, such as long term evolution (LTE) access technology; or, the communication system can also support fifth generation (5G) access technology.
  • 4G fourth generation
  • 5G fifth generation
  • ) Access technology such as new radio (NR) access technology
  • NR new radio
  • 3G third generation
  • UMTS universal mobile telecommunications system
  • 2G second generation
  • GSM global system for mobile communications
  • the communication system can also be used in a communication system supporting multiple wireless technologies, for example, supporting LTE technology and NR technology.
  • the communication system can also be applied to Narrow Band-Internet of Things (NB-IoT), Enhanced Data rate for GSM Evolution (EDGE), and broadband code division multiple access systems.
  • NB-IoT Narrow Band-Internet of Things
  • EDGE Enhanced Data rate for GSM Evolution
  • WCDMA Wideband Code Division Multiple Access
  • CDMA2000 Code Division Multiple Access 2000
  • Time Division-Synchronization Code Division Multiple Access Time Division-Synchronization, Code Division Multiple Access
  • TD-SCDMA Time Division-Synchronization, Code Division Multiple Access
  • LTE Long Term Evolution
  • future-oriented communication technology future-oriented communication technology.
  • the network device described in this application may be the base station in FIG. 1.
  • the base station can be used to support terminal access.
  • the base station can be the base transceiver station (BTS) and base station controller (BSC) in a 2G access technology communication system, and 3G access technology communication Node B (node B) and radio network controller (RNC) in the system, evolved nodeB (eNB) in the 4G access technology communication system, and the next generation in the 5G access technology communication system
  • Base station nodeB, gNB
  • transmission reception point transmission reception point, TRP
  • relay node relay node
  • access point access point
  • AP access point
  • devices that provide wireless communication functions for terminals are collectively referred to as network devices or base stations.
  • the terminal equipment in Figure 1 can also be called User Equipment (UE), access terminal, user unit, user station, mobile station, mobile station, remote station, remote terminal, mobile equipment, terminal, wireless communication equipment, User agent or user device.
  • the terminal equipment can be a station (STAION, ST) in a WLAN, a cellular phone, a cordless phone, a Session Initiation Protocol (SIP) phone, a wireless local loop (Wireless Local Loop, WLL) station, and a personal digital processing (Personal Digital Assistant, PDA) devices, handheld devices with wireless communication functions, computing devices or other processing devices connected to wireless modems, vehicle-mounted devices, wearable devices, and next-generation communication systems, such as terminal devices in 5G networks or Terminal equipment in the future evolved Public Land Mobile Network (PLMN) network.
  • PLMN Public Land Mobile Network
  • Figure 2 is a schematic diagram of a terminal structure.
  • Figure 2 is a schematic diagram of a terminal structure.
  • the terminal includes at least one processor 101, at least one transceiver 102, and at least one memory 103.
  • the processor 101, the memory 103 and the transceiver 102 are connected.
  • the terminal may further include an output device 104, an input device 105, and one or more antennas 106.
  • the antenna 106 is connected to the transceiver 102, and the output device 104 and the input device 105 are connected to the processor 101.
  • the processor 101 may be a baseband processor or a CPU, and the baseband processor and the CPU may be integrated or separated.
  • the processor 101 can be used to implement various functions for the terminal, for example, to process communication protocols and communication data, or to control the entire terminal device, execute software programs, and process data in software programs; or to assist in completing Computing processing tasks, such as graphics and image processing or audio processing, etc.; or the processor 101 is used to implement one or more of the above functions.
  • the memory in the application embodiment may include at least one of the following types: read-only memory (ROM) or other types of static storage devices that can store static information and instructions, random access memory (RAM) or other types of dynamic storage devices that can store information and instructions, or electrically erasable programmable read-only memory (EEPROM).
  • ROM read-only memory
  • RAM random access memory
  • EEPROM electrically erasable programmable read-only memory
  • the memory can also be a compact disc read-only memory (CD-ROM) or other optical disc storage, optical disc storage (including compact discs, laser discs, optical discs, digital universal discs, Blu-ray discs, etc.) , A magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to carry or store desired program codes in the form of instructions or data structures and that can be accessed by a computer, but is not limited thereto.
  • CD-ROM compact disc read-only memory
  • optical disc storage including compact discs, laser discs, optical discs, digital universal discs, Blu-ray discs, etc.
  • a magnetic disk storage medium or other magnetic storage device or any other medium that can be used to carry or store desired program codes in the form of instructions or data structures and that can be accessed by a computer, but is not limited thereto.
  • the memory 102 may exist independently and is connected to the processor 101.
  • the memory 102 may also be integrated with the processor 101, for example, integrated in a chip.
  • the memory 102 can store program codes for executing the technical solutions of the embodiments of the present application, and the processor 101 controls the execution, and various types of computer program codes executed can also be regarded as driver programs of the processor 101.
  • the processor 101 is configured to execute the computer program code stored in the memory 102, so as to implement the technical solutions in the embodiments of the present application.
  • the memory 102 may also be outside the chip and connected to the processor 101 through an interface.
  • the transceiver 103 may be used to support the reception or transmission of radio frequency signals between the access network device and the terminal, and the transceiver 103 may be connected to the antenna 105.
  • the transceiver 103 includes a transmitter Tx and a receiver Rx. Specifically, one or more antennas 105 can receive radio frequency signals, and the receiver Rx of the transceiver 103 is used to receive the radio frequency signals from the antennas, convert the radio frequency signals into digital baseband signals or digital intermediate frequency signals, and convert the digital
  • the baseband signal or digital intermediate frequency signal is provided to the processor 101, so that the processor 101 performs further processing on the digital baseband signal or digital intermediate frequency signal, such as demodulation processing and decoding processing.
  • the transmitter Tx in the transceiver 103 is also used to receive a modulated digital baseband signal or digital intermediate frequency signal from the processor 101, and convert the modulated digital baseband signal or digital intermediate frequency signal into a radio frequency signal, and pass a Or multiple antennas 105 transmit the radio frequency signal.
  • the receiver Rx can selectively perform one or more stages of down-mixing processing and analog-to-digital conversion processing on the radio frequency signal to obtain a digital baseband signal or a digital intermediate frequency signal. The order of precedence is adjustable.
  • the transmitter Tx can selectively perform one or more stages of up-mixing processing and digital-to-analog conversion processing on the modulated digital baseband signal or digital intermediate frequency signal to obtain a radio frequency signal, the up-mixing processing and digital-to-analog conversion processing
  • the order of precedence is adjustable.
  • Digital baseband signals and digital intermediate frequency signals can be collectively referred to as digital signals.
  • the output device 104 communicates with the processor 101 and can display information in a variety of ways.
  • the output device 104 may be a liquid crystal display (Liquid Crystal Display, LCD), a light emitting diode (Light Emitting Diode, LED) display device, a cathode ray tube (Cathode Ray Tube, CRT) display device, or a projector (projector) Wait.
  • the input device 105 communicates with the processor 101 and can accept user input in a variety of ways.
  • the input device 105 may be a keyboard, a touch screen device, a sensor device, or the like.
  • the memory 103 may exist independently and is connected to the processor 101.
  • the memory 103 may also be integrated with the processor 101, for example, integrated in a chip.
  • the memory 103 can store program codes for executing the technical solutions of the embodiments of the present application, and the processor 101 controls the execution, and various types of computer program codes executed can also be regarded as drivers of the processor 101.
  • the processor 101 is configured to execute the computer program code stored in the memory 103, so as to implement the technical solutions in the embodiments of the present application.
  • the terminal 200 may send first capability information to the base station 100, and the first capability information may be used to indicate one or more first capability information supported by the terminal.
  • the terminal can report to the base station the support of the terminal, or the set of capabilities that the terminal expects to use by sending the first capability information, and the set includes one or more first capabilities.
  • the terminal 200 may also send second capability information to the base station 100, where the second capability information may be used to indicate one or more second capabilities supported by the terminal, where one or more second capabilities and one or more first capabilities different.
  • one or more second capabilities may be different in quantity from one or more first capabilities, and/or one or more second capabilities may be different in value from one or more first capabilities .
  • the terminal 200 may also send time information to the base station 100 to indicate that the terminal will alternately use one or more first capabilities and one or more second capabilities within a period of time.
  • the reporting method based on the foregoing capability information enables the terminal 200 to selectively use one or more first capabilities, or use one or more first capabilities and one or more second capabilities alternately, thereby providing a
  • the complete capability information reporting method enables the terminal to flexibly select the capabilities it uses, and effectively improves the utilization of resources.
  • one or more first capabilities and one or more second capabilities are uplink capabilities supported by the terminal; or, one or more first capabilities and one or more second capabilities are terminal Supported downlink capabilities.
  • the terminal may send the first capability information to the base station, and after a preset condition is triggered, then send the second capability information and time information.
  • the second capability information and the first capability information may be sent at the same time, and the time information may be sent after a preset condition is triggered.
  • the terminal may simultaneously send the first capability information, the second capability information, and the time information to the base station.
  • Scenario 3 It should be noted that in the following embodiments, the terminal side uses a dual-card device, that is, the device includes a first SIM card and a second SIM card as an example for description.
  • Either the first SIM card or the second SIM card can be regarded as a terminal.
  • the terminal side may also be a one-card or multi-card device, for example, three-card or more than three-card devices, all of which can use the technical solution of this application, and this application does not limit the number of cards.
  • the capability information (including the first capability information and the second capability information) reported by the terminal is used to indicate one or more capabilities currently supported or expected to be used by the terminal.
  • one or more capabilities can be described by corresponding parameters.
  • the antenna parameter supported by the terminal is 8, which means that the antenna capability supported by the terminal is 8 antenna ports (antenna ports).
  • each capability parameter supported by the terminal in a collective manner.
  • the set of capability parameters configured by the terminal includes but is not limited to: the terminal’s packet data convergence protocol parameters (Packet Data Convergence Protocol, PDCP), the terminal’s radio link layer control parameters (Radio Link Control, RLC), and the terminal’s media Access control parameters (medium access control, MAC), terminal physical layer parameters (Physical, PHY), terminal radio frequency parameters (Radio Frequency, RF), terminal measurement parameters (Radio Measurement Management, RRM), etc.
  • packet data convergence protocol parameters Packet Data Convergence Protocol
  • RLC Radio Link Control
  • media Access control parameters medium access control, MAC
  • terminal physical layer parameters Physical, Physical, PHY
  • terminal radio frequency parameters Radio Frequency, RF
  • terminal measurement parameters Radio Measurement Management, RRM
  • the set of capabilities supported by the terminal includes but is not limited to: PDCP capabilities, RLC capabilities, MAC capabilities, physical layer capabilities, radio frequency capabilities, measurement capabilities, etc. It should be noted that a certain capability described in this application refers to a capability supported by the terminal, and is referred to as an X capability in this application, such as the radio frequency capability mentioned above.
  • the physical layer parameters may further include tuning to coding parameters.
  • the radio frequency parameters may further include frequency band combination parameters, carrier aggregation bandwidth levels, and so on.
  • Corresponding to the radio frequency capabilities supported by the terminal may include the combination of frequency bands supported by the terminal and the carrier aggregation bandwidth level supported by the terminal.
  • FIG. 3 is a schematic flowchart of a method for reporting capability information in an embodiment of this application, in FIG. 3:
  • Step 101 The terminal sends a first message to a base station, where the first message includes first capability information.
  • the terminal may report the first capability information (or may be referred to as initial capability information) to the base station during the registration phase or after the registration is completed.
  • the steps of the registration stage can refer to the existing technology, and this application will not repeat them.
  • the terminal that reports capability information (first capability information and/or second capability information) described in this application may refer to a terminal with a SIM card, or one of the terminal-side devices A SIM card.
  • the first capability information is used to indicate one or more first capabilities supported by the terminal, or can be understood as one or more first capabilities that the terminal expects to use after accessing the network.
  • the first capability information may be carried in the first message and sent to the base station.
  • the first capability information may include one or more first capability parameters for indicating one or more first capabilities.
  • the antenna parameter is used to indicate the antenna capability supported by the terminal. If the antenna parameter is 8, it indicates that the terminal supports 8 antenna ports.
  • the one or more first capabilities indicated in the first capability information may be all capabilities supported by the terminal.
  • the one or more first capabilities may also be partial capabilities of the terminal.
  • all capabilities refer to: the number of one or more first capabilities is equal to the number of all capabilities supported by the terminal, and the capability value of one or more first capabilities can reach the maximum value that the terminal can support.
  • Partial capabilities refer to that the quantity and/or capability value of one or more first capabilities are not completely the same as the quantity and capability value of all the capabilities that the terminal can support.
  • the number of one or more first capabilities indicated in the first capability information may be equal to the number of all capabilities supported by the terminal, and the capability value of each first capability reaches the maximum value that the terminal can support, In other words, after the terminal is connected, it can use all the capabilities supported by the terminal, and each capability can reach the maximum value that the terminal can support.
  • all capabilities supported by the terminal include capability A, capability B, capability C, and capability D, where capability A to D can be any capability in the capability set shown in FIG. 2.
  • the first capability information reported by the terminal may include capability parameters corresponding to capability A to capability D to indicate that the terminal expects to use capability A to capability D, and the capability parameter corresponding to each capability is the maximum value that can be achieved. Take specific parameters as an example: if capability A is the antenna capability supported by the terminal, the maximum number of antenna ports that the terminal can support is 8, correspondingly, the antenna parameter included in the first capability information is 8 to indicate that the terminal expects to access the network Later, it is expected to use 8 antenna ports. It should be noted that, in this application, only the number of antenna ports is taken as an example for illustration. In fact, the antenna capability supported by the terminal may include but is not limited to the number of antenna ports supported by the terminal.
  • the one or more first capabilities supported in the first capability information may also be part of the capabilities supported by the terminal.
  • some of the capabilities include a set of capabilities that support the terminal to communicate with other terminals or the core network (hereinafter referred to as the necessary capability set).
  • the necessary capability set Assuming that the terminal communicates with the core network, the standard requires it to report the supported antenna capabilities, that is, the antenna capabilities belong to the set of necessary capabilities.
  • some capabilities may also include at least one other capability, which is not limited in this application.
  • one or more of the first capabilities are part of the capabilities supported by the terminal may be: the number of first capabilities is equal to the number of capabilities supported by the terminal, wherein the capability value of at least one first capability has not reached
  • the maximum capability value that the terminal can support For example: all the capabilities supported by the terminal include capability A, capability B, capability C, and capability D.
  • the capabilities indicated by the first capability information include capability A, capability B, capability C, and capability D.
  • the number of these capabilities corresponds to the capability supported by the terminal. Are equal in number. Among them, the capability value of capability A fails to reach the maximum value that the terminal can support.
  • the capability values of capability B to capability D all reach the maximum value of the capability that the terminal can support.
  • one or more of the first capabilities are part of the capabilities supported by the terminal may be: the number of first capabilities is different from the number of capabilities supported by the terminal, where the capability value of each first capability is equal to Can reach the maximum.
  • all capabilities supported by the terminal include capability A, capability B, capability C, and capability D.
  • the capabilities indicated by the first capability information include capability A, capability B, and capability C.
  • the number of these capabilities is not the same as the number of capabilities supported by the terminal. equal.
  • the capability values of capability A to capability D all reach the maximum value of the capability that the terminal can support.
  • one or more of the first capabilities are part of the capabilities supported by the terminal may be: the number of first capabilities is different from the number of capabilities supported by the terminal, where the capability value of at least one first capability is not equal to It can reach the maximum capability value that the terminal can support.
  • all capabilities supported by the terminal include capability A, capability B, capability C, and capability D.
  • the capabilities indicated by the first capability information include capability A, capability B, and capability C.
  • the number of these capabilities is not the same as the number of capabilities supported by the terminal. equal.
  • the capability value of capability A fails to reach the maximum value that the terminal can support.
  • the capability values of capability B to capability D all reach the maximum value of the capability that the terminal can support.
  • the base station determines whether to accept one or more first capabilities indicated by the first capability information. After confirming the acceptance, perform relevant configuration and return a confirmation message to the terminal to indicate that the terminal can use one or more of the first capabilities reported by it. After receiving the confirmation message, the terminal uses one or more first capabilities.
  • the steps such as the judgment and configuration on the base station side can be referred to the prior art, which will not be repeated in this application.
  • Step 102 The terminal sends a second message to the base station, where the second message includes second capability information and time information.
  • the terminal may send the second capability information (or may be called temporary capability information, or capability update information, etc.) and time information to the base station after a preset condition is triggered.
  • the preset condition may be a preset time point.
  • the preset condition may also be after the terminal detects the capability update. For example, if the terminal is currently using one or more first capabilities included in the first capability set, if the terminal detects that the first capability set is updated, the update includes: quantity update and/or capability value update. Then the preset condition is triggered, and the terminal may send a second message to report the updated capability, or may be called the second capability.
  • the second capability information is used to indicate one or more second capabilities expected to be used by the terminal.
  • the number and/or capability value of the one or more second capabilities are different from the one or more first capabilities.
  • the number of one or more second capabilities is the same as the number of one or more first capabilities, wherein the capability value of at least one second capability is different from the capability value of the corresponding first capability.
  • the first capability set includes capability A, capability B, capability C, and capability D.
  • the second capability set includes capability A', capability B', capability C', and capability D', where capability A'to D'corresponds to capability A to D in a one-to-one manner. That is, the number of capabilities included in the first capability set and the second capability set are equal. Among them, ability A and ability A'have different ability values, ability B and ability B'have the same ability value, and ability C and ability C'have the same ability value.
  • the difference in the ability value involved in this application may be that the ability value of the second ability is greater than the ability value of the first ability, or may mean that the ability value of the second ability is smaller than the ability value of the first ability.
  • the specific value can be set according to actual needs, and this application does not limit it.
  • the number of the one or more second abilities is different from the number of the one or more first abilities, but the ability values of the overlapping abilities may be the same.
  • the first capability set includes capability A, capability B, capability C, and capability D
  • the second capability set includes capability A', capability B', and capability C'. That is, the number of capabilities in the second capability set is smaller than the number of capabilities in the first capability set.
  • the ability value of ability A' is equal to that of ability A
  • the ability value of ability B'is equal to that of ability B
  • the number of capabilities involved in this application is not equal, which can mean that the number of second capabilities in the second set of capabilities is greater than the number of first capabilities in the first set of capabilities, or it can mean that The number of second capabilities in the capability set is smaller than the number of first capability sets in the first capability set, and the number of capabilities included in the set can be set based on actual needs, which is not limited in this application.
  • the quantity of one or more second capabilities is different from the quantity of one or more first capabilities, and the capability value of at least one overlapping capability is different.
  • the first capability set includes capability A, capability B, capability C, and capability D
  • the second capability set includes capability A', capability B', and capability C'. That is, the number of capabilities in the second capability set is smaller than the number of capabilities in the first capability set.
  • the ability value of ability A'and ability A are not equal
  • the ability value of ability B'and ability B are equal
  • the ability value of ability C'and ability C are equal.
  • time information may be used to indicate that one or more first capabilities and one or more second capabilities are alternately used.
  • the time information can also be carried in the second message.
  • the time information and the second capability information are carried in the second message, which is used to indicate that the terminal expects to start the method of using multiple capabilities alternately.
  • the time information may be used to indicate the time division multiplexing mode, that is, the first capability and the second capability are alternately used in the time division multiplexing mode. Further, the time information may be used to indicate the time domain resource allocation situation when one or more first capabilities and one or more second capabilities are alternately used in the time division multiplexing mode.
  • the time information may indicate that the terminal expects to use one or more first capabilities in the first time period, and indicates that the terminal expects to use one or more second capabilities in the second time period, where the first time period and the first time period The two time periods appear alternately.
  • time information can be used to indicate the period T, where one time period P in each period T uses one or more first capabilities, and the remaining time (T-P) in the period T uses one or more second capabilities.
  • the time information may also be a bitmap, that is, a bit sequence indicating 0/1. For example, the time position where the bit is 0 uses one or more first capabilities, and the time position where the bit is 1 uses one or Multiple second capabilities.
  • the specific indication mode of the time information and the distribution mode of the domain resources can be set according to actual needs. The above-mentioned embodiments are only illustrative examples and are not limited in this application.
  • the base station receives the second message, where, if the base station receives one or more second capabilities indicated in the second message and the time domain resource allocation indicated by the time information, it sends The terminal feeds back a confirmation message. After receiving the confirmation instruction message, the terminal may execute a manner of alternately using one or more first capabilities and one or more second capabilities according to the instructions of the time information. Optionally, if the base station rejects the information indicated in the second message, the base station feeds back a negative indication message to the terminal. After receiving the negative indication message, the terminal still uses the one or more first capabilities indicated in the first capability information.
  • the second capability information reported by the terminal may include one or more second capability parameters indicating one or more second capabilities.
  • the second capability information reported by the terminal may include one or more second capability parameters, where one or more second capability parameters are used to indicate the updated first capability, and the second capability information is also used for It is indicated that the terminal desires to use the updated first capability and also desires to use other first capabilities other than the updated first capability.
  • the second set of capabilities expected by the terminal includes capability A', capability B', capability C', and capability D'.
  • the second capability information includes: capability parameter A', capability parameter B', capability parameter C', and capability parameter D'.
  • capability parameter A' is used to indicate capability A'
  • capability parameter B is used to indicate capability B'
  • capability parameter C' is used to indicate capability C'
  • capability parameter D' is used to indicate capability D'.
  • the second set of capabilities that the terminal expects to use includes capability A', capability B', capability C', and capability D'
  • the first set of capabilities reported by the terminal includes capability A, capability B, capability C, and capability Ability D
  • the capability value of capability A'in the second capability set is not equal to the capability value of capability A in the first capability set, that is, capability A in the first capability set is updated to capability A'.
  • the capability values of other capabilities (including capability B and capability C) in the first capability set have not been updated.
  • the second capability information may include capability parameter A'for indicating capability A'. It should be noted that, compared with the previous example, the second capability information does not include the capability parameter B'and the capability parameter C'.
  • the second capability can be used to indicate that the other first capabilities (including capability B, capability C, and capability D) are still valid except that capability A in the first capability is updated according to the instruction of capability parameter A'. It can be understood that the second capability is used to indicate that the terminal expects to use capability A'and capability B, capability C, and capability D in the first capability set.
  • the terminal reports first capability information, and the first capability information indicates that the terminal expects to use frequency band combination 1, frequency band combination 2, and frequency band combination 3.
  • the first capability information includes frequency band combination parameter 1, frequency band combination parameter 2, and frequency band combination parameter 3.
  • band combination parameter 1 is used to indicate that the terminal supports or the terminal expects to use band combination 1 (for example, band combination 1 can be Band 1 and Band2)
  • band combination parameter 2 is used to indicate that the terminal supports or the terminal expects Band combination 2 is used (for example, band combination 2 can be Band3 and Band4)
  • band combination parameter 3 is used to indicate that the terminal supports or the terminal expects to use band combination 3 (for example, band combination 3 can be Band7 and Band43).
  • the first capability information may also be used to indicate antenna capability 1 and bandwidth capability 1 under band group 1; antenna capability 2 and bandwidth capability 2 under band combination 2; antenna capability 3 and bandwidth capability 3 under band combination 3.
  • the first capability information further includes: antenna capability parameter 1, antenna capability parameter 2, antenna capability parameter 3, and bandwidth capability parameter 1, bandwidth capability parameter 2, and bandwidth capability parameter 3.
  • FIG. 4a For the frequency band combination capability set indicated by the first capability information, refer to FIG. 4a. It should be noted that the number of capabilities and names shown in FIG. 4a are only illustrative examples, and this application is not limited.
  • the frequency band combination used by the terminal is frequency band combination 1.
  • the frequency band combination used is the frequency band combination configured by the current network for the terminal.
  • the terminal detects that antenna capability 1 under frequency band combination 1 is updated to antenna capability 1', and antenna capability 2 under frequency band combination 2 is updated to antenna capability 2'.
  • the "update” refers to the update of the capability value.
  • antenna capability 1 means that the terminal supports 8 antenna ports
  • antenna capability 1' may mean that the terminal supports 4 antenna ports.
  • the terminal can support multiple frequency band combinations, wherein the terminal can use one or more frequency band combinations from the multiple frequency band combinations.
  • the existing technology which will not be repeated in this application.
  • the terminal can report all frequency band combinations supported by the terminal and the capabilities under each frequency band combination to the base station. That is, the second capability information reported by the terminal includes, but is not limited to, frequency band combination parameters corresponding to all frequency band combinations supported by the terminal, and capability parameters corresponding to the capabilities under each frequency band combination.
  • the capability indicated by the second capability information may be as shown in FIG. 4b.
  • the second capability information includes but is not limited to: frequency band combination parameter 1, antenna capability parameter 1', bandwidth capability parameter 1; frequency band combination parameter 2, antenna capability parameter 2', bandwidth capability parameter 2; frequency band combination parameter 3.
  • the second capability information is used to indicate that the terminal expects to use the second set of capabilities shown in Figure 4b, that is, the second capability information is used to indicate that the terminal supports or expects to use band combination 1, and is further used to indicate that the terminal expects to use Antenna capability 1'and bandwidth capability 1 under frequency band combination 1; and the second capability information is also used to indicate that the terminal supports or expects to use frequency band combination 2, and further expects to use antenna capability 2'and bandwidth capability under frequency band combination 2 2; And, the second capability information is also used to indicate that the terminal supports or expects to use band combination 3, and further expects to use antenna capability 3 and bandwidth capability 3 under band combination 3.
  • the terminal may only report the frequency band combinations that are capable of updating and their corresponding capabilities. That is, the second capability information reported by the terminal includes, but is not limited to, the frequency band combination parameter corresponding to the updated frequency band combination, and the capability parameter corresponding to the ability under the updated frequency band combination.
  • the second capability information includes but is not limited to: frequency band combination parameter 1, antenna capability parameter 1'; frequency band combination parameter 2, antenna capability parameter 2'.
  • the second capability information is used to indicate that the antenna capability under frequency band combination 1 is updated to antenna capability 1'
  • the second capability information is used to indicate that the antenna capability under frequency band combination 2 is updated to antenna capability 2'.
  • the second capability information is also used to indicate other capabilities (including the bandwidth capability under band combination 1, the bandwidth capability under band combination 2, the antenna capability 3 under band combination 3, and the bandwidth Capability 3)
  • the configuration is still performed as indicated by the first capability information.
  • the terminal may report all the capabilities in the currently used frequency band combination, or the terminal may also report the updated capabilities in the currently used frequency band combination.
  • the second capability information may include but is not limited to: frequency band combination parameter 1, antenna capability parameter 1', bandwidth capability parameter 1, which is used to indicate that the terminal currently occupies frequency band combination 1, and the frequency band is also used to indicate that the terminal expects to use frequency band combination 1. Under the antenna capability 1'and bandwidth capability 1.
  • Other related configurations of frequency band combinations that have been reported in the first capability information can still be configured according to the instructions of the first capability information.
  • the second capability information may include, but is not limited to: frequency band combination parameter 1, antenna capability parameter 1', which is used to indicate that the terminal currently occupies frequency band combination 1, and the frequency band is also used to indicate that the terminal expects to use the antenna capabilities of frequency band combination 1. 1', and also used to indicate that other capabilities (such as bandwidth capabilities) under band combination 1 are still configured according to the instructions in the first capability information.
  • the terminal can also send third capability information to the base station to indicate one or more third capabilities supported by the terminal .
  • the third capability information may be an update to the first capability information, that is, if one or more first capabilities are updated to one or more third capabilities, then the terminal may use one or more third capabilities. Capabilities, or alternate use of one or more third capabilities and one or more second capabilities, the specific details are similar to those in the foregoing embodiment, and will not be repeated here.
  • the third capability information may also be an update to the second capability information, that is, the terminal may use one or more first capabilities, or alternately use one or more first capabilities and one or more The third capability, the specific details are similar to the foregoing embodiment, and will not be repeated here.
  • the terminal may also send third capability information and fourth capability information to the base station, where the third capability information is used for Indicate that one or more first capabilities are updated to one or more third capabilities, and the fourth capability information is used to indicate that one or more second capabilities are updated to one or more fourth capabilities. Accordingly, the terminal can use one or more Multiple third abilities, or alternate use of one or more third abilities and one or more fourth abilities.
  • the terminal may also send time information (to distinguish the above-mentioned time information, hereinafter referred to as time update information) to the base station for use Update the time information sent last time.
  • time update information to distinguish the above-mentioned time information, hereinafter referred to as time update information
  • the terminal uses the corresponding capabilities alternately according to the time domain resource allocation indicated by the time update information.
  • the capability information (first capability information and/or second capability information) and time update information can be updated at the same time, that is, carried in the same message and sent to the base station, or carried in different messages and sent to Base station. It can be set according to actual needs, which is not limited in this application.
  • the terminal may also send recovery indication information to the base station to indicate that the capabilities supported by the terminal are restored to one or more first capabilities, which can be understood as: the terminal expects to use one or more first capabilities .
  • the terminal can selectively use one or more first capabilities, or alternately use one or more first capabilities and one or more second capabilities, thereby providing one or more second capabilities.
  • FIG. 5 it exemplarily shows a schematic flowchart of a method for reporting capability messages, in FIG. 5:
  • the terminal may include a first SIM card (hereinafter referred to as card 1) and a second SIM card (hereinafter referred to as card 2), and the card 1 is in a connected state and the card 2 is in an idle state.
  • card 1 a first SIM card
  • card 2 a second SIM card
  • Step 201 The card 1 sends the first capability information 1 to the base station, and the card 2 sends the first capability information 2 to the base station.
  • card 1 and card 2 register with the core network and send their first capability information during the registration process or after the registration is completed.
  • the first capability information 1 is used to indicate one or more first capabilities included in the first capability set 1 that the card 1 expects to use in the connected state
  • the first capability information 2 is used to indicate that the card 2 expects to be in the connected state.
  • One or more first capabilities included in the first capability set 2 used.
  • the quantity and/or capability value of one or more first capabilities included in the first capability 1 may be the same as or different from the one or more first capabilities included in the first capability set 2, which can be set according to actual needs, This application is not limited.
  • the one or more first capabilities indicated by the first capability information 1 and the one or more first capabilities of the first capability information 2 are the same, and both are used to indicate all the capabilities supported by the terminal as an example Give details.
  • Step 202 The base station performs configuration based on the first capability information 1 of the card 1, and returns a response message.
  • the base station can determine whether the card 1 and the card 2 are in a connected state through the link state between the card 1 and the card 2 and the base station.
  • the specific judgment method can refer to the prior art, which is not limited in this application.
  • the base station can perform configuration based on the capability information reported by the SIM card, and return a response message to indicate that the base station is successfully configured, and the SIM card can use the reported capability information. It should be noted that the base station cannot identify the SIM card that is not connected to the network, that is, in the idle state.
  • the base station recognizes that the card 1 is in the connected state, and the base station can configure based on the first capability information reported by the card 1, and feed back a response message.
  • the base station since it is in an idle state, the base station cannot recognize the card 2, therefore, the first capability information 2 reported by the card 2 is only stored in the core network.
  • the response message may be a radio resource control reconfiguration (Radio Resource Control Reconfiguration) message, which is used to indicate that the base station has configured the terminal (card 1). It should be noted that for the base station, either card 1 or card 2 can be regarded as a terminal.
  • Radio Resource Control Reconfiguration Radio Resource Control Reconfiguration
  • step 203 the card 1 uses the first capability set 1, and the card 2 does not use any capability.
  • the card 1 after the card 1 receives the response message fed back by the base station, it can use the first capability set 1 to communicate. And, when the card 2 is in the idle state and no data is received, it does not use any capabilities.
  • Step 204 the capability of the card 1 is updated.
  • the card 2 when the card 2 is in the idle state, it still needs to communicate. For example, when the card 2 is in the idle state, it can still receive paging messages sent by the base station. Among them, the paging message can be periodic. Correspondingly, card 2 will wake up periodically and receive paging messages. In other words, the card 2 will periodically occupy the resources of the terminal, or it can be understood that the card 2 will use the capabilities supported by the terminal to receive paging messages. In this case, a change in the ability used by card 2 will result in a change in the ability of card 1. It should be noted that the card 2 never uses any capabilities, but instead uses some of the capabilities, which can also be understood as an update of the capabilities of the card 2. However, since the card 2 is in the idle state, the base station does not recognize the SIM card in the idle state, so the card 2 There is no need to notify the base station, its capabilities are updated.
  • the card 1 can interact with the card 2 to determine one or more second capabilities included in the second set of capabilities that can be used by the card 2 and the card 1 respectively.
  • the maximum capability of the antenna capability that the terminal can support is 8 antenna ports, and the card 2 needs to use at least 4 antenna ports to receive paging messages, and the antenna capability that the card 1 can use may be 4 antennas.
  • Card 1 can update its own capabilities based on the requirements of card 2, that is, the first set of capabilities 1 used by card 1 can be updated to the second set of capabilities.
  • the zero capability set currently used by card 2 (that is, no capability is used) is updated to the second capability set 2.
  • card 1 can also interact with card 2 to determine the allocation of time domain resources.
  • Card 1 and Card 2 can determine the time domain resource allocation of the first capability set 1 and the second capability set 2 alternately used by the card 1 and the time domain of the second capability set 2 used by the card 2 according to the time when the card 2 wakes up.
  • the resource allocation situation or it can be understood that the card 2 alternately uses the time domain resource allocation situation of the second capability set 2 and the empty capability set (indicating that no capability is used).
  • the card 2 wakes up once every 4ms, and the wakeup time is 2ms.
  • the card 1 and the card 2 can determine that the alternate period is 6 ms, where the card 2 uses the second capability set 2 in the first 2 ms within the 6 ms of each alternate period, and does not use any capability in the remaining 4 ms of each period.
  • the card 1 expects to use the second capability set 1 in the first 2 ms of each alternate period of 6 ms, and use the first capability set 1 in the remaining 4 ms of each period.
  • card 1 and card 2 can respectively use part of the capabilities supported by the terminal.
  • card 1 can use all the capabilities supported by the terminal.
  • Step 205 The card 1 reports the second capability information and time information.
  • the second capability information is used to indicate that the card 1 expects to use one or more second capabilities included in the second capability set 1.
  • the time information is used to indicate that the card 1 expects to use the second capability set 1 in the first 2 ms of each alternate period of 6 ms, and use the first capability set 1 in the remaining 4 ms of each period.
  • card 2 since it is in an idle state, that is, card 2 is not connected to the base station, the base station cannot perceive card 2. Therefore, card 2 only needs to wake up and use the required Capability (for example, the second capability set 2) to receive data, that is, in the period when the card 1 alternately uses the first capability set 1 and the second capability set 1 according to the indication of the time information, the card 2 For the indication of time information, the zero capability set and the second capability set 2 are alternately used.
  • the specific alternation situation can be as described in the example in step 204, which is not repeated here.
  • Step 206 The base station feeds back a confirmation response message.
  • the base station may determine whether it is acceptable for the terminal to alternately use one or more first capabilities and one or more second capabilities based on the second capability information and time information reported by the card 1. the way. If the base station determines that it is acceptable, it will feed back a confirmation response message to the card 1. Conversely, if the base station does not accept the capabilities or alternate methods reported by the card 1, the base station may not feed back any message or feed back a negative message to inform the card 1 to continue to use one or more capabilities indicated by the previously reported capability information.
  • Step 207 The card 1 alternately uses the second capability set 1 and the first capability set 1 according to the indication of the time information.
  • the card 1 alternately uses one or more second capabilities included in the second capability set 1 and one or more first capabilities included in the first capability set 1 according to the indication of the time information.
  • the card 2 alternately uses partial capabilities (for example, one or more second capabilities included in the second capability set 2) and zero capabilities (that is, no capabilities are used) according to the indication of the time information.
  • Card 2 can use part of the terminal's capabilities during the period of waking up and receiving a paging message, and card 1 can use another part of the capabilities.
  • Card 2 does not use any capabilities when not receiving messages, and card 1 can use all the capabilities of the terminal.
  • the card 1 when the card 1 is in the communication state and the card 2 is not in the communication state, the card 1 can use all the capabilities of the terminal, and the card 2 does not use any capabilities.
  • card 1 and card 2 When card 2 enters the communication state, card 1 and card 2 can use part of their capabilities.
  • FIG. 6 it exemplarily shows a schematic flowchart of a method for reporting a capability message, in FIG. 6:
  • Step 301 The card 1 sends the first capability information 1 to the base station, and the card 2 sends the first capability information 2 to the base station.
  • step 201 For specific details, refer to step 201, which will not be repeated here.
  • Step 302 The base station performs configuration based on the first capability information 1 reported by the card 1, and returns a response message.
  • step 202 For specific details, please refer to step 202, which will not be repeated here.
  • step 303 the card 1 uses the first capability set 1, and the card 2 does not use any capability.
  • step 203 For specific details, refer to step 203, which will not be repeated here.
  • step 304 the capabilities of card 1 and card 2 are updated.
  • the card 1 and the card 2 can interact to determine the allocation of capabilities and/or the allocation of time domain resources.
  • the allocation of capabilities and the allocation of time-domain resources may still be the same as indicated in step 204.
  • card 1 can still alternately use all capabilities supported by the terminal (ie, the first capability set 1) and some capabilities (ie, the second capability set 1), while card 2 can alternately use the zero capability set and some capabilities supported by the terminal. (That is, the second ability set 2).
  • card 1 may expect to use the second capability set 1 and the second capability set 3 alternately, and card 2 may expect to use the second capability set 2 and the second capability set 4 alternately, thereby improving the capacity allocation of card 1 and card 2.
  • Fairness For example, taking antenna capabilities as an example, the allocation of capabilities and time domain resources can be as follows: the alternate period is 6ms, card 1 can use 2 antenna ports in the first 3ms of each alternate period, and 6 in the remaining 3ms Antenna ports, card 2 can use 6 antenna ports in the first 3ms of the alternating period, and 2 antenna ports in the remaining 3ms.
  • step 305 the card 1 reports the second capability information 1 and time information 1, and the card 2 reports the second capability information 2 and time information 2.
  • the second capability information 1 may be used to indicate that the card 1 expects to use the second capability set 1 and the second capability set 3, and the time information 1 may be used to indicate the card 1. It is expected that the second capability set 1 and the second capability set 3 are alternately used as indicated by the time information 1.
  • the second capability information 2 can be used to indicate that the card 2 expects to use the second capability set 2 and the second capability set 4, and the time information 2 is used to indicate that the card 2 expects to use the second capability set 2 and the second capability set alternately as indicated by the time information 2.
  • the second capability information 2 can be used to indicate that the card 2 expects to use the second capability set 2 and the second capability set 4, and the time information 2 is used to indicate that the card 2 expects to use the second capability set 2 and the second capability set alternately as indicated by the time information 2.
  • Step 306 The base station feeds back a confirmation response message.
  • step 307 the card 1 executes the capability alternation mode indicated by the second capability information 1 and the time information 1, and the card 2 executes the capability alternation mode indicated by the second capability information 2 and the time information 2.
  • FIG. 7 is a schematic flowchart of a method for reporting capability information in an embodiment of this application, in Fig. 7:
  • Step 401 The terminal sends a first message to a base station, where the first message includes first capability information and second capability information.
  • the terminal may report one or more first capabilities expected to be used in the connected state and one or more second capabilities expected to be used in the subsequent alternate process to the base station in advance.
  • the terminal may send the first capability validation information to the base station to indicate that one or more first capabilities are valid.
  • the first capability validation information may be carried in the first message, or may be sent to the base station separately.
  • whether one or more first capabilities are effective may also be confirmed with the base station in a default manner.
  • the terminal and the base station may pre-appoint the positions of the first capability information and the second capability information in the message or signaling.
  • the capability information with the previous position (position refers to the position in the frame structure of the message or signaling) defaults to the first capability information, that is, the capability that the terminal expects to use immediately .
  • the capability information located at the back is the second capability information by default.
  • the capability information carried in the original field defaults to the first capability information, that is, the capability that the terminal expects to use immediately.
  • the capability information carried in the newly added cell defaults to the second capability information.
  • the base station can identify which cell of the capability information is carried in the message to determine the capability indicated by which capability information needs to be configured, and the capability indicated by which capability information only needs to be saved.
  • the reporting manner of the second capability information may refer to the reporting manner in scenario 1, that is, one or more second capability parameters included in the second capability information may correspond to one or more second capabilities, or may be Corresponds to the updated first ability.
  • Step 402 The terminal sends a second message to the base station, where the second message includes time information.
  • the terminal may send time information to the base station, where the time information is used to indicate the time domain resource allocation of one or more first capabilities and one or more second capabilities, and is also used to instruct the terminal to follow For the time domain resource allocation situation, one or more first capabilities and one or more second capabilities are alternately used.
  • FIG. 8 it exemplarily shows a schematic flowchart of a method for reporting a capability message.
  • FIG. 8 it exemplarily shows a schematic flowchart of a method for reporting a capability message.
  • the terminal may include a first SIM card (hereinafter referred to as card 1) and a second SIM card (hereinafter referred to as card 2), and the card 1 is in a connected state and the card 2 is in an idle state.
  • card 1 a first SIM card
  • card 2 a second SIM card
  • Step 501 The card 1 sends the first capability information 1 and the second capability information 1 to the base station, and the card 2 sends the first capability information 2 to the base station.
  • the card 1 sends the first capability information 1 to the base station to indicate that the card 1 expects to use one or more first capabilities in the first capability set 1 after accessing the network.
  • the card 1 can also send second capability information 1 to the base station to indicate that the card 1 expects to use the first capability set 1 indicated by the first capability information 1 and the first capability set 1 indicated by the first capability information 1 and The second capability set 1 indicated by the second capability information 1.
  • the first capability information 1 and the second capability information 1 may be carried in the initial capability message 1.
  • the card 2 sends the first capability information 2 to the base station to indicate that the card 2 expects to use one or more first capabilities in the first set of capabilities 2 after accessing the network.
  • the card 2 may also send the second capability information 2 to the base station to indicate that the card 2 expects to use the first capability set 2 and the second capability information alternately according to the reported time information in a certain capability update situation 2 indicates the second capability set 2, or alternately uses the second capability 2 and the capability set to be reported again.
  • the specific implementation method also needs to refer to the instructions of the subsequent reported information.
  • the card 1 may indicate that the first capability information 1 is valid, but the second capability information 1 is not valid through a preset manner (refer to the above for the specific manner). And, since the card 2 is in the idle state, when the base station recognizes that the card 2 is in the idle state, only the first capability information 2 and the second capability information 2 are stored (which may be stored in the base station or in the core network).
  • step 502 the base station performs configuration based on the capability message reported by the card 1, and returns a response message.
  • step 503 the card 1 uses the first capability set 1, and the card 2 does not use any capability.
  • step 504 the capabilities of card 1 and card 2 are updated.
  • Step 505 Card 1 reports time information.
  • the steps can still be similar to the steps 205 and 305, that is, the card 1 is in the connected state and the time information can be reported to the base station to indicate that the card 1 expects to follow
  • the time domain resource allocation method of time information uses the first capability set 1 and the second capability set 1 alternately.
  • the card 2 when the card 2 is in the idle state, there is no need to report capability information, and it only needs to alternately use the zero capability set and the second capability set 2 according to the result of the interaction.
  • Step 506 The base station feeds back a confirmation response message.
  • Step 507 The card 1 alternately uses the second capability set 1 and the first capability set 1 according to the indication of the time information.
  • the first capability set 1 and the second capability set 1 can be used alternately.
  • Card 2 is in the idle state, and the base station cannot perceive the card 2, then the card 2 can wake up at a specified time according to the result of the interaction and use the required capabilities to receive data.
  • card 1 reports time information 1, which is used to indicate that card 1 expects to use the first capability set 1 and the second capability alternately according to the time domain resource allocation mode of time information 1. Collection 1. The time information 2 reported by the card 2 is used to indicate that the card 2 expects to alternately use the zero set and the reported second capability set 2 according to the time domain resource allocation mode of the time information 2.
  • the card 2 can also report the second capability information 2 at this stage to indicate that it is expected to alternately use the second capability set 2 and the zero capability set. It should be noted that the resource allocation conditions indicated by time information 1 and time information 2 are different.
  • time information 1 of card 1 indicates that the cycle period is 6 ms, and the first 2 ms of each cycle uses the first capability set 1, every The second capability set 1 is used for the last 4ms of each cycle, the time information 2 of the card 2 indicates that the cycle period is 6ms, the second capability set 2 is used for the first 2ms of each cycle, and the second capability set 2 is used for the last 4ms of each cycle. That is to say, the indicated period and time period are the same, but the allocation of resources corresponding to the capacity use is different.
  • the card 1 may also report the second capability set 1 and the second capability set 3, and the card 2 may report the second capability set 2 and the second capability set 4.
  • the card 1 can alternately use one or more second capabilities indicated by the second capability set 1 and one or more second capabilities indicated by the second capability set 3, and the card 2 can alternately use one or more of the second capabilities indicated by the second capability set 2.
  • FIG. 9 is a schematic flowchart of a method for reporting capability information in an embodiment of this application, and in FIG. 9:
  • Step 601 The terminal sends a first message to the base station, where the first message includes first capability information, second capability information, and time information.
  • the terminal may report to the base station one or more first capabilities expected to be used, one or more second capabilities expected to be used, and the allocation of time domain resources to the base station in advance, and pass the instruction information Activates the alternate use of one or more first abilities and one or more second abilities.
  • scenario one and scenario two which will not be repeated here.
  • Step 602 The terminal sends instruction information to the base station for indicating that it is expected to alternately use the first capability information and the second capability information.
  • the terminal may send indication information to the base station, and the indication information may be carried in a second message, which is used to indicate that the terminal expects to alternately use one or more first messages according to the time domain resource allocation indicated by the time information.
  • One ability and one or more second abilities are used to indicate that the terminal expects to alternately use one or more first messages according to the time domain resource allocation indicated by the time information.
  • the terminal may also send a second message that does not contain the indication information, that is, a null message.
  • the base station may default to the terminal expecting to alternately use one or the other according to the time domain resource allocation indicated by the time information. Multiple first capabilities and one or more second capabilities.
  • FIG. 10 it exemplarily shows a schematic flowchart of a method for reporting a capability message, in FIG. 10:
  • the terminal may include a first SIM card (hereinafter referred to as card 1) and a second SIM card (hereinafter referred to as card 2), and the card 1 is in a connected state and the card 2 is in an idle state.
  • card 1 a first SIM card
  • card 2 a second SIM card
  • Step 701 Card 1 sends first capability information 1, second capability information 1, and time information 1 to the base station, and card 2 sends first capability information 2 to the base station.
  • the card 1 sends the first capability information 1, the second capability information 1, and the time information 1 to the base station, where the first capability information 1 is used to indicate that the card 1 expects to use the first capability information 1 after accessing the network.
  • the time information 1 is used to indicate that the card 1 expects to use the first capability set 1 indicated by the first capability information 1 and the second capability set 1 indicated by the second capability information 1 alternately according to the indication of the time information 1 after the capability is updated.
  • the first capability information 1, the second capability information 1 and the time information 1 may be carried in the initial capability message 1.
  • the card 2 sends the first capability information 2 to the base station to indicate that the card 2 expects to be in the first capability set 2 indicated by the first capability information 2 after accessing the network, and the card 1 is not in the communication state One or more of the first abilities.
  • the card 2 may also report the time information 2 and the second capability information 2, which are used to indicate that the card 2 expects to alternately use the first capability set 2 and the second capability indicated by the first capability information 2 as indicated by the time information 2.
  • the second capability set 2 indicated by the information 2, or the zero capability set and the second capability set 2 are alternately used.
  • the first capability information 2, the second capability information 2 and the time information 2 may be carried in the initial capability message 2.
  • Step 702 The base station performs configuration based on the first capability message 1 reported by the card 1, and returns a response message.
  • step 703 the card 1 uses the first capability set 1, and the card 2 does not use any capability.
  • step 704 the capabilities of card 1 and card 2 are updated.
  • step 705 the card 1 sends instruction information.
  • the indication information may be used to indicate that the card 1 expects to start a manner of using the first capability set 1 and the second capability set 1 alternately.
  • Step 706 The base station feeds back a confirmation response message.
  • Step 707 The card 1 alternately uses the second capability set 1 and the first capability set 1 according to the indication of the time information 1.
  • card 1 indicates information 1, which is used to indicate that card 1 expects to use the first capability set 1 and the second capability set alternately according to the time domain resource allocation mode of time information 1.
  • the card 2 reports instruction information 2, which is used to indicate that the card 2 expects to alternately use the zero set and the reported second capability set 2 according to the time domain resource allocation mode of the time information 2.
  • the card 2 can also report the second capability information and/or time information 2 at this stage to indicate It is expected that the second capability set 2 and the zero capability set are alternately used.
  • the card 1 may also report the second capability set 1 and the second capability set 3, and the card 2 may report the second capability set 2 and the second capability set 4.
  • card 1 can alternately use one or more second capabilities indicated by second capability set 1 and one or more second capabilities indicated by second capability set 3, and card 2 can alternately use one or more second capabilities indicated by capability set 2 The multiple second capabilities and one or more second capabilities indicated by the second capability set 4.
  • FIG. 11 it exemplarily shows a schematic flowchart of a method for reporting a capability message, in FIG. 11:
  • the terminal may include a first SIM card (hereinafter referred to as card 1) and a second SIM card (hereinafter referred to as card 2), and the card 1 is in the connected state and the card 2 is in the connected state.
  • card 1 is an example for detailed description.
  • this embodiment proposes a method for reporting capability information.
  • the main card card 1
  • the data receiving capability of card 2 is improved.
  • step 801 is executed.
  • Step 801 The card 1 sends first capability information to the base station.
  • the card 1 may send the first capability information to the base station to indicate that the card 1 expects to use one or more first capability information.
  • the card 1 can use all uplink capabilities or downlink capabilities supported by the terminal.
  • Card 2 does not use any abilities.
  • step 802 is executed.
  • Step 802 The card 1 sends second capability information to the base station.
  • card 1 and card 2 can respectively occupy part of the capabilities supported by the terminal.
  • the card 1 can use all the antennas supported by the terminal (for example, 8 antenna ports).
  • card 1 can occupy 4 antenna ports, and card 2 can occupy 4 antenna ports.
  • the specific ability value can be set according to actual needs, and this application does not limit it.
  • the card 1 may send the second capability information 1 to the base station to indicate that the card 1 expects to use one or more second capabilities indicated by the second capability information.
  • the card 2 can send the second capability information 2 to the base station to indicate that the card 2 expects to use one or more second capabilities (the steps of the card 2 are not shown in the figure).
  • the method of reporting the second capability information described in scenario one may be used. That is, for one or more second capability parameters included in the second capability information, one or more second capability parameters may correspond to one or more second capabilities. Alternatively, one or more second capability parameters may also correspond to one or more updated capabilities.
  • the terminal includes hardware structures and/or software modules corresponding to each function.
  • the embodiments of the present application can be implemented in the form of hardware or a combination of hardware and computer software. Whether a certain function is executed by hardware or computer software-driven hardware depends on the specific application and design constraint conditions of the technical solution. Professionals and technicians can use different methods for each specific application to implement the described functions, but such implementation should not be considered beyond the scope of this application.
  • the embodiment of the present application may divide the terminal into functional modules according to the foregoing method examples.
  • each functional module may be divided corresponding to each function, or two or more functions may be integrated into one processing module.
  • the above-mentioned integrated modules can be implemented in the form of hardware or software functional modules. It should be noted that the division of modules in the embodiments of the present application is illustrative, and is only a logical function division, and there may be other division methods in actual implementation.
  • FIG. 12 shows a possible schematic diagram of the structure of the terminal 200 involved in the above embodiment, as shown in FIG. As shown in 12, the terminal may include: a sending module 201.
  • the sending module 201 can be used to "send first capability information to a network device to indicate one or more first capabilities supported by the terminal", “send second capability information to the network device to indicate all One or more second capabilities supported by the terminal, and the one or more first capabilities are different from the one or more second capabilities" and "send time information to the network device to indicate alternate use
  • the one or more first capabilities and the one or more second capabilities for example, this module can be used to support the terminal to perform step 101, step 102, step 201, and step 205 in the above method embodiment.
  • the device includes a processing module 301 and a communication module 302.
  • the device further includes a storage module 303.
  • the processing module 301, the communication module 302, and the storage module 303 are connected by a communication bus.
  • the communication module 302 may be a device with a transceiver function, and is used to communicate with other network equipment or a communication network.
  • the storage module 303 may include one or more memories, and the memories may be devices for storing programs or data in one or more devices or circuits.
  • the storage module 303 can exist independently and is connected to the processing module 301 through a communication bus.
  • the storage module can also be integrated with the processing module 301.
  • the apparatus 300 may be used in network equipment, circuits, hardware components, or chips.
  • the apparatus 300 may be a terminal in an embodiment of the present application, for example, the terminal 300.
  • the schematic diagram of the terminal can be as shown in Figure 2.
  • the communication module 302 of the apparatus 300 may include an antenna and a transceiver of the terminal, for example, the antenna 106 and the transceiver 102 in FIG. 2.
  • the communication module 302 may also include an output device and an input device, such as the output device 104 and the input device 105 in FIG. 2.
  • the device 300 may be a chip in the terminal in the embodiment of the present application.
  • the communication module 302 may be an input or output interface, pin or circuit, or the like.
  • the storage module may store computer execution instructions of the method on the terminal side, so that the processing module 301 executes the method on the terminal side in the foregoing embodiment.
  • the storage module 303 can be a register, a cache or RAM, etc.
  • the storage module 303 can be integrated with the processing module 301; the storage module 303 can be a ROM or other types of static storage devices that can store static information and instructions.
  • the storage module 303 can be integrated with The processing module 301 is independent.
  • the transceiver may be integrated on the device 300.
  • the device 300 When the device 300 is the terminal or the chip in the terminal in the embodiment of the present application, the device 300 can implement the method executed by the terminal in the foregoing embodiment, which will not be repeated here.
  • the embodiment of the present application also provides a computer-readable storage medium.
  • the methods described in the foregoing embodiments may be implemented in whole or in part by software, hardware, firmware, or any combination thereof. If implemented in software, the functions can be stored as one or more instructions or codes on a computer-readable medium or transmitted on the computer-readable medium.
  • Computer-readable media may include computer storage media and communication media, and may also include any media that can transfer a computer program from one place to another.
  • the storage medium may be any available medium that can be accessed by a computer.
  • the computer-readable medium may include RAM, ROM, EEPROM, CD-ROM or other optical disk storage, magnetic disk storage or other magnetic storage devices, or any other medium that can be used for carrying or with instructions or data structures
  • the required program code is stored in the form of and can be accessed by the computer.
  • any connection is properly termed a computer-readable medium.
  • coaxial cable, fiber optic cable, twisted pair, digital subscriber line (DSL) or wireless technology such as infrared, radio and microwave
  • coaxial cable, fiber optic cable , Twisted pair, DSL or wireless technologies such as infrared, radio, and microwave are included in the definition of the medium.
  • Magnetic disks and optical disks as used herein include compact disks (CDs), laser disks, optical disks, digital versatile disks (DVDs), floppy disks and blu-ray disks, where disks usually reproduce data magnetically, while optical disks use lasers to optically reproduce data. Combinations of the above should also be included in the scope of computer-readable media.
  • the embodiment of the present application also provides a computer program product.
  • the methods described in the foregoing embodiments may be implemented in whole or in part by software, hardware, firmware, or any combination thereof. If it is implemented in software, it can be fully or partially implemented in the form of a computer program product.
  • the computer program product includes one or more computer instructions. When the above computer program instructions are loaded and executed on the computer, the processes or functions described in the above method embodiments are generated in whole or in part.
  • the above-mentioned computer may be a general-purpose computer, a special-purpose computer, a computer network, network equipment, user equipment, or other programmable devices.
  • the functions described in the embodiments of the present application may be implemented by hardware, software, firmware, or any combination thereof. When implemented by software, these functions can be stored in a computer-readable medium or transmitted as one or more instructions or codes on the computer-readable medium.
  • the computer-readable medium includes a computer storage medium and a communication medium, where the communication medium includes any medium that facilitates the transfer of a computer program from one place to another.
  • the storage medium may be any available medium that can be accessed by a general-purpose or special-purpose computer.

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Abstract

Des modes de réalisation de la présente invention concernent un procédé de rapport d'informations de capacité et un terminal, le procédé comprenant les étapes suivantes : un terminal envoie des premières informations de capacité à un dispositif de réseau, les premières informations de capacité pouvant être utilisées pour indiquer une ou plusieurs premières capacités prises en charge par le terminal ; et le terminal envoie des secondes informations de capacité au dispositif de réseau, les secondes informations de capacité pouvant être utilisées pour indiquer une ou plusieurs secondes capacités prises en charge par le terminal, au moins une capacité parmi la ou les premières capacités n'étant pas la même qu'au moins une capacité parmi la ou les secondes capacités. De plus, le terminal peut également envoyer des informations temporelles au dispositif de réseau, lesdites informations étant utilisées pour ordonner l'utilisation alternée de la ou des premières capacités et de la ou des secondes capacités, fournissant ainsi un moyen complet et flexible pour rapporter des informations de capacité.
PCT/CN2020/096138 2019-08-09 2020-06-15 Procédé de rapport d'informations de capacité et terminal WO2021027387A1 (fr)

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