WO2023123073A1 - Procédé de communication, dispositif terminal et dispositif de réseau - Google Patents
Procédé de communication, dispositif terminal et dispositif de réseau Download PDFInfo
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- WO2023123073A1 WO2023123073A1 PCT/CN2021/142561 CN2021142561W WO2023123073A1 WO 2023123073 A1 WO2023123073 A1 WO 2023123073A1 CN 2021142561 W CN2021142561 W CN 2021142561W WO 2023123073 A1 WO2023123073 A1 WO 2023123073A1
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- uplink information
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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
Definitions
- the present application relates to the technical field of communication, and more specifically, a communication method, a terminal device, and a network device.
- terminal devices can use uplink multi-panel/multiple transmission points (transmitting and receiving point, TRP) to send multiple uplink information, and terminal devices can also transmit sidelinks to other terminal devices through sidelinks information.
- TRP transmitting and receiving point
- the terminal device needs to send multiple uplink information and sidelink information at the same time, but for some reasons, the terminal device cannot send multiple uplink information and sidelink information at the same time. At this time, the terminal device cannot judge whether to send multiple The uplink information is still sending the sidelink information, which makes the terminal equipment unable to communicate normally.
- the present application provides a communication method, terminal equipment and network equipment, so as to improve the possibility of normal communication of the terminal equipment.
- a communication method including: a first terminal device determines the priorities of a plurality of uplink information and the priority of the first sidelink information, and the time domain for sending or receiving the first sidelink information The resources at least partially overlap with the time-domain resources used to send the multiple uplink information, and the multiple uplink information is associated with multiple different spatial parameters; the first terminal device receives or sends first information, and the first The information is one or more of the plurality of uplink information and the first side link information, and the priority of the first information is higher than that of the plurality of uplink information and the first side link information except The priority of other information than the first information.
- a communication method including: if the first information is first sidelink information, a second terminal device receives or sends the first information, and the first information is based on priority of multiple uplink information level and the priority of the first sidelink information, wherein, part or all of the time domain resources used to send or receive the first sidelink information and the time domain resources used to send the multiple uplink information overlapping, the plurality of uplink information is associated with a plurality of different spatial parameters, and the priority of the first information is higher than that of the plurality of uplink information and the first sidelink information except for the first information Priority of other information.
- a communication method including: if the first information is part or all of a plurality of uplink information, the network device receives the first information sent by the first terminal device, and the first information is Determined based on the priorities of the plurality of uplink information and the priority of the first sidelink information, wherein the time domain resources used to send or receive the first sidelink information are different from those used to send the plurality of uplink information
- the time domain resources at least partially overlap, the multiple uplink information is associated with multiple different spatial parameters, and the priority of the first information is higher than that of the multiple uplink information and the first sidelink information except for the The priority of other information than the first information.
- a first terminal device including: a processing unit, configured to determine the priority of a plurality of uplink information and the priority of the first side link information, and to send or receive the first side link information
- the time domain resources overlap at least partially with the time domain resources used to send the plurality of uplink information, and the plurality of uplink information are associated with a plurality of different spatial parameters
- the communication unit is configured to receive or send the first information, the The priority of the first information is higher than that of other information in the plurality of uplink information and the first sidelink information except the first information.
- a second terminal device including: if the first information is first sidelink information, a communication unit configured to receive or send the first information, the first information is based on a plurality of uplink information determined by the priority and the priority of the first sidelink information, wherein the time domain resource used to send or receive the first sidelink information is part of the time domain resource used to send the multiple uplink information or all overlap, the multiple uplink information is associated with multiple different spatial parameters, and the priority of the first information is higher than that of the multiple uplink information and the first sidelink information except the first information The priority of other information.
- a network device including: if the first information is part or all of a plurality of uplink information, a communication unit configured to receive the first information sent by the first terminal device, the first The information is determined based on the priorities of the multiple pieces of uplink information and the priorities of the first sidelink information, where the time domain resources used to send or receive the first sidelink information are different from those used to send the multiple pieces of uplink information.
- the time domain resources of the uplink information overlap at least partially, the multiple uplink information is associated with multiple different spatial parameters, and the priority of the first information is higher than that of the multiple uplink information and the first sidelink information except The priority of other information than the first information.
- a terminal device including a processor, a memory, and a communication interface, the memory is used to store one or more computer programs, and the processor is used to call the computer programs in the memory so that the terminal device Perform some or all of the steps in the method of the first aspect or the second aspect.
- a network device including a processor, a memory, and a communication interface, the memory is used to store one or more computer programs, and the processor is used to call the computer programs in the memory to make the network device Perform some or all of the steps in the method of the third aspect.
- the embodiment of the present application provides a communication system, where the system includes the above-mentioned terminal and/or network device.
- the system may also include other devices that interact with the terminal or network device in the solutions provided by the embodiments of the present application.
- the embodiment of the present application provides a computer-readable storage medium, where the computer-readable storage medium stores a computer program, and the computer program causes a terminal to execute some or all of the steps in the methods of the above aspects.
- the embodiment of the present application provides a computer program product, wherein the computer program product includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to perform the above-mentioned aspects some or all of the steps in the method.
- the computer program product can be a software installation package.
- an embodiment of the present application provides a chip, the chip includes a memory and a processor, and the processor can call and run a computer program from the memory to implement some or all of the steps described in the methods of the above aspects .
- multiple uplink information associated with multiple different spatial parameters have corresponding priorities, so that the first terminal device can Determining whether to send part or all of the multiple uplink information or the first sidelink information is beneficial to improving the possibility of the first terminal device performing normal communication.
- the problem that the first terminal device cannot communicate normally due to the inability of the first terminal device to determine the sending or receiving operations of the first sidelink information and multiple uplink sidelink information is avoided.
- FIG. 1 is a wireless communication system 100 applied in an embodiment of the present application.
- Fig. 2 shows a schematic diagram of a terminal device communicating with a network device through multiple panels.
- FIG. 3 is a flow chart of a communication method according to an embodiment of the present application.
- Fig. 4 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to an embodiment of the present application.
- Fig. 5 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 6 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 7 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 8 is a schematic diagram of a way of comparing the priorities of sidelink information and multiple pieces of uplink information according to another embodiment of the present application.
- FIG. 9 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 10 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 11 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 12 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- Fig. 13 is a schematic diagram of a priority comparison method between sidelink information and multiple uplink information according to another embodiment of the present application.
- FIG. 14 is a schematic diagram of a terminal device according to an embodiment of the present application.
- Fig. 15 is a schematic diagram of a terminal device according to another embodiment of the present application.
- Fig. 16 is a schematic diagram of a network device according to an embodiment of the present application.
- Fig. 17 is a schematic structural diagram of a communication device according to an embodiment of the present application.
- Fig. 1 is a wireless communication system 100 applicable to the embodiment of the present application.
- the wireless communication system 100 may include a network device 110 and terminals 121 - 122 .
- the network device 110 may provide communication coverage for a specific geographic area, and may communicate with terminals located within the coverage area.
- the terminal may send uplink information to the network device through an uplink, where the uplink information may include uplink control information and uplink data.
- the terminal 121 may transmit uplink information to the network device 110 through an uplink.
- the above-mentioned uplink control information may be transmitted through an uplink channel, where, for example, the uplink channel may be a physical uplink control channel (physical uplink control channel, PUCCH) or a physical uplink shared channel (physical uplink shared channel, PUSCH).
- sidelink sidelink
- SL sidelink
- Sidelink communication may also be called proximity services (Proximity services, ProSe) communication, unilateral communication, side chain communication, and device to device (D2D) communication.
- ProSe proximity services
- D2D device to device
- sidelink data is transmitted between terminals through a sidelink link.
- the sidelink data may include data and/or control signaling.
- the sidelink data may be, for example, a physical sidelink control channel (physical sidelink control channel, PSCCH), a physical sidelink shared channel (physical sidelink control channel, PSSCH), a PSCCH demodulation reference signal (demodulation reference signal, DMRS), PSSCH DMRS, physical sidelink feedback channel (feedback channel, PSFCH), etc.;
- terminals 121-122 can communicate through sidelinks, and terminals 121-122 are all within the coverage of network device 110, or in other words, terminals 121-122 are all in the same network device 110 coverage.
- the network device 110 may send configuration signaling to the terminals 121-122, and accordingly, the terminals 121-122 communicate through the sidelink based on the configuration signaling.
- FIG. 1 exemplarily shows a network device and multiple terminal devices.
- the wireless communication system 100 may include multiple network devices and the coverage of each network device may include other numbers terminal device, which is not limited in the embodiment of this application.
- the wireless communication system 100 may further include other network entities such as a network controller and a mobility management entity, which is not limited in this embodiment of the present application.
- network entities such as a network controller and a mobility management entity, which is not limited in this embodiment of the present application.
- the technical solutions of the embodiments of the present application can be applied to various communication systems, for example: the fifth generation (5th generation, 5G) system or new radio (new radio, NR), long term evolution (long term evolution, LTE) system , LTE frequency division duplex (frequency division duplex, FDD) system, LTE time division duplex (time division duplex, TDD), etc.
- 5G fifth generation
- NR new radio
- long term evolution long term evolution
- LTE frequency division duplex frequency division duplex
- FDD frequency division duplex
- TDD time division duplex
- future communication systems such as the sixth generation mobile communication system, and satellite communication systems, etc.
- the terminal in the embodiment of the present application may also be referred to as a "first communication device".
- first communication device user equipment
- UE user equipment
- access terminal subscriber unit, subscriber station, mobile station, mobile station (mobile station, MS), mobile terminal (mobile terminal, MT), remote station, remote terminal, mobile device, user terminal, terminal device, wireless communication device, user agent or user device.
- the terminal device in the embodiment of the present application may be a device that provides voice and/or data connectivity to users, and can be used to connect people, objects and machines, such as handheld devices with wireless connection functions, vehicle-mounted devices, and the like.
- the terminal device in the embodiment of the present application can be mobile phone (mobile phone), tablet computer (Pad), notebook computer, palmtop computer, mobile internet device (mobile internet device, MID), wearable device, virtual reality (virtual reality, VR) equipment, augmented reality (augmented reality, AR) equipment, wireless terminals in industrial control, wireless terminals in self driving, wireless terminals in remote medical surgery, smart Wireless terminals in smart grid, wireless terminals in transportation safety, wireless terminals in smart city, wireless terminals in smart home, customer premise equipment , CPE), industrial equipment, etc.
- UE can be used to act as a base station.
- a UE may act as a scheduling entity, which provides sidelink data between UEs in V2X or D2D, etc.
- a cell phone and a car communicate with each other using side-by-side data. Communication between cellular phones and smart home devices without relaying communication signals through base stations.
- the network device in the embodiment of the present application may also be called "second communication device", which may be a device for communicating with terminal devices.
- the network device may also be called an access network device or a wireless access device.
- a network access device such as a network device, may be a base station.
- the network device in this embodiment of the present application may refer to a radio access network (radio access network, RAN) node (or device) that connects a terminal device to a wireless network.
- RAN radio access network
- the base station can broadly cover various names in the following, or replace with the following names, such as: Node B (NodeB), evolved base station (evolved NodeB, eNB), next generation base station (next generation NodeB, gNB), relay station, Access point, transmission point (transmitting and receiving point, TRP), transmission point (transmitting point, TP), primary station MeNB, secondary station SeNB, multi-standard radio (MSR) node, home base station, network controller, access node , wireless node, access point (access point, AP), transmission node, transceiver node, base band unit (base band unit, BBU), remote radio unit (Remote Radio Unit, RRU), active antenna unit (active antenna unit) , AAU), radio head (remote radio head, RRH), central unit (central unit, CU), distributed unit (distributed unit, DU), positioning nodes, etc.
- NodeB Node B
- eNB evolved base station
- next generation NodeB next generation NodeB
- a base station may be a macro base station, a micro base station, a relay node, a donor node, or the like, or a combination thereof.
- a base station may also refer to a communication module, modem or chip used to be set in the aforementioned equipment or device.
- the base station can also be a mobile switching center, a device that undertakes the function of a base station in D2D, vehicle-to-everything (V2X), machine-to-machine (M2M) communication, and a device in a 6G network.
- V2X vehicle-to-everything
- M2M machine-to-machine
- Base stations can support networks of the same or different access technologies. The embodiment of the present application does not limit the specific technology and specific device form adopted by the network device.
- Base stations can be fixed or mobile.
- a helicopter or drone can be configured to act as a mobile base station, and one or more cells can move according to the location of the mobile base station.
- a helicopter or drone may be configured to serve as a device in communication with another base station.
- the network device in this embodiment of the present application may refer to a CU or a DU, or, the network device includes a CU and a DU.
- a gNB may also include an AAU.
- Network equipment and terminal equipment can be deployed on land, including indoors or outdoors, hand-held or vehicle-mounted; they can also be deployed on water; they can also be deployed on aircraft, balloons and satellites in the air.
- the scenarios where the network device and the terminal device are located are not limited.
- the following first introduces the transmission process of the uplink multi-panel (panel)/TRP transmission involved in this application, and the comparison method of priorities in the multi-service coexistence scenario.
- Fig. 2 shows a schematic diagram of a terminal device communicating with a network device through multiple panels.
- terminal 121 is configured with multiple panels (for example, panel 1 and panel 2), and supports sending uplink information through multiple panels at the same time, then terminal 121 can send multiple uplink information through multiple panels at the same time, for example, Terminal 121 can send uplink information 1 to TRP1 through panel 1, and send uplink information 2 to TRP2 through panel 2 at the same time.
- This transmission mode may be called "uplink multi-panel/multi-TRP transmission", and this uplink multi-panel/multi-TRP transmission mode is beneficial to improve uplink spectral efficiency.
- the above-mentioned uplink multi-panel/multi-TRP transmission may be scheduled by a piece of downlink control information (downlink control information, DCI).
- DCI downlink control information
- TRP1 can schedule terminal devices to send uplink information 1 through panel 1 through DCI1 , and schedule terminal devices to send uplink information 2 through panel 2 .
- the above-mentioned uplink multi-panel/multi-TRP transmission may be scheduled by multiple DCIs.
- TRP1 can schedule terminal devices to send uplink information 1 through panel 1 through DCI1
- TRP2 can schedule terminal devices to send uplink information 2 through panel 2 through DCI2.
- the above panel can be understood as a logical entity used by the terminal device to transmit information, and the transmitting beams of the antennas of different panels can be independently adjusted.
- different panels correspond to different beams.
- different panels correspond to different indices of the reference signal.
- the above multiple uplink information sent by multiple different panels can be understood as multiple uplink information associated with multiple different spatial parameters, wherein, The spatial parameters may include transmission parameters when the uplink information is transmitted through the panel.
- the above multiple uplink information can also be understood as multiple uplink information associated with multiple different control-resource set (CORESET) groups, for example, the above multiple uplink information can also be understood as associated Multiple uplinks indexed by multiple different CORESET groups.
- the above multiple uplink information can also be understood as multiple uplink information associated with multiple different reference signal sets, for example, the above multiple uplink information can also be understood as multiple different reference signal set IDs Multiple uplink information.
- the multiple pieces of uplink information can be understood as multiple pieces of uplink information associated with multiple different transmission configuration indication (transmission configuration indication, TCI) states.
- the terminal device When the terminal device needs to transmit a sidelink information (sidelink service) and an uplink information at the same time (for example, it can be a highly reliable low latency connection service (ultra reliable low latency communication, URLLC) service or an enhanced mobile broadband (enhanced mobile broadband, eMBB) service, but for some reasons it is impossible to transmit these information at the same time, the terminal device can determine whether to transmit the uplink information or the sidelink information based on the priority of the sidelink information and the priority of the uplink information.
- sidelink service sidelink service
- an uplink information for example, it can be a highly reliable low latency connection service (ultra reliable low latency communication, URLLC) service or an enhanced mobile broadband (enhanced mobile broadband, eMBB) service, but for some reasons it is impossible to transmit these information at the same time
- URLLC ultra reliable low latency communication
- eMBB enhanced mobile broadband
- the terminal device can send the sidelink information, and for the uplink information with a lower priority, the terminal device can choose not to send it or send it later. sent later.
- the terminal device may send the uplink information, and for the sidelink information with a lower priority, the terminal device may choose not to send it or to send it later.
- the priority comparison between the sidelink information and the uplink information can be determined by comparing the priority level and the priority threshold. For example, when the priority level of the sidelink information is greater than the priority threshold corresponding to the uplink information, Indicates that the priority of sidelink information is lower than that of uplink information. For another example, when the priority level of the sidelink information is smaller than the priority threshold corresponding to the uplink information, it indicates that the priority of the sidelink information is higher than that of the uplink information.
- the priority thresholds of the above information can be configured by the network device.
- the network device configures priority thresholds based on different services. Usually, the priority threshold corresponding to the URLLC service is smaller than the priority threshold corresponding to the eMBB service, that is, the priority threshold of the URLLC service is higher than that of the eMBB service. priority.
- the network device may configure the above priority threshold for the terminal device through RRC signaling.
- the terminal device can use uplink multi-panel/multi-TRP to send multiple uplink information, and the terminal device can also transmit sidelink information to other terminal devices through the sidelink.
- the terminal device needs to send multiple uplink information and sidelink information at the same time, but for some reasons, the terminal device cannot send multiple uplink information and sidelink information at the same time. At this time, the terminal device cannot judge whether to send multiple The uplink information is still sending the sidelink information, which makes the terminal equipment unable to communicate normally.
- half-duplex terminal devices that can use uplink multi-panel/multi-TRP to send multiple uplink information
- receiving information and sending information cannot be performed at the same time, when the time domain used to transmit multiple uplink information
- the terminal device cannot determine whether to receive the sidelink information or transmit multiple uplink information, resulting in the failure of the terminal device to perform normal communication.
- the present application provides a communication method, in which the first terminal device can determine the priority of multiple uplink information and the priority of sidelink information (also known as "first sidelink information") to send Part or all of the multiple uplink information is also the first sidelink information, which is beneficial to reducing the time delay for transmitting the sidelink information. Avoid simply taking the multiple uplink information as a whole and comparing the priorities of multiple uplink information and sidelink information in order to follow the traditional multi-service coexistence priority comparison method, resulting in sidelink information The transmission delay is too large, and even the problem that it cannot be sent.
- the first sidelink information may be information sent through a sidelink, for example, it may be a PSSCH or a PSCCH.
- the above multiple uplink information can be sent through the uplink, for example, it can be a physical uplink shared channel (physical uplink share channel, PUSCH), a physical uplink control channel (physical uplink control channel, PUCCH), channel sounding reference signal (sounding reference signal, SRS), physical random access channel (physical random access channel, PRACH), etc.
- the communication method shown in FIG. 3 includes step S310 and step S320 .
- step S310 the first terminal device determines the priorities of multiple pieces of uplink information and the priority of the first sidelink information.
- Priorities of the above multiple pieces of uplink information may be the same or different.
- priorities of the above multiple pieces of uplink information are different priorities, it can be understood that the pieces of uplink information are associated with multiple different spatial parameters, where the priorities of the uplink information associated with multiple different spatial parameters are different.
- some spatial parameters may have different priorities. The following will introduce in detail the priority of multiple uplink information and the priority comparison manner of the first sidelink information in each of the above situations with reference to FIG. 4 to FIG. 11 .
- step S320 the first terminal device receives or sends first information.
- the first information is one or more of the multiple uplink information and the first side link information
- the priority of the first information is higher than that of the multiple uplink information and the first side link information except the first information.
- the priority of other information That is to say, when the first information is the first side link information, the priority of the first side link information is higher than the priority of multiple pieces of uplink information.
- the priority of the first sidelink information is lower than that of the pieces of uplink information.
- step S320 may include the first terminal device sending the first information to the second terminal device, or step S320 may include the first terminal device receiving the second terminal The first message sent by the device. In some other implementation manners, when the foregoing first information includes part or all of the uplink information, step S320 may include the first terminal device sending the first information to the network terminal device.
- the terminal device may send other information.
- the terminal device may not send other information, which is not limited in this embodiment of the present application.
- the terminal device may determine whether to send other information based on parameters such as terminal capability and terminal transmit power, which will be described in detail below in conjunction with terminal capability, and will not be repeated here for brevity.
- the method of the present application will be introduced by taking two cases in which the priorities of the uplink information contained in the first set are completely the same or not completely the same as an example.
- the first set includes part or all of the above multiple uplink information.
- the first set includes all the uplink information in the plurality of uplink information, and the priority of the uplink information in the first set is the same. Taking the priority of the uplink information in the first set as high priority and the priority of the uplink information in the first set as low priority respectively, the following describes the priority of the uplink information in the first set and the first The comparison method of the priority of sideline information.
- the priority thresholds of the uplink information in the first set may be different or the same.
- uplink information associated with different spatial parameters in the first set may correspond to multiple priority thresholds.
- uplink information associated with different spatial parameters in the first set may correspond to a priority threshold.
- the comparison between the priority of the first side information and the priority of the uplink information in the first set may be performed by comparing the priority value of the first side information with the priority value of the first set. It is determined by the priority threshold of the uplink information in .
- the uplink information in the first set corresponds to multiple priority thresholds or one priority threshold as an example.
- the spatial parameters associated with different uplink information in the first set correspond to multiple different priority thresholds
- the priority level of the first side link information is less than the minimum value among the multiple priority thresholds
- the first side link information The priority is higher than that of all uplink information in the first set.
- the priority level of the first side link information is greater than or equal to the minimum value among multiple priority thresholds, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the priority level of the above-mentioned first side line information is greater than or equal to the minimum value among the multiple priority thresholds, it can be understood that the priority level of the first side line information is greater than or equal to any priority among the multiple priority thresholds threshold.
- the priority level of the above-mentioned first side link information is equal to the minimum value among multiple priority thresholds, it may also be stipulated that the priority of the first side link information is higher than the priority of all uplink information in the first set . That is, if the priority level of the first side link information is less than or equal to the minimum value among multiple priority thresholds, the priority of the first side link information is higher than that of all the uplink information in the first set. On the contrary, if the priority level of the first side link information is greater than the minimum value among multiple priority thresholds, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the first set includes n pieces of uplink information, and the n pieces of uplink information are associated with multiple different spatial parameters.
- the priority threshold of uplink information 1 is priority threshold 1
- the priority threshold of uplink information 2 is priority threshold 2
- the priority threshold of uplink information n is priority threshold n.
- the priority level of sideline information 1 is less than the minimum value of n priority thresholds, that is, the priority level of sideline information 1 ⁇ min ⁇ priority threshold 1, priority threshold 2, ..., priority Threshold n ⁇ , then the priority of sideline information 1 is higher than the priority of n pieces of uplink information.
- priority level of side line information 1 is greater than or equal to the minimum value of n priority thresholds, that is, the priority level of side line information 1 ⁇ min ⁇ priority threshold 1, priority threshold 2, ..., priority threshold n ⁇ , then the priority of sidelink information 1 is lower than the priority of n uplink information.
- configuring different priority thresholds for the uplink information associated with different spatial parameters in the first set is beneficial to improve the efficiency of the first terminal device in determining the priority of the uplink information in the first set and the first sidelink information. Prioritization flexibility.
- the priority level of the first side link information is less than the priority threshold, the priority of the first side link information is higher than that of all the uplink information in the first set priority.
- the priority level of the first side link information is greater than or equal to the priority threshold, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the priority level of the above-mentioned first sidelink information is equal to the priority threshold, it may also be specified that the priority of the first sidelink information is higher than the priority of all uplink information in the first set. That is, if the priority level of the first side link information is less than or equal to the priority threshold, the priority of the first side link information is higher than that of all the uplink information in the first set. On the contrary, if the priority level of the first side link information is greater than the priority threshold, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the first set includes n pieces of uplink information, where the priority threshold of the n pieces of uplink information is priority threshold 1.
- the priority threshold of the n pieces of uplink information is priority threshold 1.
- the priority level of the sideline information 1 is less than the priority threshold 1, that is, the priority level of the sideline information 1 ⁇ the priority threshold 1, then the priority of the sideline information 1 is higher than the priority of the n uplink information class. If the priority level of the sideline information 1 is greater than or equal to the priority threshold, that is, the priority level of the sideline information 1 ⁇ the priority threshold 1, the priority of the sideline information 1 is lower than the priorities of the n pieces of uplink information.
- the same priority threshold may be configured for the uplink information associated with different spatial parameters in the first set, so as to simplify the way of configuring the priority threshold of the uplink information in the first set.
- the comparison between the priority of the first side link information and the priority of the uplink information in the first set may be based on the priority level of the first side link information and the uplink information in the first set to determine the priority threshold.
- the uplink information in the first set corresponds to multiple priority thresholds or one priority threshold as an example.
- the uplink information associated with different spatial parameters in the first set corresponds to multiple different priority thresholds
- the priority level of the first side link information is less than any priority threshold among the multiple priority thresholds
- the first side link information The priority of is higher than the priority of all uplink information in the first set.
- the priority level of the first side link information is greater than or equal to all the priority thresholds in the plurality of priority thresholds, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the priority level of the above-mentioned first sideline information is less than any priority threshold among the multiple priority thresholds, which can be understood as that the priority level of the first sideline information is less than the maximum priority threshold among the multiple priority thresholds.
- the priority level of the above-mentioned first side line information is greater than or equal to all the priority thresholds in the multiple priority thresholds, it can be understood that the priority level of the first side line information is greater than or equal to the priority level of the multiple priority thresholds the maximum value.
- the priority level of the above-mentioned first side link information is equal to the maximum value among multiple priority thresholds, it may also be stipulated that the priority of the first side link information is higher than the priority of all uplink information in the first set . That is, if the priority level of the first sideline information is less than or equal to any priority threshold among the plurality of priority thresholds, the priority of the first sideline information is higher than the priority of all uplink information in the first set . On the contrary, if the priority level of the first side link information is greater than the maximum value among multiple priority thresholds, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the first set contains n pieces of uplink information, where the priority threshold of uplink information 1 is priority threshold 1, the priority threshold of uplink information 2 is priority threshold 2, and so on, and the priority threshold of uplink information n is Priority threshold n.
- the priority level of side line information 1 is less than the maximum value of n priority thresholds, that is, the priority level of side line information 1 ⁇ max ⁇ priority threshold 1, priority threshold 2, ..., priority Threshold n ⁇ , then the priority of sideline information 1 is higher than the priority of n pieces of uplink information.
- priority level of sideline information 1 is greater than or equal to the maximum value of n priority thresholds, that is, the priority level of sideline information 1 ⁇ max ⁇ priority threshold 1, priority threshold 2, ..., priority threshold n ⁇ , then the priority of sidelink information 1 is lower than the priority of n uplink information.
- configuring different priority thresholds for the uplink information associated with different spatial parameters in the first set is beneficial to improve the efficiency of the first terminal device in determining the priority of the uplink information in the first set and the first sidelink information. Prioritization flexibility.
- the priority level of the first side link information is less than the priority threshold, the priority of the first side link information is higher than that of all the uplink information in the first set priority.
- the priority level of the first side link information is greater than or equal to the priority threshold, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the priority level of the above-mentioned first sidelink information is equal to the priority threshold, it may also be specified that the priority of the first sidelink information is higher than the priority of all uplink information in the first set. That is, if the priority level of the first side link information is less than or equal to the priority threshold, the priority of the first side link information is higher than that of all the uplink information in the first set. On the contrary, if the priority level of the first side link information is greater than the priority threshold, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the first set includes n pieces of uplink information, where the priority threshold of the n pieces of uplink information is priority threshold 1.
- the priority threshold of the n pieces of uplink information is priority threshold 1.
- the priority level of the sideline information 1 is less than the priority threshold 1, that is, the priority level of the sideline information 1 ⁇ the priority threshold 1, then the priority of the sideline information 1 is higher than the priority of the n uplink information class. If the priority level of the sideline information 1 is greater than or equal to the priority threshold, that is, the priority level of the sideline information 1 ⁇ the priority threshold 1, the priority of the sideline information 1 is lower than the priorities of the n pieces of uplink information.
- the same priority threshold may be configured for the uplink information associated with different spatial parameters in the first set, so as to simplify the way of configuring the priority threshold of the uplink information in the first set.
- the plurality of uplink information may include uplink information belonging to the first set and uplink information belonging to the second set, and the priority of the uplink information included in the first set is different from that of the uplink information included in the second set.
- the priority of the uplink information in the first set may be the same, and correspondingly, the priority of the uplink information in the second set may be the same. Therefore, the uplink information in the first set may be called “the first type uplink information", the uplink information in the second set may be referred to as "second type of uplink information".
- the priority of the uplink information in the first set may be high priority, and correspondingly, the priority of the uplink information in the second set may be low priority.
- the priority of the uplink information in the first set may be low priority, and correspondingly, the priority of the uplink information in the second set may be high priority.
- the following uses an example in which the priority of the uplink information in the first set is high priority and the priority of the uplink information in the second set is low priority.
- the priority of the first side link information in order to simplify the process of comparing the priority of the first side link information with the priorities of multiple uplink information, only the priority of the first side link information can be compared with the first set of uplink information in the multiple uplink information.
- Priority comparison of information see below case 2-1
- the priority of the first side information may also be compared with the priority corresponding to a plurality of uplink information (including the uplink information in the first set and the uplink information in the second combination) respectively (see below Case 2-3).
- the comparison method of the priority of the first side information and the priority of the uplink information in the first set and the comparison method of the priority of the first side information and the priority of the uplink information in the second set are as follows: For example, the method of comparing the priority of the first sidelink information with the priority of the uplink information is introduced.
- the priority thresholds of the uplink information in the first set and/or the second set may be different or the same.
- the uplink signals in the first set and/or the second set may correspond to multiple priority thresholds.
- the uplink information in the first set and/or the second set may correspond to a priority threshold.
- Case 2-1 mainly introduces the way of comparing the priority of the first sidelink information with the priority of the first set of uplink information.
- the priority of the first side link information is higher than the priority of all the uplink information in the first set, the priority of the first side link information is not only higher than the priority of the uplink information in the first set, and the first side link information The priority of the information is also higher than that of the uplink information in the second set, that is, the priority of the first sidelink information is higher than the priorities of multiple pieces of uplink information.
- the priority of the first side link information is lower than the priority of any uplink information in the first set, the priority of the first side link information is not only lower than the priority of the uplink information in the first set, but the first The priority of the side link information is also lower than the priority of the uplink information in the second set, that is, the priority of multiple pieces of uplink information is higher than the priority of the first side link information.
- the comparison between the priority of the first side link information and the priority of the uplink information in the first set may be based on the priority level of the first side link information and the uplink information in the first set to determine the priority threshold.
- the uplink information in the first set corresponds to multiple priority thresholds or one priority threshold as an example.
- the priority level of the first side line information is less than the minimum value among the multiple priority thresholds, the first side line
- the priority of the information is not only higher than the priority of all the uplink information in the first set
- the priority of the first side link information is also higher than the priority of all the uplink information in the second set, that is, the first side link
- the priority of the message is higher than that of multiple uplink messages.
- the priority of the first side information is not only lower than the priority of all uplink information in the first set, but The priority of the side link information is also lower than the priority of all the uplink information in the second set, that is, the priority of the first side link information is lower than the priorities of multiple pieces of uplink information.
- the priority level of the above-mentioned first side line information is greater than or equal to the minimum value among the multiple priority thresholds, it can be understood that the priority level of the first side line information is greater than or equal to any priority among the multiple priority thresholds threshold.
- the priority level of the above-mentioned first side link information is equal to the minimum value among multiple priority thresholds, it may also be stipulated that the priority of the first side link information is higher than the priority of all uplink information in the first set . That is, if the priority level of the first side link information is less than or equal to the minimum value among multiple priority thresholds, the priority of the first side link information is higher than that of all the uplink information in the first set. On the contrary, if the priority level of the first side link information is greater than the minimum value among multiple priority thresholds, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the number of multiple uplink information is m
- the first set contains n pieces of uplink information in the multiple uplink information
- the second set contains (m-n) pieces of uplink information, where m is a positive integer greater than n .
- the priority threshold of uplink information 1 is priority threshold 1
- the priority threshold of uplink information 2 is priority threshold 2
- the priority threshold of uplink information n is priority threshold n.
- the priority level of side line information 1 is less than the minimum value of n priority thresholds, that is, the priority level of side line information 1 ⁇ min ⁇ priority threshold 1, priority threshold 2, ..., priority Threshold n ⁇
- the priority of sidelink information 1 is higher than the priority of n uplink information, that is, the priority of sidelink information 1 is higher than the priority of m uplink information.
- priority level of side line information 1 is greater than or equal to the minimum value of n priority thresholds, that is, the priority level of side line information 1 ⁇ min ⁇ priority threshold 1, priority threshold 2, ..., priority threshold n ⁇ , the priority of sidelink information 1 is lower than the priority of n uplink information, that is, the priority of sidelink information 1 is lower than the priority of m uplink information.
- the priority of the first sidelink information is compared with the priority of uplink information in the first set to obtain the comparison result, and the comparison result is used as the priority of the first sidelink information and the priority of multiple uplink information.
- the comparison result of the priority of the information reduces the number of comparisons between the priority of the first side information and the uplink information, and simplifies the comparison process of the priority.
- the priority of the first side link information is not only higher than all the uplink information in the first set
- the priority of the first side link information is also higher than the priority of all the uplink information in the second set. That is to say, the priority of the first sidelink information is higher than the priorities of multiple pieces of uplink information.
- the priority of the first side information is not only lower than the priority of all uplink information in the first set, but the priority of the first side information It is also lower than the priority of all the uplink information in the second set, that is, the priority of the first side link information is lower than the priorities of multiple pieces of uplink information.
- the priority level of the above-mentioned first sidelink information is equal to the priority threshold, it may also be specified that the priority of the first sidelink information is higher than the priority of all uplink information in the first set. That is, if the priority level of the first side link information is less than or equal to the priority threshold, the priority of the first side link information is higher than that of all the uplink information in the first set. On the contrary, if the priority level of the first side link information is greater than the priority threshold, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the number of multiple uplink information is m
- the first set contains n pieces of uplink information in the multiple uplink information
- the second set contains (m-n) pieces of uplink information, where m is a positive integer greater than n .
- the priority threshold of the n pieces of uplink information is the priority threshold 1.
- the priority level of the side line information 1 is less than the priority threshold 1, that is, the priority level of the side line information 1 ⁇ priority threshold 1, then the priority level of the side line information 1 is not only higher than that of the first set
- the priority of n uplink information the priority of side link information 1 is also higher than the priority of (m-n) uplink information in the second set, that is to say, the priority of side link information 1 is higher than that of m uplink information priority.
- the priority level of the side line information 1 is greater than or equal to the priority threshold, that is, the priority level of the side line information 1 ⁇ the priority threshold value 1, then the priority level of the side line information 1 is not only lower than the n uplinks in the first set
- the priority of the information, the priority of the side information 1 is lower than the priority of the (m-n) uplink information in the second set, that is, the priority of the side information 1 is lower than the priority of the m uplink information .
- the priority of the first sidelink information is compared with the priority of uplink information in the first set to obtain the comparison result, and the comparison result is used as the priority of the first sidelink information and the priority of multiple uplink information.
- the comparison result of the priority of the information reduces the number of comparisons between the priority of the first side information and the uplink information, and simplifies the comparison process of the priority.
- the same priority threshold may also be configured for the uplink information associated with different spatial parameters in the first set, so as to simplify the way of configuring the priority threshold of the uplink information in the first set.
- Case 2-2 mainly introduces a way of comparing the priority of the first sidelink information with the priority of the second set of uplink information.
- the priority of the first side link information is higher than the priority of any uplink information in the second set, the priority of the first side link information is not only higher than the priority of the uplink information in the second set, and the first side The priority of the line information is also higher than that of the uplink information in the first set, that is to say, the priority of the first side line information is higher than the priorities of multiple pieces of uplink information.
- the priority of the first side link information is lower than the priority of all uplink information in the second set, the priority of the first side link information is not only lower than the priority of the uplink information in the second set, but the first side The priority of the uplink information is also lower than the priority of the uplink information in the first set, that is, the priority of multiple pieces of uplink information is higher than the priority of the first side link information.
- the comparison between the priority of the first side link information and the priority of the uplink information in the second set may be based on the priority level of the first side link information and the uplink information in the second set to determine the priority threshold.
- the following uses an example in which uplink information in the second set corresponds to multiple priority thresholds or one priority threshold is used as an example.
- the priority level of the first side link information is less than any one of the multiple priority thresholds, the priority of the first side link information Not only is the priority higher than that of all the uplink information in the second set, but the priority of the first side link information is also higher than that of all the uplink information in the first set, that is, the priority of the first side link information
- the priority is higher than the priority of multiple uplink messages.
- the priority of the first side information is not only lower than the priority of all the uplink information in the second set, but the first The priority of the side link information is also lower than the priority of all the uplink information in the first set, that is, the priority of the first side link information is lower than the priorities of multiple uplink information.
- the priority level of the above-mentioned first side line information is greater than or equal to the maximum value among multiple priority thresholds, it can be understood that the priority level of the first side line information is greater than or equal to all priority thresholds among the multiple priority thresholds .
- the priority level of the above-mentioned first side link information is equal to the maximum value among multiple priority thresholds, it may also be stipulated that the priority of the first side link information is higher than that of all uplinks in the second set and the first set. Information priority. That is, if the priority level of the first side link information is less than or equal to the minimum value among the plurality of priority thresholds, the priority of the first side link information is higher than that of all the uplink information in the plurality of uplink information. Conversely, if the priority level of the first side link information is greater than the maximum value among the plurality of priority thresholds, the priority of the first side link information is lower than that of all the uplink information in the plurality of uplink information.
- the number of multiple uplink information is m
- the second set contains n pieces of uplink information in the multiple uplink information
- the first set contains (m-n) pieces of uplink information, where m is a positive integer greater than n .
- the priority threshold of uplink information 1 is priority threshold 1
- the priority threshold of uplink information 2 is priority threshold 2
- the priority threshold of uplink information n is priority threshold n.
- the priority level of side line information 1 is greater than or equal to the maximum value among n priority thresholds, that is, the priority level of side line information 1 ⁇ max ⁇ priority threshold 1, priority threshold 2, ... , priority threshold n ⁇
- the priority of sidelink information 1 is lower than the priority of n uplink information, that is, the priority of sidelink information 1 is lower than the priority of m uplink information.
- the priority of the sideline information 1 is higher than the priority of the n uplink information, that is, the priority of the sideline information 1 is higher Based on the priority of m uplink information.
- the priority of the first sidelink information is compared with the priority of the uplink information in the second set to obtain the comparison result, and the comparison result is used as the priority of the first sidelink information and the priority of multiple uplink information.
- the comparison result of the priority of the information reduces the number of comparisons between the priority of the first side information and the uplink information, and simplifies the comparison process of the priority.
- the priority of the first side link information is not only higher than all the uplink information in the second set
- the priority of the first side link information is also higher than the priority of all the uplink information in the first set. That is to say, the priority of the first sidelink information is higher than the priorities of multiple pieces of uplink information.
- the priority of the first side information is not only lower than the priority of all the uplink information in the second set, but the priority of the first side information It is also lower than the priority of all the uplink information in the first set, that is to say, the priority of the first side link information is lower than the priorities of multiple pieces of uplink information.
- the priority level of the above-mentioned first sidelink information is equal to the priority threshold, it may also be specified that the priority of the first sidelink information is higher than the priority of all uplink information in the second set. That is, if the priority level of the first side link information is less than or equal to the priority threshold, the priority of the first side link information is higher than that of all the uplink information in the plurality of uplink information. On the contrary, if the priority level of the first side link information is greater than the priority threshold, the priority of the first side link information is lower than the priority of all the uplink information in the plurality of uplink information.
- the number of multiple uplink information is m
- the second set contains n pieces of uplink information in the multiple uplink information
- the first set contains (m-n) pieces of uplink information, where m is a positive integer greater than n .
- the priority threshold of the n pieces of uplink information is the priority threshold 1.
- the priority level of the side line information 1 is less than the priority threshold 1, that is, the priority level of the side line information 1 ⁇ priority threshold 1, then the priority level of the side line information 1 is not only higher than that of the second set
- the priority of n uplink information the priority of side link information 1 is also higher than the priority of (m-n) uplink information in the first set, that is to say, the priority of side link information 1 is higher than that of m uplink information priority.
- the priority of the sideline information 1 is not only lower than the n uplink information in the second set
- the priority of the sidelink information 1 is lower than that of the (m-n) pieces of uplink information in the first set, that is, the priority of the sidelink information 1 is lower than the priority of the m pieces of uplink information.
- the priority of the first sidelink information is compared with the priority of the uplink information in the second set to obtain the comparison result, and the comparison result is used as the priority of the first sidelink information and the priority of multiple uplink information.
- the comparison result of the priority of the information reduces the number of comparisons between the priority of the first side information and the uplink information, and simplifies the comparison process of the priority.
- the same priority threshold may also be configured for the uplink information associated with different spatial parameters in the second set, so as to simplify the way of configuring the priority threshold of the uplink information in the second set.
- Case 2-3 mainly introduces how the priority of the first sidelink information is compared with the priorities of multiple uplink information.
- the plurality of uplink information includes the uplink information in the first set and the uplink information in the second set.
- the priority of the first side link information is higher than the priority of all the uplink information in the plurality of uplink information, the priority of the first side link information is higher than the priority of the plurality of uplink information. On the contrary, if the priority of the first side link information is lower than the priority of any one of the multiple uplink information, the priority of the first side link information is lower than the priority of the multiple uplink information.
- the comparison between the priority of the above-mentioned first sidelink information and the priority of multiple uplink information may be determined by the priority level of the first sidelink information and the priority threshold of multiple uplink information .
- the priority level of the first side link information is less than the minimum value among the multiple priority thresholds, the priority of the first side link information is higher than that of the multiple uplink information The priority of all uplink information in the On the contrary, if the priority level of the first side link information is greater than or equal to the minimum value among the plurality of priority thresholds, the priority of the first side link information is lower than the priorities of the plurality of uplink information.
- the priority level of the above-mentioned first side line information is greater than or equal to the minimum value among the multiple priority thresholds, it can be understood that the priority level of the first side line information is greater than or equal to any priority among the multiple priority thresholds threshold.
- the foregoing multiple priority thresholds may include different priority thresholds corresponding to multiple pieces of uplink information associated with different spatial parameters.
- the above multiple priority thresholds may also include two priority thresholds, wherein one priority threshold may be corresponding to the uplink information in the first set, and the other priority threshold may be corresponding to the uplink information in the second set of.
- the priority level of the above-mentioned first side link information is equal to the minimum value among multiple priority thresholds, it may also be stipulated that the priority of the first side link information is higher than the priority of all uplink information in the first set . That is, if the priority level of the first side link information is less than or equal to the minimum value among multiple priority thresholds, the priority of the first side link information is higher than that of all the uplink information in the first set. On the contrary, if the priority level of the first side link information is greater than the minimum value among multiple priority thresholds, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the number of multiple uplink information is m
- the first set contains n pieces of uplink information in the multiple uplink information
- the second set contains (m-n) pieces of uplink information in the multiple uplink information, where m is a positive integer greater than n.
- the priority threshold of uplink information 1 is priority threshold 1
- the priority threshold of uplink information 2 is priority threshold 2
- the priority threshold of uplink information n is priority threshold n.
- the priority threshold of uplink information 1 ⁇ is priority threshold 1 ⁇
- the priority threshold of uplink information 2 ⁇ is priority threshold 2 ⁇
- the priority threshold corresponding to uplink information m-n is priority Threshold m-n.
- the priority of the sideline information 1 is higher than the priorities of the m pieces of uplink information. If the priority level of the sideline information 1 is greater than or equal to the minimum value of the m priority thresholds, the priority of the sideline information 1 is lower than the priorities of the m pieces of uplink information.
- the priority of the first sidelink information is compared with the priorities of multiple uplink information to obtain the comparison result, which is beneficial to improve the priority of the first sidelink information and the priority of multiple uplink information the accuracy of the comparison results.
- the priority level of the first sidelink information is smaller than the priority threshold, then the priority of the first sidelink information is higher than that of the multiple pieces of uplink information.
- the priority level of the first side link information is greater than or equal to the priority threshold, the priority of the first side link information is lower than the priorities of the plurality of uplink information.
- the priority level of the first sidelink information when the priority level of the first sidelink information is equal to the priority threshold, it may also be specified that the priority of the first sidelink information is higher than the priority of all the uplink information in the plurality of uplink information. That is, if the priority level of the first side link information is less than or equal to the priority threshold, the priority of the first side link information is higher than the priorities of multiple pieces of uplink information. Conversely, if the priority level of the first side link information is greater than the priority threshold, the priority of the first side link information is lower than the priorities of the multiple pieces of uplink information.
- the number of multiple uplink information is m
- the first set contains n pieces of uplink information in the multiple uplink information
- the second set contains (m-n) pieces of uplink information, where m is a positive integer greater than n
- the priority threshold of the m pieces of uplink information is the priority threshold 1. Referring to Figure 13, if the priority level of the sideline information 1 is less than the priority threshold 1, that is, the priority level of the sideline information 1 ⁇ the priority threshold 1, then the priority of the sideline information 1 is higher than the priority of the m uplink information class. If the priority level of the sideline information 1 is greater than or equal to the priority threshold, that is, the priority level of the sideline information 1 ⁇ the priority threshold 1, the priority of the sideline information 1 is lower than the priorities of the m uplink information.
- the same priority threshold may be configured for multiple pieces of uplink information associated with different spatial parameters, so as to simplify the way of configuring the priority threshold.
- the priorities of these uplink information may adopt default values.
- the priority of uplink information for which no priority threshold is configured may be a high priority by default, and the default priority threshold for uplink information for which no priority threshold is configured may be the highest (for example, priority threshold 1) or the lowest ( For example, priority threshold 9).
- the priority thresholds of some uplink information in the above multiple uplink information may adopt default values. For example, if the priority of the uplink information associated with the spatial parameter is high priority and the priority threshold of the uplink information is not configured, then the default priority threshold is the highest (for example, priority threshold 1). For example, if the priority of the uplink information associated with the space parameter is low priority and the priority threshold of the uplink information is not configured, then the default priority threshold is the lowest (for example, the priority threshold is 9).
- the priority threshold can be re-determined based on the uplink information to be sent.
- the priority threshold can also follow the traditional multi-service coexistence scenario.
- the priority threshold used in the priority comparison method may be a priority threshold corresponding to the URLLC service.
- the priority threshold may also be a priority threshold corresponding to the eMBB service.
- the way of comparing the priorities in the case that the priorities of multiple pieces of uplink information are divided into high priority or low priority is introduced in conjunction with case 1 and case 2. It should be understood that the priority comparison method in the embodiment of the present application is not limited to the comparison of these two priorities.
- the priorities of multiple uplink information are divided into more levels, the multiple priority levels can be firstly mapped to The "high priority and low priority" of the embodiment of the present application, and then use the method of the embodiment of the present application to compare the priority, for example, the priority of the uplink information is divided into 4 priority levels, and two of the priority levels class is high priority and the other two priority classes are low priority.
- the priorities of multiple uplink information are divided into more levels
- the multiple priority levels can be firstly mapped to The "high priority and low priority" of the embodiment of the present application, and then use the method of the embodiment of the present application to compare the priority, for example, the priority of the uplink information is divided into 4 priority levels, and two of the priority levels class is high priority and the other two priority classes
- the priority of each side link information in the plurality of side link information is compared with the priority levels of the plurality of uplink information according to the priority comparison method in the embodiment of the present application, and the first information is determined,
- the first information may include multiple pieces of information.
- the side line information with the highest priority (for example, the lowest priority level) among the multiple side line information can be used as the first side line information, and the comparison of the priority in the embodiment of the present application
- the method is compared with the priorities of multiple uplink information to determine the first information. For example, if the priority of the first sidelink information is higher than that of the pieces of uplink information, the first terminal device may send or receive all of the pieces of sidelink information.
- the side line information with the lowest priority (for example, the highest priority level) among the multiple side line information can be used as the first side line information, and according to the comparison of the priority in the embodiment of the present application
- the method is compared with the priorities of multiple uplink information to determine the first information. For example, if the priority of the first sidelink information is lower than the priority of multiple pieces of uplink information, the first terminal device may send all the pieces of uplink information.
- the above multiple pieces of sideline information may be sent or received through multiple panels, that is, multiple pieces of sideline information may be associated with multiple different spatial parameters. In some other implementation manners, the above multiple pieces of sideline information may be sent or received through the same panel, that is, multiple pieces of sideline information may be associated with the same spatial parameter.
- the network device may configure the above multiple priority thresholds and/or priority thresholds for the first terminal device.
- the network device may configure multiple priority thresholds and/or priority thresholds for the first terminal device through RRC signaling.
- the RRC signaling may contain correspondences between multiple priority thresholds and spatial parameters associated with uplink signals. The format of the RRC signaling is introduced below by taking the correspondence between multiple priority thresholds and panels as an example.
- the RRC signaling can include the correspondence between panels and priority thresholds, that is, "sl-PriorityThreshold1-UL-URLLC-panel1 INTEGER(1..9)" can be carried in RRC to indicate that uplink information is sent through panel 1
- Corresponding priority threshold 1 (PriorityThreshold1); by carrying "sl-PriorityThreshold2-UL-URLLC-panel2 INTEGER(1..9)” to indicate the priority threshold 2 (PriorityThreshold2) corresponding to sending uplink information through panel 2; through Carry "sl-PriorityThreshold3-UL-URLLC-panel3INTEGER(1..9)” to indicate the priority threshold 3 corresponding to sending uplink information through panel 3.
- the network device needs to configure a priority threshold 1 for the first terminal device through RRC signaling for comparison with the priority of the first sideline information
- the priority threshold 1 is associated with panel 1
- the network The device needs to configure a priority threshold 2 for the first terminal device through RRC signaling for comparison with the priority of the first sideline information.
- the priority threshold 2 is associated with panel 2, and the network device needs to configure the first terminal device through RRC signaling.
- a terminal device is configured with a priority threshold 3 for comparison with the priority of the first sideline information, and the priority threshold 3 is associated with the panel 3 .
- the RRC signaling can include the correspondence between panels and priority thresholds, that is, "sl-PriorityThreshold1-panel1 INTEGER(1..8)" can be carried in RRC to indicate the priority corresponding to sending uplink information through panel 1 Threshold 1 (PriorityThreshold1); by carrying "sl-PriorityThreshold2-panel2 INTEGER(1..8)” to indicate the priority threshold 2 (PriorityThreshold2) corresponding to sending uplink information through panel 2; by carrying "sl-PriorityThreshold3-panel3INTEGER( 1..8)” to indicate the priority threshold 3 corresponding to sending uplink information through panel 3.
- sl-PriorityThreshold1-panel1 INTEGER(1..8) can be carried in RRC to indicate the priority corresponding to sending uplink information through panel 1 Threshold 1 (PriorityThreshold1); by carrying “sl-PriorityThreshold2-panel2 INTEGER(1..8)” to indicate the priority
- the network device can know which spatial parameter the uplink information to be sent by the first terminal device needs to be sent through, and therefore, the network device can carry the correspondence between multiple priority thresholds and the spatial parameters associated with the uplink information in the RRC signaling , and configure priority thresholds for uplink information through this correspondence.
- priority thresholds for terminal devices.
- correspondences between multiple priority thresholds and spatial parameters associated with uplink signals may also be predefined through a protocol. This embodiment of the present application does not specifically limit it.
- the priority of the uplink information described above may be determined by sending the priority index from the network device to the terminal device.
- the network device may send an index (index) of the priority of the uplink information to the terminal device as 1.
- the network device may send the terminal device that the index of the priority of the uplink information in the first set is 1.
- the network device may send the priority index of the uplink information to the terminal device as 0.
- the network device may send the terminal device that the index of the priority of the uplink information in the first set is 0.
- the network device may send the terminal device that the index of the priority of the uplink information in the second set is 0.
- the priority index of the above uplink information may be carried in RRC signaling or DCI. Certainly, the foregoing priority index may also be transmitted through other signaling, which is not limited in this embodiment of the present application.
- the terminal device may choose to send or not to send other information.
- the terminal device may determine whether to send other information based on the terminal capability. The following description will be made by taking the capability of the terminal including whether it supports sending the first sidelink information and multiple pieces of uplink information at the same time as an example.
- the first terminal device may send the first information and other information. Conversely, assuming that the first terminal device does not support sending the first sidelink information and multiple pieces of uplink information at the same time, the first terminal device may only send the first information and not send other information.
- the above-mentioned whether to support simultaneous transmission of the first sidelink information and multiple uplink information can be refined into one or more of the following forms: whether to support simultaneous transmission of the first sidelink information and multiple uplink information on the same carrier ; Whether to support simultaneous sending of the first sidelink information and multiple uplink information on different carriers.
- the first terminal device may send the first information based on the sending mode supported by itself, and determine whether to send other information.
- the The first message can be transmitted with the transmission power required by one message.
- the transmission power of other information can be reduced. That is, when the first terminal device supports sending the first sidelink information and multiple uplink information at the same time, the first terminal device reduces the transmission power of at least part of the other information to obtain the target transmission power; the first terminal device uses The target power transmits at least some of the other information.
- the transmission power of the first information may be greater than the transmission power of part or all of the other information.
- the sum of the transmit power of the first information and the transmit power of other information may be less than or equal to the maximum transmit power of the terminal device.
- the sum of the transmit power of the first information and the target power may also be slightly greater than the maximum transmit power of the terminal device. This embodiment of the present application does not limit it.
- the terminal device may determine whether to send or receive other information based on the terminal capability. The following description will be made by taking the capability of the terminal including whether it supports receiving the first sidelink information and sending multiple uplink information at the same time as an example. Wherein, whether to support receiving the first sidelink information and sending multiple uplink information at the same time can be understood as whether to support sending multiple uplink information while receiving the first sidelink information.
- the first terminal device can receive the first sidelink information and send other information at the same time. Conversely, assuming that the first terminal device does not support receiving the first sidelink information and multiple uplink information at the same time, the first terminal device can only perform receiving or sending operations on the first information, and does not perform reception of other information or send operations.
- the above-mentioned whether to support simultaneous sending of the first sidelink information and multiple uplink information can be refined into one or more of the following forms: whether to support simultaneous reception of the first sidelink information and sending multiple uplink information on the same carrier Information: whether to support receiving the first sidelink information and sending multiple uplink information at the same time on different carriers.
- the first terminal device may send or receive the first information based on the transmission mode supported by itself, and determine whether to perform a sending or receiving operation for other information.
- the first terminal device may send the above-mentioned terminal capability to the network device, that is, the network device may send capability information to the terminal device, and the capability information carries the above-mentioned terminal capability.
- the network device may determine a transmission manner of the first information and other information based on the terminal capability reported by the first terminal device.
- FIG. 14 is a schematic diagram of a terminal device according to an embodiment of the present application.
- the terminal device 1400 shown in FIG. 14 is a schematic diagram of a terminal device according to an embodiment of the present application.
- the processing unit 1410 is configured to determine the priority of a plurality of uplink information and the priority of the first side link information, the time domain resource used to send or receive the first side link information and the time domain resource used to send the plurality of uplink information
- the time domain resources at least partially overlap, and the multiple uplink information is associated with multiple different spatial parameters
- a communication unit 1420 configured to receive or send first information, where the first information is one or more of the plurality of uplink information and the first sidelink information, and the priority of the first information is high The priority of other information except the first information in the plurality of uplink information and the first sidelink information.
- the first information includes part or all of the multiple pieces of uplink information
- the communication unit is configured to send the first information
- the multiple pieces of uplink information have the same priority.
- priorities of part or all of the uplink information in the multiple pieces of uplink information are different.
- part or all of the uplink information in the plurality of uplink information belongs to a first set, and if the priority of the first side link information is higher than at least part of the uplink information in the first set The priority of the information, the first information is the first side line information.
- the priority of the uplink information in the first set is high priority, if the priority of the first side link information is higher than that of all the uplink information in the first set Priority, the first information is the first side row information.
- the uplink information in the first set corresponds to multiple different priority thresholds, and if the priority level of the first sidelink information is smaller than the minimum value among the multiple priority thresholds , the priority of the first side link information is higher than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first side link information is less than the priority threshold, the first side The priority of the line information is higher than that of all the uplink information in the first set.
- the first information is Information.
- different uplink information in the first set corresponds to multiple different priority thresholds, if the priority level of the first sidelink information is greater than or equal to the multiple priority thresholds If any one of the priority thresholds is selected, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first sidelink information is greater than or equal to the priority threshold, the The priority of the first side link information is lower than the priority of all uplink information in the first set.
- the priority of the uplink information in the first set is low priority, if the priority of the first side link information is higher than that of any uplink information in the first set Priority, the first information is the first side row information.
- different uplink information in the first set corresponds to multiple different priority thresholds, and if the priority level of the first sidelink information is less than that of the multiple priority thresholds Any priority threshold of , then the priority of the first sidelink information is higher than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first sidelink information is less than the priority threshold, the first The priority of the sidelink information is higher than that of all the uplink information in the first set.
- the first information is information in the plurality of uplink information .
- the uplink information in the first set corresponds to multiple different priority thresholds, and if the priority level of the first sidelink information is greater than or equal to one of the multiple priority thresholds maximum value, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first sidelink information is greater than the priority threshold, the first The priority of the sidelink information is lower than that of all the uplink information in the first set.
- part of the uplink information in the plurality of uplink information belongs to the first set, and if the priority of the uplink information in the first set is high priority, the first set The priority index of the uplink information in the first set is 1; if the priority of the uplink information in the first set is low priority, the priority index of the uplink information in the first set is 0.
- all the uplink information in the plurality of uplink information belongs to the first set, and priority indexes of the uplink information in the first set include 0 and 1.
- the communication unit is further configured to send capability information to the network device, where the capability information includes one or more of the following information: whether to support simultaneous sending of the first sidelink information and the plurality of uplink information; whether to support simultaneous reception of the first side link information and sending the plurality of uplink information; whether to support simultaneous sending of the first side link information and the plurality of uplink information on the same carrier; Whether to support simultaneous sending of the first sidelink information and the multiple uplink information on different carriers; whether to support simultaneous reception of the first sidelink information and sending of the multiple uplink information on the same carrier;
- the carrier simultaneously receives the first sidelink information and sends the multiple pieces of uplink information.
- the communication unit is further configured to: when the first terminal device supports simultaneous sending of the first sidelink information and the plurality of uplink information, the first The terminal device sends the first information and the other information; or when the first terminal device supports receiving the first sidelink information and sending the multiple uplink information at the same time, the first terminal device receiving the first information and sending the other information; or when the first terminal device does not support sending the first sidelink information and the multiple uplink information at the same time, the first terminal device sends The first information; or when the first terminal device does not support simultaneous reception of the first sidelink information and sending of the multiple pieces of uplink information, the first terminal device receives the first information.
- the transmission power of the first information is greater than that of the other information The transmission power of at least some of the information in .
- the communication unit is further configured to: reduce the other The transmission power of at least part of the information in the information is obtained to obtain a target transmission power; and at least a part of the other information is transmitted at the target power.
- the communication unit is further configured to: receive configuration information sent by a network device, where the configuration information includes multiple priority thresholds corresponding to the multiple pieces of uplink information.
- the configuration information is carried in radio resource control RRC signaling.
- the spatial parameter includes at least one of the following information: control resource set CORESET group index, reference signal set identifier, transmission configuration indicator TCI state, panel identifier, and beam index.
- Fig. 15 is a schematic diagram of a terminal device according to another embodiment of the present application.
- the terminal device 1500 shown in FIG. 15 may be the second terminal device mentioned above, and the terminal device 1500 shown in FIG. 15 may include a communication unit 1510 .
- the communication unit 1510 is configured to receive or send the first information, the first information is based on the priorities of multiple uplink information and the priority of the first sidelink information level, wherein the time domain resources used to send or receive the first sidelink information partially or completely overlap with the time domain resources used to send the plurality of uplink information, and the plurality of uplink information are associated with multiple Different spatial parameters, the priority of the first information is higher than the priority of other information in the plurality of uplink information and the first sidelink information except the first information.
- the multiple pieces of uplink information have the same priority.
- priorities of part or all of the uplink information in the multiple pieces of uplink information are different.
- some or all of the uplink information in the plurality of uplink information belongs to a first set, and the priority of the first side link information is higher than that of some or all of the uplink information in the first set.
- Information priority is higher than that of some or all of the uplink information in the first set.
- the priority of the uplink information in the first set is high priority, if the priority of the first side link information is higher than that of all the uplink information in the first set Priority, the first information is the first side row information.
- different uplink information in the first set corresponds to multiple different priority thresholds, and if the priority level of the first sidelink information is less than one of the multiple priority thresholds minimum value, the priority of the first side link information is higher than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first side link information is less than the priority threshold, the first side The priority of the line information is higher than that of all the uplink information in the first set.
- the priority of the uplink information in the first set is low priority, and the priority of the first side link information is higher than that of any uplink information in the first set. class.
- different uplink information in the first set corresponds to multiple different priority thresholds, and if the priority level of the first sidelink information is less than one of the multiple priority thresholds Any priority threshold, the priority of the first sidelink information is higher than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first side link information is less than the priority threshold, the first side The priority of the line information is higher than that of all the uplink information in the first set.
- part of the uplink information in the plurality of uplink information belongs to the first set, and if the priority of the uplink information in the first set is high priority, the first set The priority index of the uplink information in the first set is 1; if the priority of the uplink information in the first set is low priority, the priority index of the uplink information in the first set is 0.
- all the uplink information in the plurality of uplink information belongs to the first set, and the priority indexes of the uplink information in the first set include 0 and 1.
- the spatial parameter includes at least one of the following information: control resource set CORESET group index, reference signal set identifier, transmission configuration indicator TCI state, panel identifier, and beam index.
- FIG. 16 is a schematic diagram of a network device according to an embodiment of the present application.
- the network device 1600 shown in FIG. 16 may include a communication unit 1610 .
- the communication unit 1610 is configured to receive the first information sent by the first terminal device, the first information is based on the priority of the multiple uplink information level and the priority of the first sidelink information, wherein the time domain resources used to send or receive the first sidelink information overlap at least partially with the time domain resources used to send the plurality of uplink information, so
- the plurality of uplink information is associated with a plurality of different spatial parameters, and the priority of the first information is higher than that of other information in the plurality of uplink information and the first sidelink information except the first information priority.
- the multiple pieces of uplink information have the same priority.
- priorities of part or all of the uplink information in the multiple pieces of uplink information are different.
- some or all of the uplink information in the plurality of uplink information belongs to a first set, the priority of the uplink information in the first set is high priority, and the first side line The priority of the information is lower than the priority of any uplink information in the first set.
- different uplink information in the first set corresponds to multiple different priority thresholds, if the priority level of the first sidelink information is greater than or equal to the multiple priority thresholds If any one of the priority thresholds is selected, the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first sidelink information is greater than or equal to the priority threshold, the first The priority of one-side uplink information is lower than that of all uplink information in the first set.
- part or all of the uplink information in the plurality of uplink information belongs to a first set, the priority of the uplink information in the first set is low priority, and the first side line The priority of the information is lower than that of all uplink information in the first set.
- different uplink information in the first set corresponds to multiple different priority thresholds, if the priority level of the first sidelink information is greater than or equal to the multiple priority thresholds , the priority of the first side link information is lower than the priority of all the uplink information in the first set.
- the uplink information in the first set corresponds to the same priority threshold, and if the priority level of the first sidelink information is greater than or equal to the priority threshold, the first The priority of one-side uplink information is lower than that of all uplink information in the first set.
- part of the uplink information in the plurality of uplink information belongs to the first set, and if the priority of the uplink information in the first set is high priority, the first set The priority index of the uplink information in the first set is 1; if the priority of the uplink information in the first set is low priority, the priority index of the uplink information in the first set is 0.
- all the uplink information in the plurality of uplink information belongs to the first set, and priority indexes of the uplink information in the first set include 0 and 1.
- the communication unit is further configured to: receive capability information sent by the first terminal device, where the capability information includes one or more of the following information: whether to support simultaneous sending of the first terminal device One side link information and the multiple uplink information; whether to support receiving the first side link information and sending the multiple uplink information at the same time; whether to support simultaneous sending of the first side link information and the multiple uplink information on the same carrier Uplink information; whether to support simultaneous sending of the first side link information and the plurality of uplink information on different carriers; whether to support simultaneous reception of the first side link information and sending of the plurality of uplink information on the same carrier; and Whether to support simultaneous reception of the first sidelink information and sending of the multiple pieces of uplink information on different carriers.
- the communication unit is further configured to: send configuration information to the first terminal device, where the configuration information includes multiple priority thresholds corresponding to the multiple pieces of uplink information.
- the configuration information is carried in radio resource control RRC signaling.
- the spatial parameter includes at least one of the following information: control resource set CORESET group index, reference signal set identifier, transmission configuration indicator TCI state, panel identifier, and beam index.
- Fig. 17 is a schematic structural diagram of a communication device according to an embodiment of the present application.
- the dashed line in Figure 17 indicates that the unit or module is optional.
- the apparatus 1700 may be used to implement the methods described in the foregoing method embodiments.
- Apparatus 1700 may be a chip, a terminal device or a network device.
- Apparatus 1700 may include one or more processors 1710 .
- the processor 1710 can support the device 1700 to implement the methods described in the foregoing method embodiments.
- the processor 1710 may be a general purpose processor or a special purpose processor.
- the processor may be a central processing unit (central processing unit, CPU).
- the processor can also be other general-purpose processors, digital signal processors (digital signal processors, DSPs), application specific integrated circuits (application specific integrated circuits, ASICs), off-the-shelf programmable gate arrays (field programmable gate arrays, FPGAs) Or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
- a general-purpose processor may be a microprocessor, or the processor may be any conventional processor, or the like.
- Apparatus 1700 may also include one or more memories 1720 .
- a program is stored in the memory 1720, and the program can be executed by the processor 1710, so that the processor 1710 executes the methods described in the foregoing method embodiments.
- the memory 1720 may be independent from the processor 1710 or may be integrated in the processor 1710 .
- Apparatus 1700 may also include a transceiver 1730 .
- the processor 1710 can communicate with other devices or chips through the transceiver 1730 .
- the processor 1710 may send and receive data with other devices or chips through the transceiver 1730 .
- the embodiment of the present application also provides a computer-readable storage medium for storing programs.
- the computer-readable storage medium can be applied to the terminal or the network device provided in the embodiments of the present application, and the program enables the computer to execute the methods performed by the terminal or the network device in the various embodiments of the present application.
- the embodiment of the present application also provides a computer program product.
- the computer program product includes programs.
- the computer program product can be applied to the terminal or the network device provided in the embodiments of the present application, and the program enables the computer to execute the methods performed by the terminal or the network device in the various embodiments of the present application.
- the embodiment of the present application also provides a computer program.
- the computer program can be applied to the terminal or the network device provided in the embodiments of the present application, and the computer program enables the computer to execute the methods performed by the terminal or the network device in the various embodiments of the present application.
- priority can contain two levels, namely “high priority (corresponding priority index is “priority index 1")” and “low priority (corresponding priority index is “priority index 0")” .
- priority level usually refers to a specific value of priority, and may include multiple priority levels. For example, for side traffic information, its priority level can be divided into levels 1-8.
- priority threshold usually refers to a specific value of priority, and may include multiple priority thresholds. For example, for uplink information, its priority thresholds may be divided into thresholds 1-9.
- the priority threshold of the uplink information may be the priority threshold of the uplink information associated with a certain spatial parameter configured by the network device, or the priority threshold configured by the network device for the first side link information.
- a priority threshold for comparing priorities where the priority threshold for comparing with the priority of the first side row information is associated with the spatial parameter. For example, if the priority of the uplink information is high priority, the priority threshold of the uplink information may be the priority threshold of the uplink information associated with a certain spatial parameter configured by the network device; for the priority of the uplink information is low priority, The priority threshold of the uplink information may be a priority threshold configured by the network device for comparison with the priority of the first side link information.
- system and “network” may be used interchangeably in this application.
- the terms used in the application are only used to explain the specific embodiments of the application, and are not intended to limit the application.
- the terms “first”, “second”, “third” and “fourth” in the specification and claims of the present application and the drawings are used to distinguish different objects, rather than to describe a specific order .
- the terms “include” and “have”, as well as any variations thereof, are intended to cover a non-exclusive inclusion.
- the "indication" mentioned may be a direct indication, may also be an indirect indication, and may also mean that there is an association relationship.
- a indicates B which can mean that A directly indicates B, for example, B can be obtained through A; it can also indicate that A indirectly indicates B, for example, A indicates C, and B can be obtained through C; it can also indicate that there is an association between A and B relation.
- B corresponding to A means that B is associated with A, and B can be determined according to A.
- determining B according to A does not mean determining B only according to A, and B may also be determined according to A and/or other information.
- the term "corresponding" may indicate that there is a direct or indirect correspondence between the two, or that there is an association between the two, or that it indicates and is instructed, configures and is configured, etc. relation.
- predefined or “preconfigured” can be realized by pre-saving corresponding codes, tables or other methods that can be used to indicate relevant information in devices (for example, including terminal devices and network devices).
- the application does not limit its specific implementation.
- pre-defined may refer to defined in the protocol.
- the "protocol” may refer to a standard protocol in the communication field, for example, may include the LTE protocol, the NR protocol, and related protocols applied to future communication systems, which is not limited in the present application.
- sequence numbers of the above-mentioned processes do not mean the order of execution, and the execution order of each process should be determined by its functions and internal logic, rather than the implementation process of the embodiments of the present application. constitute any limitation.
- the disclosed systems, devices and methods may be implemented in other ways.
- the device embodiments described above are only illustrative.
- the division of the units is only a logical function division. In actual implementation, there may be other division methods.
- multiple units or components can be combined or May be integrated into another system, or some features may be ignored, or not implemented.
- the mutual coupling or direct coupling or communication connection shown or discussed may be through some interfaces, and the indirect coupling or communication connection of devices or units may be in electrical, mechanical or other forms.
- the units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place, or may be distributed to multiple network units. Part or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
- each functional unit in each embodiment of the present application may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
- 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 includes one or more computer instructions. When the computer program instructions are loaded and executed on the computer, the processes or functions according to the embodiments of the present application will be generated in whole or in part.
- the computer can be a general purpose computer, a special purpose computer, a computer network, or other programmable devices.
- the computer instructions may be stored in or transmitted from one computer-readable storage medium to another computer-readable storage medium, for example, the computer instructions may be transmitted 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 read 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 digital versatile disc (digital video disc, DVD)) or a semiconductor medium (for example, a solid state disk (solid state disk, SSD) )wait.
- a magnetic medium for example, a floppy disk, a hard disk, a magnetic tape
- an optical medium for example, a digital versatile disc (digital video disc, DVD)
- a semiconductor medium for example, a solid state disk (solid state disk, SSD)
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Abstract
La présente invention concerne un procédé de communication, un dispositif terminal et un dispositif de réseau. Le procédé comprend : la détermination, par un premier dispositif terminal, des priorités d'une pluralité d'éléments d'informations de liaison montante et de la priorité de premières informations de liaison latérale, des ressources de domaine temporel utilisées pour envoyer ou recevoir les premières informations de liaison latérale se chevauchant en moins en partie avec des ressources de domaine temporel utilisées pour envoyer la pluralité d'éléments d'informations de liaison montante, et la pluralité d'éléments d'informations de liaison montante étant associée à une pluralité de différents paramètres spatiaux ; et la réception ou l'envoi, par le premier dispositif terminal, de premières informations, les premières informations étant un ou plusieurs éléments d'informations parmi la pluralité d'éléments d'informations de liaison montante et les premières informations de liaison latérale, la priorité des premières informations étant plus grande que les priorités de la pluralité d'éléments d'informations de liaison montante et que les priorités d'autres informations sauf pour les premières informations dans les premières informations de liaison latérale, ce qui contribue à augmenter la probabilité qu'un premier dispositif terminal communique normalement. La présente invention permet d'éviter le problème selon lequel un premier dispositif terminal n'est pas capable de communiquer normalement du fait que le premier dispositif terminal est incapable de déterminer de premières informations de liaison latérale et d'envoyer ou recevoir des opérations d'une pluralité d'éléments d'informations de liaison montante et de liaison latérale.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2021/142561 WO2023123073A1 (fr) | 2021-12-29 | 2021-12-29 | Procédé de communication, dispositif terminal et dispositif de réseau |
| CN202180103171.5A CN118451672A (zh) | 2021-12-29 | 2021-12-29 | 通信方法、终端设备及网络设备 |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2021/142561 WO2023123073A1 (fr) | 2021-12-29 | 2021-12-29 | Procédé de communication, dispositif terminal et dispositif de réseau |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2023123073A1 true WO2023123073A1 (fr) | 2023-07-06 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2021/142561 Ceased WO2023123073A1 (fr) | 2021-12-29 | 2021-12-29 | Procédé de communication, dispositif terminal et dispositif de réseau |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN118451672A (fr) |
| WO (1) | WO2023123073A1 (fr) |
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| CN112398596A (zh) * | 2019-08-16 | 2021-02-23 | 华为技术有限公司 | 一种处理侧行链路资源的方法、装置及系统 |
| WO2021072779A1 (fr) * | 2019-10-18 | 2021-04-22 | 华为技术有限公司 | Procédé et appareil de traitement de transmission, dispositif, et support de stockage |
| US20210328721A1 (en) * | 2020-04-17 | 2021-10-21 | Qualcomm Incorporated | Harq flush indicator for uplink transmissions and sidelink transmissions |
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2021
- 2021-12-29 CN CN202180103171.5A patent/CN118451672A/zh active Pending
- 2021-12-29 WO PCT/CN2021/142561 patent/WO2023123073A1/fr not_active Ceased
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| CN112398596A (zh) * | 2019-08-16 | 2021-02-23 | 华为技术有限公司 | 一种处理侧行链路资源的方法、装置及系统 |
| WO2021072779A1 (fr) * | 2019-10-18 | 2021-04-22 | 华为技术有限公司 | Procédé et appareil de traitement de transmission, dispositif, et support de stockage |
| US20210328721A1 (en) * | 2020-04-17 | 2021-10-21 | Qualcomm Incorporated | Harq flush indicator for uplink transmissions and sidelink transmissions |
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| OPPO, APPLE: "Discussion on priority misalignment issue", 3GPP TSG-RAN WG2 MEETING #107BIS, R2-1913966, 11 October 2019 (2019-10-11), XP051791941 * |
| VIVO: "Remaining issues on physical layer procedure for NR sidelink", 3GPP TSG RAN WG1 #100BIS MEETING, R1-2001665, 10 April 2020 (2020-04-10), XP051873262 * |
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|---|---|
| CN118451672A (zh) | 2024-08-06 |
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