WO2023028962A1 - 一种信息传输方法和装置 - Google Patents
一种信息传输方法和装置 Download PDFInfo
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- WO2023028962A1 WO2023028962A1 PCT/CN2021/116297 CN2021116297W WO2023028962A1 WO 2023028962 A1 WO2023028962 A1 WO 2023028962A1 CN 2021116297 W CN2021116297 W CN 2021116297W WO 2023028962 A1 WO2023028962 A1 WO 2023028962A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/08—Non-scheduled access, e.g. ALOHA
- H04W74/0808—Non-scheduled access, e.g. ALOHA using carrier sensing, e.g. carrier sense multiple access [CSMA]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/40—Resource management for direct mode communication, e.g. D2D or sidelink
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/30—Services specially adapted for particular environments, situations or purposes
- H04W4/40—Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/70—Services for machine-to-machine communication [M2M] or machine type communication [MTC]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/54—Allocation or scheduling criteria for wireless resources based on quality criteria
- H04W72/543—Allocation or scheduling criteria for wireless resources based on quality criteria based on requested quality, e.g. QoS
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/56—Allocation or scheduling criteria for wireless resources based on priority criteria
- H04W72/566—Allocation or scheduling criteria for wireless resources based on priority criteria of the information or information source or recipient
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/002—Transmission of channel access control information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/08—Non-scheduled access, e.g. ALOHA
- H04W74/0808—Non-scheduled access, e.g. ALOHA using carrier sensing, e.g. carrier sense multiple access [CSMA]
- H04W74/0816—Non-scheduled access, e.g. ALOHA using carrier sensing, e.g. carrier sense multiple access [CSMA] with collision avoidance
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
- H04L1/18—Automatic repetition systems, e.g. Van Duuren systems
- H04L1/1829—Arrangements specially adapted for the receiver end
- H04L1/1861—Physical mapping arrangements
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W92/00—Interfaces specially adapted for wireless communication networks
- H04W92/16—Interfaces between hierarchically similar devices
- H04W92/18—Interfaces between hierarchically similar devices between terminal devices
Definitions
- the present disclosure relates to the field of communication technologies, and in particular, to an information transmission method and device.
- the long term evolution (LTE) supports end-to-end communication in the cellular network.
- the link such as uplink (UL) and downlink (DL)
- DL downlink
- UE user equipment
- SL UE-to-UE direct link
- the UE needs to perform LBT (listen before talk) for SL transmission in the unlicensed frequency band, but currently there is no channel access method of PSFCH (physical sidelink feedback channel, physical direct connection feedback channel) to monitor the channel.
- PSFCH physical sidelink feedback channel, physical direct connection feedback channel
- Embodiments of the present disclosure provide an information transmission method and device, which can be applied to the Internet of Vehicles, such as vehicle-to-everything (V2X) communication, long-term evolution-vehicle (LTE-V) technology for vehicle-to-vehicle communication, Vehicle-to-vehicle (V2V) communication, etc., may be used in intelligent driving, intelligent networked vehicles and other fields.
- V2X vehicle-to-everything
- LTE-V long-term evolution-vehicle
- V2V Vehicle-to-vehicle
- an embodiment of the present disclosure provides an information transmission method, the method is executed by the first terminal, and the method includes: performing the first type The channel access method of the first type listens to the channel or the channel access method of the second type listens to the channel.
- the first type of channel access method can be used to access the channel monitoring channel or the second The type of channel access method to access the channel to listen to the channel.
- the first terminal can transmit the PSFCH in the unlicensed frequency band to perform the first type of channel access method to access the channel monitoring channel or the second type of channel access method to access the channel monitoring channel, so as to realize the transmission of PSFCH, and Improve the reliability of direct communication.
- the method further includes: before the first terminal transmits the PSFCH, if there is no shareable channel occupancy time COT of the second terminal, the first terminal uses The first channel access priority is used to monitor the channel in the first type of channel access mode.
- the first terminal uses the first channel access priority to monitor the channel in the first type of channel access method, including: when the first terminal only transmits the PSFCH, the The first terminal uses the first channel access priority configured by the network device to monitor the channel in the first type of channel access mode, or the first terminal uses the physical direct shared channel PSSCH corresponding to the PSFCH
- the first channel access priority with the same channel access priority of the carried data performs the first type of channel access mode to monitor the channel.
- the first channel access priority configured by the network device includes: the first channel access priority configured by the network device based on cell-specific or UE-specific configuration. priority.
- the first channel access priority configured by the network device includes: the first channel access priority configured by the network device as the highest channel access priority, or The first channel access priority configured by the network device is not the highest channel access priority.
- the method further includes: determining the channel access priority of the data carried on the PSSCH according to the QoS flow identifier of the data carried on the PSSCH.
- the first terminal uses the first channel access priority to monitor the channel in the first type of channel access mode, including: after the first terminal transmits the PSFCH, also transmits the PSSCH In this case, when the channel access priority of the data carried on the PSSCH transmitted after the PSFCH is the second channel access priority, the first terminal uses the same channel access priority as the second channel access priority.
- the first channel access priority of the same level is used to monitor the channel in the first type of channel access mode.
- the method further includes: determining the channel access priority of the data carried on the PSSCH according to the QoS flow identifier of the data carried on the PSSCH.
- the first terminal uses the first channel access priority to monitor the channel in the first type of channel access mode, including: after the first terminal transmits the PSFCH, also transmits the PSSCH In the case where the first terminal is pre-configured to use the third channel access priority to monitor the channel in the first type of channel access mode, and the channel access priority of the data carried on the PSSCH transmitted after the PSFCH
- the first channel access priority is the same as the lower one of the third channel access priority and the second channel access priority
- the The first terminal uses the first channel access priority to monitor the channel in a first type of channel access manner.
- the pre-configuring the first terminal to use the third channel access priority to perform the first type of channel access method to monitor the channel further includes:
- the third channel access priority with the same channel access priority of data is used to monitor the channel in the first type of channel access manner.
- the third channel access priority configured by the network device includes: the third channel access priority configured by the network device based on cell-specific or UE-specific configuration. priority.
- the third channel access priority configured by the network device includes: the third channel access priority configured by the network device as the highest channel access priority, or The third channel access priority configured by the network device is not the highest channel access priority.
- the method further includes: determining the channel access priority of the data carried on the PSSCH according to the QoS flow identifier of the data carried on the PSSCH.
- the channel access method of the second type includes: a Type2A channel access method, a Type2B channel access method, and a Type2C channel access method; the method further includes: obtaining the network device configuration First indication information: according to the first indication information, the first terminal performs channel monitoring in a Type2A channel access mode, a Type2B channel access mode monitoring channel, or a Type2C channel access mode monitoring channel.
- the acquiring the first indication information configured by the network device further includes: acquiring the first indication information based on the cell-specific or terminal-specific UE-specific configuration of the network equipment.
- the method further includes: before the first terminal transmits the PSFCH, if there is a shareable channel occupancy time COT of the second terminal, the first terminal performs the The second type of channel access method is described above to monitor the channel.
- an embodiment of the present disclosure provides another information transmission method, the method is executed by a network device, and the method includes: configuring the first indication information and/or the first channel access priority for the first terminal; wherein, the The first instruction information instructs the first terminal to perform Type2A channel access mode monitoring channel or Type2B channel access mode monitoring channel or Type2C channel access mode monitoring channel; the first channel access priority is the first The terminal monitors the channel access priority of the channel in the first type of channel access mode.
- the method further includes: configuring the first indication information and/or the first channel access priority for the first terminal based on cell-specific or terminal-specific UE-specific class.
- the embodiment of the present disclosure provides an information transmission device, which has some or all functions of the first terminal in the method described in the first aspect above, for example, the function of the information transmission device can have the The functions of some or all of the embodiments may also have the functions of independently implementing any one of the embodiments in the present disclosure.
- the functions described above may be implemented by hardware, or may be implemented by executing corresponding software on the hardware.
- the hardware or software includes one or more units or modules corresponding to the above functions.
- the structure of the information transmission device may include a transceiver module and a processing module, and the processing module is configured to support the communication device to perform corresponding functions in the above method.
- the transceiver module is used to support communication between the information transmission device and other devices.
- the information transmission device may further include a storage module, which is used to be coupled with the transceiver module and the processing module, and stores necessary computer programs and data of the information transmission device.
- the processing module may be a processor
- the transceiver module may be a transceiver or a communication interface
- the storage module may be a memory
- the information transmission device includes: a processing module, configured to perform the first type of channel access mode to monitor the channel or The second type of channel access method monitors the channel.
- the embodiment of the present disclosure provides another information transmission device, which has some or all functions of the network device in the method example described in the second aspect above, for example, the function of the information transmission device can have the functions of the present disclosure. Some or all of the functions in the embodiments may also have the functions of independently implementing any one of the embodiments in the present disclosure.
- the functions described above may be implemented by hardware, or may be implemented by executing corresponding software on the hardware.
- the hardware or software includes one or more units or modules corresponding to the above functions.
- the structure of the information transmission device may include a transceiver module and a processing module, and the processing module is configured to support the communication device to perform corresponding functions in the above method.
- the transceiver module is used to support the communication between the information transmission device and other devices.
- the information transmission device may further include a storage module, which is used to be coupled with the transceiver module and the processing module, and stores necessary computer programs and data of the information transmission device.
- the communication device includes: a transceiver module configured to configure first indication information and/or a first channel access priority for the first terminal; wherein the first indication information indicates the first channel access priority; A terminal performs Type2A channel access mode monitoring channel or Type2B channel access mode monitoring channel or Type2C channel access mode monitoring channel; the first channel access priority is that the first terminal performs the first type of channel access The channel access priority of the mode listening channel.
- an embodiment of the present disclosure provides a communication device, where the communication device includes a processor, and when the processor invokes a computer program in a memory, executes the method described in the first aspect above.
- an embodiment of the present disclosure provides a communication device, where the communication device includes a processor, and when the processor invokes a computer program in a memory, it executes the method described in the second aspect above.
- an embodiment of the present disclosure provides a communication device, the communication device includes a processor and a memory, and a computer program is stored in the memory; the processor executes the computer program stored in the memory, so that the communication device executes The method described in the first aspect above.
- an embodiment of the present disclosure provides a communication device, the communication device includes a processor and a memory, and a computer program is stored in the memory; the processor executes the computer program stored in the memory, so that the communication device executes The method described in the second aspect above.
- an embodiment of the present disclosure provides a communication device, the device includes a processor and an interface circuit, the interface circuit is used to receive code instructions and transmit them to the processor, and the processor is used to run the code instructions to make the The device executes the method described in the first aspect above.
- an embodiment of the present disclosure provides a communication device, the device includes a processor and an interface circuit, the interface circuit is used to receive code instructions and transmit them to the processor, and the processor is used to run the code instructions to make the The device executes the method described in the second aspect above.
- an embodiment of the present disclosure provides an information transmission system, the system includes the communication device described in the third aspect and the communication device described in the fourth aspect, or, the system includes the communication device described in the fifth aspect And the communication device described in the sixth aspect, or, the system includes the communication device described in the seventh aspect and the communication device described in the eighth aspect, or, the system includes the communication device described in the ninth aspect and the communication device described in the tenth aspect The communication device.
- the embodiment of the present invention provides a computer-readable storage medium, which is used to store instructions used by the above-mentioned terminal equipment, and when the instructions are executed, the terminal equipment executes the above-mentioned first aspect. method.
- an embodiment of the present invention provides a readable storage medium for storing instructions used by the above-mentioned network equipment, and when the instructions are executed, the network equipment executes the method described in the above-mentioned second aspect .
- the present disclosure further provides a computer program product including a computer program, which, when run on a computer, causes the computer to execute the method described in the first aspect above.
- the present disclosure further provides a computer program product including a computer program, which, when run on a computer, causes the computer to execute the method described in the second aspect above.
- the present disclosure provides a chip system
- the chip system includes at least one processor and an interface, used to support the terminal device to implement the functions involved in the first aspect, for example, determine or process the data involved in the above method and at least one of information.
- the chip system further includes a memory, and the memory is configured to store necessary computer programs and data of the terminal device.
- the system-on-a-chip may consist of chips, or may include chips and other discrete devices.
- the present disclosure provides a chip system
- the chip system includes at least one processor and an interface, used to support the network device to implement the functions involved in the second aspect, for example, determine or process the data involved in the above method and at least one of information.
- the chip system further includes a memory, and the memory is used for saving necessary computer programs and data of the network device.
- the system-on-a-chip may consist of chips, or may include chips and other discrete devices.
- the present disclosure provides a computer program that, when run on a computer, causes the computer to execute the method described in the first aspect above.
- the present disclosure provides a computer program that, when run on a computer, causes the computer to execute the method described in the second aspect above.
- FIG. 1 is an architecture diagram of a communication system provided by an embodiment of the present disclosure
- FIG. 2 is a flowchart of an information transmission method provided by an embodiment of the present disclosure
- Fig. 3 is a flowchart of another information transmission method provided by an embodiment of the present disclosure.
- FIG. 4 is a structural diagram of an information transmission device provided by an embodiment of the present disclosure.
- FIG. 5 is a structural diagram of a communication device provided by an embodiment of the present disclosure.
- FIG. 6 is a structural diagram of a chip provided by an embodiment of the present disclosure.
- V2X Vehicle-to-everything
- V2X communication refers to the communication between a vehicle and anything in the outside world.
- V2X communication can include but not limited to: vehicle to vehicle (V2V) communication, vehicle to pedestrian (V2P) communication, vehicle to infrastructure (vehicle to vehicle) to infrastructure (V2I) communication, and vehicle to network (V2N) communication.
- V2V vehicle to vehicle
- V2P vehicle to pedestrian
- V2I vehicle to infrastructure
- V2N vehicle to network
- FIG. 1 is a schematic structural diagram of a communication system 10 provided by an embodiment of the present disclosure.
- the communication system 10 may include, but is not limited to, a network device and a terminal.
- the communication system 10 shown in FIG. 1 includes one network device 101 and one terminal 102 as an example.
- LTE long term evolution
- 5th generation 5th generation
- 5G new radio new radio, NR
- side link in the embodiment of the present disclosure may also be referred to as a direct link or a direct link.
- the network device 101 in the embodiment of the present disclosure is an entity on the network side for transmitting or receiving signals.
- the network device 101 may be an evolved base station (evolved NodeB, eNB), a transmission point (transmission reception point, TRP), a next generation base station (next generation NodeB, gNB) in an NR system, or a base station in other future mobile communication systems Or an access node in a wireless fidelity (wireless fidelity, WiFi) system, etc.
- eNB evolved NodeB
- TRP transmission reception point
- gNB next generation base station
- gNB next generation NodeB
- the embodiments of the present disclosure do not limit the specific technology and specific device form adopted by the network device.
- the network device provided by the embodiment of the present disclosure may be composed of a centralized unit (central unit, CU) and a distributed unit (distributed unit, DU), wherein the CU may also be called a control unit (control unit), and the CU-DU
- the structure of the network device such as the protocol layer of the base station, can be separated, and the functions of some protocol layers are placed in the centralized control of the CU, and the remaining part or all of the functions of the protocol layer are distributed in the DU, and the CU centrally controls the DU.
- the terminal 102 in the embodiment of the present disclosure is an entity on the user side for receiving or transmitting signals, such as a mobile phone.
- a terminal may also be called a terminal (terminal), user equipment (user equipment, UE), mobile station (mobile station, MS), mobile terminal (mobile terminal, MT), etc.
- the terminal can be a car with communication function, smart car, mobile phone, wearable device, tablet computer (Pad), computer with wireless transceiver function, virtual reality (virtual reality, VR) terminal, augmented reality (augmented reality) , AR) terminals, wireless terminals in industrial control, wireless terminals in self-driving, wireless terminals in remote medical surgery, wireless terminals in smart grid Terminals, wireless terminals in transportation safety, wireless terminals in smart city, wireless terminals in smart home, etc.
- the embodiments of the present disclosure do not limit the specific technology and specific device form adopted by the terminal.
- FIG. 2 is a flowchart of an information transmission method provided by an embodiment of the present disclosure.
- the method is executed by the first terminal, and the method may include but not limited to the following steps:
- terminals can communicate directly through a direct link (such as a sidelink (SL)).
- a direct link such as a sidelink (SL)
- the third generation partnership project 3rd generation partnership project, 3GPP
- PSFCH can be used to send direct connection feedback control information (sidelink feedback control information, SFCI)
- SFCI may at least include information that the receiving end feeds back to the sending end whether the data is successfully received.
- the sending end may include data in a physical direct shared channel (physical sidelink shared channel, PSSCH) and send it to the receiving end (for example: the first terminal), After the receiving end (for example: the first terminal) receives the data sent by the sending end (for example: other terminals other than the first terminal), it can transmit the data to the sending end (for example: other terminals outside the first terminal) on the PSFCH channel according to the data reception situation.
- PSSCH physical sidelink shared channel
- Other terminals send SFCI, and the receiving end (for example: other terminals other than the first terminal) can select appropriate resources to reschedule data according to the SFCI after receiving the SFCI, so as to improve the success rate of data transmission, thereby improving the reliability of direct communication .
- the first terminal when the first terminal transmits the PSFCH in the unlicensed frequency band, it needs to access the channel in a contention manner, that is, LBT (listen before talk) needs to be performed before accessing the channel. Only when the channel is idle, the first terminal can access the channel to transmit PSFCH. Compared with the licensed frequency band, communication in the unlicensed frequency band has certain uncertainties. The uncertainty is caused by the idle state of the channel. Through competition The method can ensure the fairness of using the first terminal in the frequency band to access the channel.
- the first terminal may sense the channel, for example, by using the LBT method, so as to evaluate the usability of the channel for PSFCH transmission.
- the channel access manner may include, for example: a first type of channel access manner and a second type of channel access manner.
- the first type of channel access manner may be a Type1 channel access manner
- the second type of channel access manner may be a Type2 channel access manner.
- the first type of channel access method can be used to access the channel monitoring channel or the second type of channel access method Access the channel to listen to the channel.
- the first terminal can transmit the PSFCH in the unlicensed frequency band to perform the first type of channel access method to access the channel monitoring channel or the second type of channel access method to access the channel monitoring channel, so as to realize the transmission of PSFCH, and Improve the reliability of direct communication.
- the first terminal uses the first channel access priority to perform the first type of channel access method to access the channel monitoring channel, including: when the first terminal only transmits PSFCH, the first terminal uses the network The first channel access priority configured by the device performs the first type of channel access method to access the channel monitoring channel, or the first terminal uses the channel access priority of the data carried on the physical direct shared channel PSSCH corresponding to PSFCH The same first channel access priority is used to access the channel monitoring channel in the first type of channel access manner.
- the first terminal after receiving the PSSCH of another terminal, the first terminal will transmit PSFCH to the other terminal. Perform the first type of channel access method to access the channel monitoring channel, or the first terminal uses the same first channel access priority as the channel access priority of the data carried on the physical direct shared channel PSSCH corresponding to PSFCH Perform the first type of channel access mode to access the channel monitoring channel.
- the channel access priority of the data carried on the PSSCH is determined according to the QoS flow identifier of the data carried on the PSSCH.
- the channel access priority of the data carried on the PSSCH corresponding to the PSFCH is determined according to the quality of service flow identifier of the data carried on the PSSCH.
- the first channel access priority configured by the network device includes: the first channel access priority configured by the network device based on cell-specific or terminal-specific UE-specific configuration.
- the network device configures the first channel access priority based on the specific cell-specificity of the cell, and the network device can configure the same first channel access priority for the terminals in the cell, and different terminals located in the same cell
- the channel access priority is the same; the network device can configure the first channel access priority for the terminals in the cell for the network device based on the terminal-specific UE-specific configuration of the first channel access priority.
- the channel access priorities of the terminals may be different.
- the first channel access priority configured by the network device includes: the first channel access priority configured by the network device as the highest channel access priority, or the first channel access priority configured by the network device as the non-highest channel access priority. The first channel access priority of the input priority.
- the network device configures the first channel access priority which is not the highest channel access priority. It can be understood that the channel access priority P for the first terminal to transmit PSFCH may also be not equal to 1.
- the first terminal uses the first channel access priority to perform the first type of channel access method to monitor the channel, including: after the first terminal transmits the PSFCH, and also transmits the PSSCH, transmits after the PSFCH
- the first terminal uses the same first channel access priority as the second channel access priority to perform the first type of The channel access method monitors the channel.
- the first terminal transmits PSFCH to other terminals to inform other terminals whether the information is successfully received, and then the first terminal also transmits PSSCH to other terminals.
- a terminal has other data that needs to be newly sent to other terminals.
- the channel access priority of the first terminal to transmit the data carried on the PSSCH is known, for example: the second channel access priority, in this case, the first terminal uses the same channel access priority as the second channel access priority
- the first channel access priority is used to monitor the channel in the first type of channel access mode.
- the channel access priority of the data carried on the PSSCH is determined according to the quality of service flow identifier of the data carried on the PSSCH.
- the channel access priority of the data carried on the PSSCH is determined according to the quality of service flow identifier of the data carried on the PSSCH.
- the first terminal uses the first channel access priority to perform the first type of channel access method to monitor the channel, including: after the first terminal transmits the PSFCH, and also transmits the PSSCH, in the pre-configured first A terminal uses the third channel access priority to monitor the channel in the first type of channel access mode, and when the channel access priority of the data carried on the PSSCH transmitted after the PSFCH is the second channel access priority,
- the first channel access priority is the same as the lower one of the third channel access priority and the second channel access priority, and the first terminal uses the first channel access priority to monitor in the first type of channel access mode channel.
- the first terminal when the first terminal is pre-configured to use the third channel access priority to monitor the channel in the first type of channel access mode, and there is channel access of data carried on the PSSCH transmitted after the PSFCH
- the priority is the second channel access priority
- the third channel access priority is compared with the second channel access priority, and the first terminal With the channel access priority being the lower one, the first terminal uses the first channel access priority to monitor the channel in a first type of channel access manner.
- pre-configuring the first terminal to use the third channel access priority to monitor the channel in the first type of channel access method also includes: pre-configuring the first terminal to use the third channel access priority configured by the network device monitor the channel in the first type of channel access mode, or pre-configure the first terminal to use the third channel access priority that is the same as the channel access priority of the data carried on the PSSCH corresponding to the PSFCH to perform the first type
- the channel access method monitors the channel.
- the channel access priority of the data carried on the PSSCH is determined according to the QoS flow identifier of the data carried on the PSSCH.
- the channel access priority of the data carried on the PSSCH corresponding to the PSFCH is determined according to the quality of service flow identifier of the data carried on the PSSCH.
- the third channel access priority configured by the network device includes: the third channel access priority configured by the network device based on a cell-specific or UE-specific configuration of a terminal.
- the network device configures the third channel access priority based on the specific cell-specific configuration of the cell, and the network device can configure the same third channel access priority for the terminals in the cell, and different terminals located in the same cell
- the channel access priority is the same; based on the terminal-specific UE-specific configuration of the third channel access priority, the network device can configure the third channel access priority for the terminals in the cell respectively for the network device. Different terminals located in the same cell The channel access priority can be different.
- the third channel access priority configured by the network device includes: the third channel access priority configured by the network device as the highest channel access priority, or the third channel access priority configured by the network device as a non-highest channel access priority The third channel access priority of the input priority.
- the network device configures the third channel access priority which is not the highest channel access priority. It can be understood that the channel access priority P for the first terminal to transmit the PSFCH may also be not equal to 1.
- the second type of channel access method includes: Type2A channel access method, Type2B channel access method and Type2C channel access method; the method also includes: obtaining the first indication information configured by the network device ; According to the first indication information, the first terminal monitors the channel in the Type 2A channel access mode, monitors the channel in the Type 2B channel access mode, or monitors the channel in the Type 2C channel access mode.
- the second type of channel access method Type2 channel access method includes multiple subtypes with different sensing intervals, for example: Type2A channel access method, Type2B channel access method and Type2C channel access method.
- the first terminal may transmit the PSFCH immediately after sensing that the channel is idle at least at a sensing interval (for example, 25us).
- a sensing interval for example, 25us
- the first terminal may transmit the PSFCH immediately after sensing that the channel is idle within a specific duration (for example, 16us).
- the first terminal can transmit the PSFCH without sensing the channel.
- the Type 2A channel access method may be a single time slot detection of a 25us channel, and the channel detection starts 25us before the start.
- One 16us detection and one 9us detection if they are both idle, they are considered idle.
- the Type2B channel access method may be a channel detection with a fixed length of 16 microseconds and a single detection time slot. If the detection is in the last 9us, the channel is considered to be idle if there is more than 4us. (short LBT method)
- the Type2C channel access method can be directly transmitted without channel detection, because the time difference between this transmission and the previous transmission is less than 16us, it is considered to be the same transmission, and the transmission length does not exceed 584 microseconds.
- acquiring the first indication information configured by the network device further includes: acquiring the first indication information based on the cell-specific or terminal-specific UE-specific configuration of the network equipment.
- the network device configures the first indication information based on the specific cell-specific configuration of the cell, and the network device may configure the same first indication information for the terminals in the cell, and the first indication information of different terminals located in the same cell is the same; Based on the UE-specific first indication information configured by the terminal, the network device may configure the first indication information for the terminals in the cell respectively for the network device, and the first indication information of different terminals located in the same cell may be different.
- the first terminal before the first terminal transmits the PSFCH, if there is a shareable channel occupancy time COT of the second terminal, the first terminal performs the second type of channel access mode to monitor the channel.
- the first terminal before the first terminal transmits the PSFCH, if there is a shareable channel occupancy time COT of the second terminal, the first terminal monitors the channel in a second type of channel access manner.
- FIG. 3 is a flowchart of another information transmission method provided by an embodiment of the present disclosure.
- the method is performed by a network device, and the method may include but not limited to the following steps:
- S10 Configure the first indication information and/or the first channel access priority for the first terminal; wherein, the first indication information instructs the first terminal to perform Type2A channel access mode monitoring channel or Type2B channel access mode monitoring channel or Type2C The channel is monitored in a channel access manner; the first channel access priority is the channel access priority of the first terminal to monitor the channel in the first type of channel access manner.
- the network device configures the first indication information and/or the first channel access priority for the first terminal, so that the first terminal performs Type2A channel access mode monitoring channel or Type2B channel access mode monitoring channel or Type2C
- the channel is monitored in a channel access manner, and/or the first terminal performs the first type of channel access manner to monitor the channel.
- the first indication information and/or the first channel access priority are configured for the first terminal based on cell-specific or terminal-specific UE-specific.
- the network device configures the first indication information for the first terminal based on cell-specific or UE-specific.
- the network device configures the first indication information based on the specific cell-specific configuration of the cell, and the network device may configure the same first indication information for the terminals in the cell, and the first indication information of different terminals located in the same cell is the same; Based on the UE-specific first indication information configured by the terminal, the network device may configure the first indication information for the terminals in the cell respectively for the network device, and the first indication information of different terminals located in the same cell may be different.
- the network device configures the first channel access priority for the first terminal based on cell-specific or UE-specific.
- the network device configures the first channel access priority based on the cell-specific configuration, and the network device can configure the same channel access priority for terminals in the cell, and the channel access priority of different terminals located in the same cell The same access priority; the network device can configure the channel access priority for the terminals in the cell for the network device based on the first channel access priority of the terminal-specific UE-specific configuration, and the channel access priority of different terminals in the same cell
- the input priority can be different.
- the methods provided in the embodiments of the present disclosure are introduced from the perspectives of the network device and the first terminal respectively.
- the network device and the first terminal may include a hardware structure and a software module, and realize the above-mentioned functions in the form of a hardware structure, a software module, or a hardware structure plus a software module.
- a certain function among the above-mentioned functions may be implemented in the form of a hardware structure, a software module, or a hardware structure plus a software module.
- FIG. 4 is a schematic structural diagram of an information transmission device 1 provided by an embodiment of the present disclosure.
- the communication device 1 shown in FIG. 4 may include a transceiver module 11 and a processing module 12 .
- the transceiver module 11 may include a sending module and/or a receiving module, the sending module is used to realize the sending function, the receiving module is used to realize the receiving function, and the sending and receiving module 12 can realize the sending function and/or the receiving function.
- the information transmission device 1 may be a terminal (such as the first terminal in the foregoing method embodiments), or a device in a terminal, or a device that can be matched with a terminal.
- the information transmission device 1 may be a network device, or a device in the network device, or a device that can be matched with the network device.
- the information transmission device 1 is a terminal device (such as the first terminal device in the foregoing method embodiment):
- the device includes: a processing module, configured to monitor the channel in the first type of channel access mode or in the second type of channel access mode when the first terminal transmits a physical direct connection feedback channel PSFCH in an unlicensed frequency band channel.
- the information transmission device 1 is a network device:
- the device includes: a transceiver module, configured to configure first indication information and/or first channel access priority for the first terminal; wherein, the first indication information instructs the first terminal to perform Type2A channel access mode monitoring channel or Type2B The channel is monitored in the channel access mode or the channel is monitored in the Type2C channel access mode; the first channel access priority is the channel access priority of the first terminal to monitor the channel in the first type of channel access mode.
- the information transmission device 1 in the above embodiment the specific manner in which each module executes operations has been described in detail in the embodiment related to the method, and will not be described in detail here.
- the information transmission device 1 provided in the above embodiments of the present disclosure achieves the same or similar beneficial effects as the information transmission methods provided in some of the above embodiments, which will not be repeated here.
- FIG. 5 is a schematic structural diagram of a communication device 1000 provided by an embodiment of the present disclosure.
- the communication device 1000 may be a network device, or a terminal (such as the first terminal in the foregoing method embodiment), or a chip, a chip system, or a processor that supports the network device to implement the above method, or a support terminal A chip, a chip system, or a processor for realizing the above method.
- the communication device 1000 may be used to implement the methods described in the foregoing method embodiments, and for details, refer to the descriptions in the foregoing method embodiments.
- the communication device 1000 may be a network-side device, or a terminal device, or a chip, a chip system, or a processor that supports the network-side device to implement the above method, or a chip or a chip system that supports the terminal device to implement the above method , or processor, etc.
- the device can be used to implement the methods described in the above method embodiments, and for details, refer to the descriptions in the above method embodiments.
- the communication device 1000 may include one or more processors 1001 .
- the processor 1001 may be a general purpose processor or a special purpose processor or the like. For example, it can be a baseband processor or a central processing unit.
- the baseband processor can be used to process communication protocols and communication data
- the central processing unit can be used to control communication devices (such as base stations, baseband chips, terminal equipment, terminal equipment chips, DU or CU, etc.) and execute computer programs , to process data for computer programs.
- the communication device 1000 may further include one or more memories 1002, on which a computer program 1004 may be stored, and the memory 1002 executes the computer program 1004, so that the communication device 1000 executes the methods described in the foregoing method embodiments .
- data may also be stored in the memory 1002 .
- the communication device 1000 and the memory 1002 can be set separately or integrated together.
- the communication device 1000 may further include a transceiver 1005 and an antenna 1006 .
- the transceiver 1005 may be called a transceiver unit, a transceiver, or a transceiver circuit, etc., and is used to implement a transceiver function.
- the transceiver 1005 may include a receiver and a transmitter, and the receiver may be called a receiver or a receiving circuit for realizing a receiving function; the transmitter may be called a transmitter or a sending circuit for realizing a sending function.
- the communication device 1000 may further include one or more interface circuits 1007 .
- the interface circuit 1007 is used to receive code instructions and transmit them to the processor 1001 .
- the processor 1001 runs the code instructions to enable the communication device 1000 to execute the methods described in the foregoing method embodiments.
- the communication device 1000 is a terminal (such as the first terminal in the foregoing method embodiments): the processor 1001 is configured to execute S1 in FIG. 2 .
- the communication device 1000 is a network device: the transceiver 1005 is used to execute S10 in FIG. 3 .
- the processor 1001 may include a transceiver for implementing receiving and sending functions.
- the transceiver may be a transceiver circuit, or an interface, or an interface circuit.
- the transceiver circuits, interfaces or interface circuits for realizing the functions of receiving and sending can be separated or integrated together.
- the above-mentioned transceiver circuit, interface or interface circuit may be used for reading and writing code/data, or the above-mentioned transceiver circuit, interface or interface circuit may be used for signal transmission or transmission.
- the processor 1001 may store a computer program 1003, and the computer program 1003 runs on the processor 1001 to enable the communication device 1000 to execute the methods described in the foregoing method embodiments.
- the computer program 1003 may be solidified in the processor 1001, and in this case, the processor 1001 may be implemented by hardware.
- the communication device 1000 may include a circuit, and the circuit may implement the function of sending or receiving or communicating in the foregoing method embodiments.
- the processors and transceivers described in this disclosure can be implemented on integrated circuits (integrated circuits, ICs), analog ICs, radio frequency integrated circuits (RFICs), mixed signal ICs, application specific integrated circuits (ASICs), printed circuit boards ( printed circuit board, PCB), electronic equipment, etc.
- the processor and transceiver can also be fabricated using various IC process technologies, such as complementary metal oxide semiconductor (CMOS), nMetal-oxide-semiconductor (NMOS), P-type Metal oxide semiconductor (positive channel metal oxide semiconductor, PMOS), bipolar junction transistor (bipolar junction transistor, BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.
- CMOS complementary metal oxide semiconductor
- NMOS nMetal-oxide-semiconductor
- PMOS P-type Metal oxide semiconductor
- BJT bipolar junction transistor
- BiCMOS bipolar CMOS
- SiGe silicon germanium
- GaAs gallium arsenide
- the communication device described in the above embodiments may be a terminal device (such as the terminal device in the foregoing method embodiments), but the scope of the communication device described in the present disclosure is not limited thereto, and the structure of the communication device may not be changed from that shown in Figure 5. limit.
- a communication device may be a stand-alone device or may be part of a larger device.
- the communication device may be:
- a set of one or more ICs may also include storage components for storing data and computer programs;
- ASIC such as modem (Modem);
- FIG. 6 is a structural diagram of a chip provided in an embodiment of the present disclosure.
- the chip 1100 includes a processor 1101 and an interface 1103 .
- the number of processors 1101 may be one or more, and the number of interfaces 1103 may be more than one.
- Interface 1103 configured to receive code instructions and transmit them to the processor.
- the processor 1101 is configured to run code instructions to execute the information transmission method as described in some of the above embodiments.
- Interface 1103 configured to receive code instructions and transmit them to the processor.
- the processor 1101 is configured to run code instructions to execute the information transmission method as described in some of the above embodiments.
- the chip 1100 also includes a memory 1102 for storing necessary computer programs and data.
- An embodiment of the present disclosure also provides an information transmission system, the system includes an information transmission device serving as a terminal (such as the first terminal in the foregoing method embodiment) and an information transmission device serving as a network device in the foregoing embodiment in FIG. 4 , or , the system includes a communication device serving as a terminal (such as the first terminal in the aforementioned method embodiment) in the aforementioned embodiment of FIG. 5 and a communication device serving as a network device.
- the present disclosure also provides a readable storage medium on which instructions are stored, and when the instructions are executed by a computer, the functions of any one of the above method embodiments are realized.
- the present disclosure also provides a computer program product, which implements the functions of any one of the above method embodiments when the computer program product is executed by a computer.
- all or part of them may be implemented by software, hardware, firmware or any combination thereof.
- software When implemented using software, it may be implemented in whole or in part in the form of a computer program product.
- the computer program product comprises one or more computer programs. When the computer program is loaded and executed on the computer, all or part of the processes or functions according to the embodiments of the present disclosure will be generated.
- the computer can be a general purpose computer, a special purpose computer, a computer network, or other programmable devices.
- the computer program can be stored in or transmitted from one computer-readable storage medium to another computer-readable storage medium, for example, the computer program can be downloaded from a website, computer, server or data center Transmission to another website site, computer, server or data center by wired (such as coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.).
- the computer-readable storage medium may be any available medium that can be accessed by a computer, or a data storage device such as a server or a data center integrated with one or more available media.
- the available medium may be a magnetic medium (for example, a floppy disk, a hard disk, a magnetic tape), an optical medium (for example, a high-density digital video disc (digital video disc, DVD)), or a semiconductor medium (for example, a solid state disk (solid state disk, SSD)) etc.
- a magnetic medium for example, a floppy disk, a hard disk, a magnetic tape
- an optical medium for example, a high-density digital video disc (digital video disc, DVD)
- a semiconductor medium for example, a solid state disk (solid state disk, SSD)
- At least one in the present disclosure can also be described as one or more, and a plurality can be two, three, four or more, and the present disclosure is not limited.
- the technical feature is distinguished by "first”, “second”, “third”, “A”, “B”, “C” and “D”, etc.
- the technical features described in the “first”, “second”, “third”, “A”, “B”, “C” and “D” have no sequence or order of magnitude among the technical features described.
- each table in the present disclosure may be configured or predefined.
- the values of the information in each table are just examples, and may be configured as other values, which are not limited in the present disclosure.
- the corresponding relationship shown in some rows may not be configured.
- appropriate deformation adjustments can be made based on the above table, for example, splitting, merging, and so on.
- the names of the parameters shown in the titles of the above tables may also adopt other names understandable by the communication device, and the values or representations of the parameters may also be other values or representations understandable by the communication device.
- other data structures can also be used, for example, arrays, queues, containers, stacks, linear tables, pointers, linked lists, trees, graphs, structures, classes, heaps, hash tables or hash tables can be used wait.
- Predefinition in the present disclosure can be understood as definition, predefinition, storage, prestorage, prenegotiation, preconfiguration, curing, or prefiring.
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Abstract
Description
Claims (26)
- 一种信息传输方法,其特征在于,所述方法由第一终端执行,所述方法,包括:在第一终端在非授权频段传输物理直连反馈信道PSFCH的情况下,进行第一类型的信道接入方式监听信道或第二类型的信道接入方式监听信道。
- 根据权利要求1所述的方法,其特征在于,所述方法,还包括:在所述第一终端传输所述PSFCH之前,在不存在可共享的第二终端的信道占用时长COT的情况下,所述第一终端使用第一信道接入优先级进行第一类型的信道接入方式监听信道。
- 根据权利要求2所述的方法,其特征在于,所述第一终端使用第一信道接入优先级进行第一类型的信道接入方式监听信道,包括:在所述第一终端仅传输所述PSFCH的情况下,所述第一终端使用网络设备配置的所述第一信道接入优先级进行第一类型的信道接入方式监听信道,或者所述第一终端使用与所述PSFCH对应的物理直连共享信道PSSCH上承载的数据的信道接入优先级相同的所述第一信道接入优先级进行第一类型的信道接入方式监听信道。
- 根据权利要求3所述的方法,其特征在于,所述网络设备配置的所述第一信道接入优先级,包括:所述网络设备基于小区特定或者终端特定配置的所述第一信道接入优先级。
- 根据权利要求3或4所述的方法,其特征在于,所述网络设备配置的所述第一信道接入优先级,包括:所述网络设备配置的为最高信道接入优先级的所述第一信道接入优先级,或者所述网络设备配置的为非最高信道接入优先级的所述第一信道接入优先级。
- 根据权利要求3所述的方法,其特征在于,所述方法,还包括:根据所述PSSCH上承载的数据的服务质量流标识,确定所述PSSCH上承载的数据的信道接入优先级。
- 根据权利要求2所述的方法,其特征在于,所述第一终端使用第一信道接入优先级进行第一类型的信道接入方式监听信道,包括:在所述第一终端传输所述PSFCH之后,还传输PSSCH的情况下,在所述PSFCH之后传输的所述PSSCH上承载的数据的信道接入优先级为第二信道接入优先级的情况下,所述第一终端使用与所述第二信道接入优先级相同的所述第一信道接入优先级进行第一类型的信道接入方式监听信道。
- 根据权利要求7所述的方法,其特征在于,所述方法,还包括:根据所述PSSCH上承载的数据的服务质量流标识,确定所述PSSCH上承载的数据的信道接入优先级。
- 根据权利要求2所述的方法,其特征在于,所述第一终端使用第一信道接入优先级进行第一类型的信道接入方式监听信道,包括:在所述第一终端传输所述PSFCH之后,还传输PSSCH的情况下,在预配置所述第一终端使用第三信道接入优先级进行第一类型的信道接入方式监听信道,以及所述PSFCH之后传输的所述PSSCH上承载的数据的信道接入优先级为第二信道接入优先级的情况下,所述第一信道接入优先级与所述第三信道接入优先级和所述第二信道接入优先级中较低者相同,所述第一终端使用第一信道接入优先级进行第一类型的信道接入方式监听信道。
- 根据权利要求9所述的方法,其特征在于,所述预配置所述第一终端使用第三信道接入优先级进行第一类型的信道接入方式监听信道,还包括:预配置所述第一终端使用网络设备配置的所述第三信道接入优先级进行第一类型的信道接入方式监听信道,或者预配置第一终端使用与所述PSFCH对应的PSSCH上承载的数据的信道接入优先级相同的所述第三信道接入优先级进行第一类型的信道接入方式监听信道。
- 根据权利要求10所述的方法,其特征在于,所述网络设备配置的所述第三信道接入优先级,包括:所述网络设备基于小区特定或者终端特定配置的所述第三信道接入优先级。
- 根据权利要求10或11所述的方法,其特征在于,所述网络设备配置的所述第三信道接入优先级,包括:所述网络设备配置的为最高信道接入优先级的所述第三信道接入优先级,或者所述网络设备配置的为非最高信道接入优先级的所述第三信道接入优先级。
- 根据权利要求10所述的方法,其特征在于,所述方法,还包括:根据所述PSSCH上承载的数据的服务质量流标识,确定所述PSSCH上承载的数据的信道接入优先级。
- 根据权利要求1所述的方法,其特征在于,所述第二类型的信道接入方式,包括:Type2A信道接入方式、Type2B信道接入方式和Type2C信道接入方式;所述方法,还包括:获取网络设备配置的第一指示信息;根据所述第一指示信息,所述第一终端进行Type2A信道接入方式监听信道或Type2B信道接入方式监听信道或Type2C信道接入方式监听信道。
- 根据权利要求14所述的方法,其特征在于,所述获取网络设备配置的第一指示信息,还包括:获取所述网络设备基于小区特定或者终端特定配置的所述第一指示信息。
- 根据权利要求1至15中任一项所述的方法,其特征在于,所述方法,还包括:在所述第一终端传输所述PSFCH之前,在存在可共享的第二终端的信道占用时长COT的情况下,所述第一终端进行所述第二类型的信道接入方式监听信道。
- 一种信息传输方法,其特征在于,所述方法由网络设备执行,所述方法,包括:为第一终端配置第一指示信息和/或第一信道接入优先级;其中,所述第一指示信息指示所述第一终端进行Type2A信道接入方式监听信道或Type2B信道接入方式监听信道或Type2C信道接入方式监听信道;所述第一信道接入优先级为所述第一终端进行第一类型的信道接入方式监听信道的信道接入优先级。
- 根据权利要求17所述的方法,其特征在于,所述方法,还包括:基于小区特定cell-specific或者终端特定UE-specific为所述第一终端配置所述第一指示信息和/或所述第一信道接入优先级。
- 一种信息传输装置,其特征在于,所述装置,包括:处理模块,用于在第一终端在非授权频段传输物理直连反馈信道PSFCH的情况下,进行第一类型的信道接入方式监听信道或第二类型的信道接入方式监听信道。
- 一种信息传输装置,其特征在于,所述装置,包括:收发模块,用于为第一终端配置第一指示信息和/或第一信道接入优先级;其中,所述第一指示信息指示所述第一终端进行Type2A信道接入方式监听信道或Type2B信道接入方式监听信道或Type2C信道接入方式监听信道;所述第一信道接入优先级为所述第一终端进行第一类型的信道接入方式监听信道的信道接入优先级。
- 一种通信装置,其特征在于,所述装置包括处理器和存储器,所述存储器中存储有计算机程序,所述处理器执行所述存储器中存储的计算机程序,以使所述装置执行如权利要求1至16中任一项所述的方法。
- 一种通信装置,其特征在于,所述装置包括处理器和存储器,所述存储器中存储有计算机程序,所述处理器执行所述存储器中存储的计算机程序,以使所述装置执行如权利要求17或18所述的方法。
- 一种通信装置,其特征在于,包括:处理器和接口电路;所述接口电路,用于接收代码指令并传输至所述处理器;所述处理器,用于运行所述代码指令以执行如权利要求1至16中任一项所述的方法。
- 一种通信装置,其特征在于,包括:处理器和接口电路;所述接口电路,用于接收代码指令并传输至所述处理器;所述处理器,用于运行所述代码指令以执行如权利要求17或18所述的方法。
- 一种计算机可读存储介质,用于存储有指令,当所述指令被执行时,使如权利要求1至16中任一项所述的方法被实现。
- 一种计算机可读存储介质,用于存储有指令,当所述指令被执行时,使如权利要求17或18所述的方法被实现。
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| US18/688,279 US20240381398A1 (en) | 2021-09-02 | 2021-09-02 | Information transmission method |
| EP21955500.0A EP4398669A4 (en) | 2021-09-02 | 2021-09-02 | METHOD AND APPARATUS FOR TRANSMITTING INFORMATION |
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| WO2024000329A1 (zh) * | 2022-06-29 | 2024-01-04 | 北京小米移动软件有限公司 | 一种信道占用信息的发送方法及其装置 |
| CN117527161A (zh) * | 2022-07-27 | 2024-02-06 | 维沃移动通信有限公司 | 物理侧链路反馈信道psfch发送方法及终端 |
| CN117641600A (zh) * | 2022-08-10 | 2024-03-01 | 中信科智联科技有限公司 | 应用于直通链路的信道接入处理方法、装置和用户设备 |
| CN117676887A (zh) * | 2022-08-12 | 2024-03-08 | 华为技术有限公司 | 侧行链路通信方法和通信装置 |
| JP2025527665A (ja) * | 2022-08-22 | 2025-08-22 | ノキア テクノロジーズ オサケユイチア | チャネルアクセス優先度 |
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Also Published As
| Publication number | Publication date |
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| EP4398669A4 (en) | 2024-10-30 |
| CN113892276B (zh) | 2024-07-12 |
| EP4398669A1 (en) | 2024-07-10 |
| CN113892276A (zh) | 2022-01-04 |
| US20240381398A1 (en) | 2024-11-14 |
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