WO2022151425A1 - Procédé de communication sans fil, dispositif terminal et dispositif de réseau - Google Patents

Procédé de communication sans fil, dispositif terminal et dispositif de réseau Download PDF

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Publication number
WO2022151425A1
WO2022151425A1 PCT/CN2021/072310 CN2021072310W WO2022151425A1 WO 2022151425 A1 WO2022151425 A1 WO 2022151425A1 CN 2021072310 W CN2021072310 W CN 2021072310W WO 2022151425 A1 WO2022151425 A1 WO 2022151425A1
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Prior art keywords
reference signal
positioning reference
signaling
resource
uplink
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PCT/CN2021/072310
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English (en)
Chinese (zh)
Inventor
胡荣贻
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Oppo广东移动通信有限公司
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Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to PCT/CN2021/072310 priority Critical patent/WO2022151425A1/fr
Priority to CN202180075047.2A priority patent/CN116458098A/zh
Publication of WO2022151425A1 publication Critical patent/WO2022151425A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements 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
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems

Definitions

  • the embodiments of the present application relate to the field of communications, and more particularly, to a wireless communication method, terminal device, and network device.
  • a Positioning Reference Signal PRS
  • SRS Sounding Reference Signal for positioning
  • PRS and SRS used for positioning measurement are far apart in the time domain, measurement errors may be caused by terminal equipment movement or clock deviation. positional relationship, thereby affecting the positioning measurement.
  • Embodiments of the present application provide a wireless communication method, terminal device, and network device.
  • PRS resources and SRS resources used for positioning are simultaneously triggered or activated or deactivated in physical layer signaling, avoiding separate triggering, activation or deactivation.
  • the resulting signaling interaction and delay also avoid the situation where only one signal resource is activated or triggered in the PRS resource and the SRS resource used for positioning, and the configuration is more efficient and reasonable.
  • a method for wireless communication comprising:
  • the terminal device receives the first signaling
  • the first signaling is used to instruct the terminal device to perform at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource for a first operation, where the first operation is one of activation, deactivation, and triggering.
  • a method for wireless communication comprising:
  • the network device sends the first signaling to the terminal device
  • the first signaling is used to instruct the terminal device to perform at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource for a first operation, where the first operation is one of activation, deactivation, and triggering.
  • a terminal device for executing the method in the above-mentioned first aspect.
  • the terminal device includes functional modules for executing the method in the first aspect.
  • a network device for executing the method in the second aspect.
  • the network device includes functional modules for executing the method in the second aspect above.
  • a terminal device including a processor and a memory.
  • the memory is used to store a computer program
  • the processor is used to call and run the computer program stored in the memory to execute the method in the first aspect.
  • a network device including a processor and a memory.
  • the memory is used to store a computer program
  • the processor is used to call and run the computer program stored in the memory to execute the method in the second aspect.
  • an apparatus for implementing the method in any one of the above-mentioned first to second aspects.
  • the apparatus includes: a processor for invoking and running a computer program from a memory, so that a device on which the apparatus is installed executes the method in any one of the first to second aspects above.
  • a computer-readable storage medium for storing a computer program, the computer program causing a computer to execute the method in any one of the first to second aspects above.
  • a computer program product comprising computer program instructions, the computer program instructions causing a computer to perform the method in any one of the first to second aspects above.
  • a computer program which, when run on a computer, causes the computer to perform the method of any one of the above-mentioned first to second aspects.
  • the network device triggers or activates or deactivates at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource simultaneously through one signaling, avoiding signaling interaction and deactivation caused by separate triggering, activation or deactivation.
  • the time delay also avoids the situation where only one positioning reference signal resource in the uplink positioning reference signal resource and the downlink positioning reference signal resource is activated or triggered, the configuration is more efficient and reasonable, and the positioning efficiency and measurement accuracy are improved.
  • FIG. 1 is a schematic diagram of a communication system architecture to which an embodiment of the present application is applied.
  • FIG. 2 is a schematic diagram of a Multi-RTT measurement provided by the present application.
  • Fig. 3 is a schematic diagram of MAC CE signaling of SP SRS activation/deactivation provided by the present application.
  • FIG. 4 is a schematic diagram of independently triggering PRS and SRS provided by the present application.
  • FIG. 5 is a schematic flowchart of a method for wireless communication according to an embodiment of the present application.
  • FIG. 6 is a schematic diagram of a MAC CE signaling provided according to an embodiment of the present application.
  • FIG. 7 is a schematic diagram of an association relationship provided according to an embodiment of the present application.
  • FIG. 8 is a schematic diagram of an SRS resource (set) and a PRS resource (set) provided according to an embodiment of the present application.
  • FIG. 9 is a schematic block diagram of a terminal device provided according to an embodiment of the present application.
  • FIG. 10 is a schematic block diagram of a network device provided according to an embodiment of the present application.
  • FIG. 11 is a schematic block diagram of a communication device provided according to an embodiment of the present application.
  • Fig. 12 is a schematic block diagram of an apparatus provided according to an embodiment of the present application.
  • FIG. 13 is a schematic block diagram of a communication system provided according to an embodiment of the present application.
  • GSM Global System of Mobile communication
  • CDMA Code Division Multiple Access
  • CDMA Wideband Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • GPRS General Packet Radio Service
  • LTE Long Term Evolution
  • LTE-A Advanced Long Term Evolution
  • NR New Radio
  • NTN Non-Terrestrial Networks
  • UMTS Universal Mobile Telecommunication System
  • WLAN Wireless Local Area Networks
  • Wireless Fidelity Wireless Fidelity
  • WiFi fifth-generation communication
  • D2D Device to Device
  • M2M Machine to Machine
  • MTC Machine Type Communication
  • V2V Vehicle to Vehicle
  • V2X Vehicle to everything
  • the communication system in this embodiment of the present application may be applied to a carrier aggregation (Carrier Aggregation, CA) scenario, a dual connectivity (Dual Connectivity, DC) scenario, or a standalone (Standalone, SA) distribution. web scene.
  • Carrier Aggregation, CA Carrier Aggregation, CA
  • DC Dual Connectivity
  • SA standalone
  • the communication system in the embodiment of the present application may be applied to an unlicensed spectrum, where the unlicensed spectrum may also be considered as a shared spectrum; or, the communication system in the embodiment of the present application may also be applied to a licensed spectrum, where, Licensed spectrum can also be considered unshared spectrum.
  • the embodiments of the present application describe various embodiments in conjunction with network equipment and terminal equipment, where the terminal equipment may also be referred to as user equipment (User Equipment, UE), access terminal, subscriber unit, subscriber station, mobile station, mobile station, remote station, remote terminal, mobile device, user terminal, terminal, wireless communication device, user agent or user device, etc.
  • user equipment User Equipment, UE
  • access terminal subscriber unit, subscriber station, mobile station, mobile station, remote station, remote terminal, mobile device, user terminal, terminal, wireless communication device, user agent or user device, etc.
  • the terminal device may be a station (STATION, ST) in the WLAN, and may be a cellular phone, a cordless phone, a Session Initiation Protocol (Session Initiation Protocol, SIP) phone, a Wireless Local Loop (WLL) station, a personal digital assistant (Personal Digital Assistant, PDA) devices, handheld devices with wireless communication capabilities, computing devices or other processing devices connected to wireless modems, in-vehicle devices, wearable devices, next-generation communication systems such as end devices in NR networks, or future Terminal equipment in the evolved public land mobile network (Public Land Mobile Network, PLMN) network, etc.
  • PLMN Public Land Mobile Network
  • the terminal device can be deployed on land, including indoor or outdoor, handheld, wearable, or vehicle-mounted; it can also be deployed on water (such as ships, etc.); it can also be deployed in the air (such as airplanes, balloons, and satellites) superior).
  • the terminal device may be a mobile phone (Mobile Phone), a tablet computer (Pad), a computer with a wireless transceiver function, a virtual reality (Virtual Reality, VR) terminal device, and an augmented reality (Augmented Reality, AR) terminal Equipment, wireless terminal equipment in industrial control, wireless terminal equipment in self driving, wireless terminal equipment in remote medical, wireless terminal equipment in smart grid , wireless terminal equipment in transportation safety, wireless terminal equipment in smart city or wireless terminal equipment in smart home, etc.
  • a mobile phone Mobile Phone
  • a tablet computer Pad
  • a computer with a wireless transceiver function a virtual reality (Virtual Reality, VR) terminal device
  • augmented reality (Augmented Reality, AR) terminal Equipment wireless terminal equipment in industrial control, wireless terminal equipment in self driving, wireless terminal equipment in remote medical, wireless terminal equipment in smart grid , wireless terminal equipment in transportation safety, wireless terminal equipment in smart city or wireless terminal equipment in smart home, etc.
  • the terminal device may also be a wearable device.
  • Wearable devices can also be called wearable smart devices, which are the general term for the intelligent design of daily wear and the development of wearable devices using wearable technology, such as glasses, gloves, watches, clothing and shoes.
  • a wearable device is a portable device that is worn directly on the body or integrated into the user's clothing or accessories. Wearable device is not only a hardware device, but also realizes powerful functions through software support, data interaction, and cloud interaction.
  • wearable smart devices include full-featured, large-scale, complete or partial functions without relying on smart phones, such as smart watches or smart glasses, and only focus on a certain type of application function, which needs to cooperate with other devices such as smart phones.
  • the network device may be a device for communicating with a mobile device, and the network device may be an access point (Access Point, AP) in WLAN, or a base station (Base Transceiver Station, BTS) in GSM or CDMA , it can also be a base station (NodeB, NB) in WCDMA, it can also be an evolved base station (Evolutional Node B, eNB or eNodeB) in LTE, or a relay station or access point, or in-vehicle equipment, wearable devices and NR networks
  • the network device may have a mobile feature, for example, the network device may be a mobile device.
  • the network device may be a satellite or a balloon station.
  • the satellite may be a low earth orbit (LEO) satellite, a medium earth orbit (MEO) satellite, a geostationary earth orbit (GEO) satellite, a High Elliptical Orbit (HEO) ) satellite etc.
  • the network device may also be a base station set in a location such as land or water.
  • a network device may provide services for a cell, and a terminal device communicates with the network device through transmission resources (for example, frequency domain resources, or spectrum resources) used by the cell, and the cell may be a network device (
  • the cell can belong to the macro base station, or it can belong to the base station corresponding to the small cell (Small cell).
  • Pico cell Femto cell (Femto cell), etc.
  • These small cells have the characteristics of small coverage and low transmission power, and are suitable for providing high-speed data transmission services.
  • the communication system 100 may include a network device 110, and the network device 110 may be a device that communicates with a terminal device 120 (or referred to as a communication terminal, a terminal).
  • the network device 110 may provide communication coverage for a particular geographic area, and may communicate with terminal devices located within the coverage area.
  • FIG. 1 exemplarily shows one network device and two terminal devices.
  • the communication system 100 may include multiple network devices and the coverage of each network device may include other numbers of terminal devices. This application The embodiment does not limit this.
  • the communication system 100 may further include other network entities such as a network controller and a mobility management entity, which are not limited in this embodiment of the present application.
  • network entities such as a network controller and a mobility management entity, which are not limited in this embodiment of the present application.
  • a device having a communication function in the network/system may be referred to as a communication device.
  • the communication device may include a network device 110 and a terminal device 120 with a communication function, and the network device 110 and the terminal device 120 may be the specific devices described above, which will not be repeated here.
  • the communication device may also include other devices in the communication system 100, such as other network entities such as a network controller, a mobility management entity, etc., which are not limited in this embodiment of the present application.
  • the "instruction" mentioned in the embodiments of the present application may be a direct instruction, an indirect instruction, or an associated relationship.
  • a indicates B it can indicate that A directly indicates B, for example, B can be obtained through A; it can also indicate that A indicates B indirectly, such as A indicates C, and B can be obtained through C; it can also indicate that there is an association between A and B relation.
  • corresponding may indicate that there is a direct or indirect corresponding relationship between the two, or may indicate that there is an associated relationship between the two, or indicate and be instructed, configure and be instructed configuration, etc.
  • predefinition may be implemented by pre-saving corresponding codes, forms, or other means that can be used to indicate relevant information in devices (for example, including terminal devices and network devices).
  • the implementation method is not limited.
  • predefined may refer to the definition 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 in future communication systems, which are not limited in this application.
  • Positioning technology is one of the core technologies of modern communication systems and navigation systems, such as satellite navigation systems, Bluetooth, WiFi, etc., all provide positioning functions. Similarly, modern cellular communication systems also support positioning functions. Starting from 3G and 4G (LTE) systems, various advanced positioning technologies are gradually added to cellular communication systems. In the 5G (NR) system, the positioning technology will also be supported, and the specific standard was introduced in Release 16 (Release 16, R16). In NR in 3GPP R16, the following positioning technologies are introduced:
  • DL-TDOA Downlink Time Difference of Arrival
  • Uplink Time Difference of Arrival (UL-TDOA);
  • Multi Round Trip Time, Multi-RTT Multiple round trip time positioning method
  • DL-AoD Downlink Angle of Departure
  • Uplink Angle of Arrival (UL-AoA)
  • Enhanced cell identification (ID) positioning method Enhanced cell identification (ID) positioning method.
  • R16NR introduces a Positioning Reference Signal (PRS) in the downlink and an SRS for positioning (SRS for positioning) in the uplink.
  • PRS Positioning Reference Signal
  • SRS SRS for positioning
  • Multi-RTT Multi Round Trip time
  • TRP Transmission reception point
  • Rx-Tx time difference the time difference between T1 and T2.
  • the TRP sends the downlink (downlink, DL) PRS at time T1.
  • the UE receives the PRS signal at time T2, and sends the uplink (uplink, UL) SRS signal at time T3.
  • the TRP will receive the SRS signal at time T4.
  • TRP will calculate the time difference T4-T1 (positive in this example), and the UE will also calculate the time difference T2-T3 (negative in this example), these two time differences are added together to get twice the propagation time , the distance between the TRP and the UE can be calculated according to the time, and the position of the UE can be determined by combining the distance information between multiple TRPs and the UE.
  • Radio Access Network 4 Radio Access Network 4, RAN4
  • the radio access network 4 Radio Access Network 4, RAN4
  • RAN4 Radio Access Network 4, RAN4
  • the influence of the positional relationship between the SRS and the PRS in the time-frequency domain on the measurement results is discussed.
  • the measurement may be caused by different uplink timing (UL timing)/RF chain (RF chain)/antenna physical locations on different bands, etc.
  • the results are different; from the time domain point of view, if the PRS and SRS used for measurement are far apart in the time domain, measurement errors may be caused by UE movement or clock deviation.
  • SRS only supports transmission on the UL active (active) BWP, and considering the power consumption and complexity of the UE, discontinuous reception (RRC) in the RRC connected state is not expected at present.
  • RRC discontinuous reception
  • PRS only supports periodic transmission, and semi-persistent PRS and aperiodic PRS may be introduced in the future.
  • the transmission method of SRS signal is introduced below.
  • the SRS used for positioning is likely to follow the following method, which also has certain reference significance for PRS signal:
  • Periodic SRS The period and time domain offset of the SRS signal are configured through radio resource control (Radio Resource Control, RRC) signaling, and the UE performs periodic transmission according to a fixed position.
  • RRC Radio Resource Control
  • Semi-persistent SRS Configure the period and time domain offset of the SRS signal through RRC signaling, and then activate and deactivate through the Media Access Control Control Element (MAC CE).
  • the period and time domain offset are the same as the periodic SRS, and the signaling structure of the MAC CE is shown in Figure 3.
  • Aperiodic SRS RRC signaling is configured with a triggering offset, which can be triggered by the SRS request field in DCI format 0_1, DCI format 1_1, and DCI format 2_3. 2-bit information is used in the DCI to represent the triggered SRS resource group. Wherein, 00 indicates that no aperiodic SRS resource will be triggered, and 01/10/11 indicates that one or more SRS resource triggers with aperiodic SRS-ResourceTrigger value of 1/2/3 in the high-layer signaling respectively are triggered.
  • A/D indicates whether the corresponding SRS resource set is activated or deactivated, set to 1 to indicate activation, and set to 0 to indicate deactivation;
  • the cell identifier (SRS Resource Set's Cell ID) of the SRS resource set the serving cell (serving cell) containing the SRS resource set (SRS Resource Set) that needs to be activated/deactivated;
  • Resource BWP ID Resource BWP ID
  • Resource BWP ID Resource BWP ID
  • SP SRS Resource Set ID corresponding to the SRS resource set identifier (SRS-ResourceSetId) in the RRC signaling;
  • Fi indicates the resource type that has a spatial relationship with the SRS resource, F0 corresponds to the first SRS resource in the SRS resource set, F2 corresponds to the second, and so on. Fi is set to 1 to use the non-zero power channel state information reference signal (Non-Zero Power Channel State Information-Reference Signal, NZP-CSI-RS), set to 0 to use the synchronization signal block (Synchronization Signal Block, SSB) or SRS;
  • NZP-CSI-RS Non-Zero Power Channel State Information-Reference Signal
  • SSB Synchronization Signal Block
  • Resource ID The resource ID that has a spatial relationship with the SRS resource, Resource ID0 corresponds to the first SRS resource in the SRS resource set; Resource ID1 corresponds to the second SRS resource in the SRS resource set, and so on;
  • Resource ID indicates the serving cell and BWP to which the resource belongs.
  • the periodic reference signal may need to wait for a long time to be measured. For example, when the PRS period is 320ms, the UE needs to wait up to 320ms to receive the PRS signal once. Obviously, such a mechanism will bring a relatively long delay.
  • the positioning technology of release 17 may activate/trigger the positioning reference signal through low-level signaling, such as MAC CE or DCI, such as semi-persistent triggering through MAC CE.
  • a periodic PRS signal or an aperiodic PRS signal is triggered by the DCI information.
  • the SRS can be triggered in a similar manner.
  • PRS and SRS are independently configured, and there is no guarantee that the PRS and SRS configurations can conform to a certain time domain position relationship. Some PRS signals may even be unable to be received due to the loss of DCI, or the SRS signals cannot be sent by the UE.
  • the positioning results of Multi-RTT are affected, for example, as shown in Figure 4 below.
  • this application proposes a scheme for jointly indicating uplink and downlink positioning reference signal resources.
  • the PRS resources and the SRS resources used for positioning are simultaneously triggered or activated or deactivated in the physical layer signaling, avoiding separate triggering, activation or deactivation.
  • the signaling interaction and delay caused by deactivation also avoids the situation where only one signal resource is activated or triggered in the PRS resource and the SRS resource used for positioning, and the configuration is more efficient and reasonable.
  • FIG. 5 is a schematic flowchart of a method 200 for wireless communication according to an embodiment of the present application. As shown in FIG. 5 , the method 200 may include at least part of the following contents:
  • the network device sends first signaling, where the first signaling is used to instruct the terminal device to perform at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource for a first operation, where the first operation is activation , one of deactivation and triggering;
  • the terminal device receives the first signaling.
  • the network device triggers or activates or deactivates at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource simultaneously through a signaling, so as to better match the uplink positioning reference signal resource and downlink positioning Reference signal resources, avoid the loss of a certain signaling when triggering or activating or deactivating uplink positioning reference signal resources and downlink positioning reference signal resources separately in two signaling, and improve the effectiveness of reference signals and Multi-RTT positioning measurement. accuracy.
  • signaling interaction and delay caused by separate triggering or activation or deactivation can be avoided, and the situation in which only one positioning reference signal resource in the uplink positioning reference signal resource and the downlink positioning reference signal resource is activated or triggered can be avoided.
  • the configuration is more efficient and reasonable, and the positioning efficiency and measurement accuracy are improved.
  • the first signaling is used to indicate at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource that the terminal device needs to perform the first operation.
  • the present application may be applied to the Multi-RTT positioning technology, and may also be applied to some other positioning technologies, which is not limited in the present application.
  • the present application may be applied to licensed band.
  • the present application can also be applied to an unlicensed spectrum (unlicensed band), that is, Multi-RTT measurement on the licensed+unlicensed band can be implemented based on the embodiments of the present application.
  • the first signaling is lower layer signaling.
  • the first signaling may include, but is not limited to, at least one of the following:
  • the uplink positioning reference signal may be an SRS (SRS-Pos) used for positioning, or may be other uplink signals, which are not limited in this embodiment of the present application.
  • the downlink positioning reference signal may be a PRS or other downlink signals, which is not limited in this embodiment of the present application.
  • the at least one uplink positioning reference signal resource may be periodic, semi-static, or aperiodic.
  • the at least one downlink positioning reference signal resource may also be periodic, semi-static, or aperiodic.
  • MAC CE signaling is used to activate/deactivate semi-static positioning reference signal resources; DCI is used to trigger aperiodic positioning reference signal resources.
  • multiple groups of uplink and downlink positioning reference signal resources may be configured for the terminal device through high-layer signaling (such as RRC), and then one or more groups are selected from the configured positioning reference signal resources through the first signaling. Do activation/deactivation/triggering.
  • high-layer signaling such as RRC
  • resource set ID resource set ID
  • aperiodic SRS resource trigger aperiodicSRS-ResourceTrigger
  • the first signaling includes a first field and a second field that are independent of each other, wherein the first field is used to indicate the at least one uplink positioning reference signal resource, and the second field is used to indicate the at least one uplink positioning reference signal resource.
  • a downlink positioning reference signal resource The uplink positioning reference signal resources and the downlink positioning reference signal resources are separately indicated by different fields, and the combination is relatively more flexible.
  • the network side configures multiple sets of semi-persistent (SP) PRS resources (sets) for the terminal device through high-layer signaling: PRS resource set #1, PRS resource set #2, ..., PRS resource set #Np, and multiple sets of semi-persistent SRS resources (sets): SRS resource set #1, SRS resource set #2, ..., SRS resource set #Ns, these PRS resource (set) and SRS resource (set) are independent configured.
  • SP semi-persistent
  • the terminal device when the positioning reference signal is activated/deactivated through MAC CE signaling, the activation/deactivation of one/multiple groups of PRS resources and one/multiple groups of SRS resources (which can be indicated according to the resource set identifier) will be indicated at the same time. corresponding resources), the terminal device will measure the PRS signal at the corresponding time-frequency position according to the activated PRS configuration information, and will also send the SRS signal at the corresponding time-frequency position according to the SRS configuration information.
  • FIG. 6 is an optional implementation of the MAC CE signaling in Example 1a, and the activated/deactivated SP PRS ID and Resource set ID can also be placed in the SRS activation/deactivation signaling. It should be noted that some parameters in Fig. 6 can refer to the above description about Fig. 3, in addition, Fig. 6 is for reference only, the number of bits required for the specific SP PRS ID and resource set ID, and whether it needs to include other PRS-related Configuration information is subject to change.
  • the network side configures the terminal equipment with multiple sets of PRS resource sets of aperiodic types: PRS resource set #1, PRS resource set #2, . . . , PRS resource set #Np, and multiple sets of aperiodic types of SRS resource set: SRS resource set #1, SRS resource set #2, ..., SRS resource set #Ns, these PRS resource sets and SRS resource sets are independently configured.
  • PRS resource set #1 when the DCI triggers the positioning reference signal, one group/multiple groups of PRS resources and one/multiple groups of SRS resources are simultaneously indicated to be triggered.
  • the terminal device performs DL-PRS measurements according to the indicated PRS resources, and transmits UL-SRS signals according to the indicated SRS resources.
  • ID the resources of the triggered aperiodic PRS signal Set identifier
  • the first signaling includes a third field
  • the third field is used to indicate the at least one uplink positioning reference signal resource
  • the at least one downlink positioning reference signal resource is a first association relationship with the at least one The downlink positioning reference signal resource corresponding to the uplink positioning reference signal resource. Only one field is needed to indicate uplink positioning reference signal resources, which reduces the number of bits required for signaling.
  • the downlink positioning reference signal resource corresponding to it in the first association relationship also performs the first operation.
  • the terminal device may determine the at least one uplink positioning reference signal resource based on the third field, and determine the at least one downlink positioning reference signal resource associated with the at least one uplink positioning reference signal resource based on the first association relationship.
  • the first association relationship may be an association relationship between uplink positioning reference signal resources and downlink positioning reference signal resources, or the first association relationship may at least include uplink positioning reference signal resources and downlink positioning reference signal resources relationship between resources.
  • the first association relationship is pre-configured or agreed in a protocol, or the first association relationship is configured by a network device.
  • the association relationship between uplink positioning reference signal resources and downlink positioning reference signal resources may be one-to-one, one-to-many, many-to-one, or many-to-many, This embodiment of the present application does not limit this.
  • the first signaling includes a fourth field, where the fourth field is used to indicate the at least one downlink positioning reference signal resource, and the at least one uplink positioning reference signal resource is the first association relationship with the at least one The uplink positioning reference signal resources corresponding to the downlink positioning reference signal resources. Only one field is needed to indicate uplink positioning reference signal resources, which reduces the number of bits required for signaling.
  • the corresponding uplink positioning reference signal resource in the first association relationship also performs the first operation.
  • the terminal device may determine the at least one downlink positioning reference signal resource based on the fourth field, and determine the at least one uplink positioning reference signal resource associated with the at least one downlink positioning reference signal resource based on the first association relationship.
  • the network side configures multiple sets of semi-persistent PRS resource sets for the terminal device through high-layer signaling: PRS resource set #1, PRS resource set #2, ..., PRS resource set #Np, and multiple sets of semi-persistent PRS resource sets SRS resource set: SRS resource set #1, SRS resource set #2, ..., SRS resource set #Ns.
  • the high-level signaling also configures certain association relationships (which may be one-to-one, one-to-many, and many-to-one) for these PRS resource sets and SRS resource sets, as shown in FIG. 7 .
  • the SRS resource sets associated with the PRS resource sets will also be activated/deactivated accordingly. For example, if the MAC CE signaling indicates PRS resource set #1, the associated SRS resource set #1 and SRS resource set #2 will also be activated/deactivated correspondingly.
  • the network side configures multiple sets of semi-persistent PRS resource sets for the terminal device through high-layer signaling: PRS resource set #1, PRS resource set #2, , PRS resource set #Np, and multiple sets of semi-persistent PRS resource sets SRS resource set: SRS resource set #1, SRS resource set #2, ..., SRS resource set #Ns.
  • the high-level signaling also configures certain association relationships (which may be one-to-one, one-to-many, and many-to-one) for these PRS resource sets and SRS resource sets, as shown in FIG. 7 .
  • the PRS resource sets associated with the indicated SRS resource sets will also be activated/deactivated accordingly. For example, if the MAC CE signaling indicates the activation/deactivation of SRS resource set #3, the associated PRS resource set #2 and PRS resource set #3 will also be activated/deactivated accordingly.
  • the first signaling includes a fifth field, where the fifth field is used to indicate the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource.
  • the fifth field carries at least one resource group number, and the at least one resource group number is used to indicate the at least one uplink positioning reference signal resource and the at least one downlink positioning reference with the first association relationship signal resource.
  • the uplink positioning reference signal resources and the downlink positioning reference signal resources with the association relationship have their unique resource group numbers, and the terminal device can determine from the first association relationship based on the resource group numbers.
  • uplink positioning reference signal resources and downlink positioning reference signal resources are examples of uplink positioning reference signal resources and downlink positioning reference signal resources.
  • the resource group number may be configured together with the first association relationship, that is, if the first association relationship is specified by the protocol, the resource group number is also specified by the protocol; it is assumed that the first association relationship is configured by the network device. , the resource group number is also configured by the network device when configuring the first association relationship.
  • the resource group number may also be configured independently of the first association relationship, that is, after the first association relationship is configured, the resource group number may be configured according to the first association relationship.
  • the network side configures multiple sets of semi-persistent PRS resource sets for the terminal device through high-layer signaling: PRS resource set #1, PRS resource set #2, ..., PRS resource set #Np, and multiple sets of semi-persistent PRS resource sets SRS resource set: SRS resource set #1, SRS resource set #2, ..., SRS resource set #Ns.
  • the high-level signaling also configures certain association relationships (which may be one-to-one, one-to-many, and many-to-one) for these PRS resource sets and SRS resource sets.
  • MAC CE signaling can be used to indicate one or more groups of PRS+SRS resource set combinations, wherein each group of PRS+SRS resource set combinations is a pair of associated PRS resource sets and SRS resource sets, and the PRS+SRS resource set is combined in the upper layer. configured in signaling. For example, higher layer signaling can configure that PRS resource set #1 and SRS resource set #1 are associated to become resource set combination #1; PRS resource set #1 and SRS resource set #2 are associated to become resource set combination #2.
  • the MAC CE signaling can indicate the combination number to determine the combination of PRS and SRS resource sets that are activated/deactivated at the same time. For example, MCA-CE indicates that combination 2 means that PRS resource set #1 and SRS resource set #2 are activated/deactivated at the same time.
  • a manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is pre-configured or agreed in a protocol.
  • the manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is determined by the format or length of the first signaling.
  • the manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource may include the following manners 1 to 4:
  • the first signaling includes a first field and a second field that are independent of each other, where the first field is used to indicate the at least one uplink positioning reference signal resource, and the second field is used to indicate the at least one downlink positioning reference signal resources;
  • the first signaling includes a third field, and the third field is used to indicate the at least one uplink positioning reference signal resource, and the at least one downlink positioning reference signal resource is the first association relationship with the at least one uplink positioning reference signal Downlink positioning reference signal resources corresponding to the signal resources;
  • the first signaling includes a fourth field, where the fourth field is used to indicate the at least one downlink positioning reference signal resource, and the at least one uplink positioning reference signal resource is the first association relationship with the at least one downlink positioning reference signal The uplink positioning reference signal resource corresponding to the signal resource;
  • the first signaling includes a fifth field, where the fifth field carries at least one resource group number, and the at least one resource group number is used to indicate the at least one uplink positioning reference signal resource with the first association relationship and the the at least one downlink positioning reference signal resource.
  • the format or length of the first signaling may indicate that the first signaling indicates the uplink positioning reference signal resource and the downlink positioning reference signal resource in a joint indication manner.
  • the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is which of the foregoing manners 1 to 4 may be pre-configured or agreed in the agreement.
  • which of the foregoing manners 1 to 4 is specifically adopted for the first signaling may be determined by the format or length of the first signaling.
  • the format of the first signaling is format 1, the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned mode 1; the format of the first signaling is Format 2, the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above method 2; the format of the first signaling is format 3, then the first signaling indicates The specific mode of the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned mode 3; the format of the first signaling is format 4, and the first signaling indicates the at least one uplink positioning reference signal resource and the at least one uplink positioning reference signal resource.
  • the specific manner of the at least one downlink positioning reference signal resource is the foregoing manner 4.
  • the length of the first signaling is A, the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above method 1; the length of the first signaling is B , the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned method 2; the length of the first signaling is C, then the first signaling indicates the at least one The specific manner of the uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned mode 3; the length of the first signaling is format D, and the first signaling indicates the at least one uplink positioning reference signal resource and the at least one The specific manner of the downlink positioning reference signal resource is the foregoing manner 4.
  • the high-layer signaling configures the PRS and SRS in the same way as in the above example 2a, and the fixed or pre-configured one of the above examples 1a, 2a, 2b, and 2c is used to indicate the PRS/SRS resources, such as the network side
  • Both PRS and SRS activation/deactivation MAC CE signaling are sent in the manner of example 2c above, and the terminal equipment also receives and interprets in accordance with this mode.
  • the terminal device receives the second signaling sent by the network device; wherein,
  • the second signaling is used to indicate whether the uplink positioning reference signal resources and the downlink positioning reference signal resources are jointly indicated, or the format or length of the second signaling is used to indicate whether the uplink positioning reference signal resources and the downlink positioning reference signal resources are jointly indicated resource.
  • the terminal device receives the second signaling sent by the network device.
  • the second signaling includes 1 bit, a bit value of 0 indicates that uplink positioning reference signal resources and downlink positioning reference signal resources are not jointly indicated, and a bit value of 1 indicates that uplink positioning reference signal resources and downlink positioning reference signal resources are jointly indicated .
  • the format of the second signaling is format 1, which means that the uplink positioning reference signal resources and the downlink positioning reference signal resources are not jointly indicated
  • the format of the second signaling is format 2, which means that the uplink positioning reference signal resources and the downlink positioning reference signal resources are not jointly indicated. Downlink positioning reference signal resources.
  • the length of the second signaling is X, which means that the uplink positioning reference signal resources and the downlink positioning reference signal resources are not jointly indicated, and the length of the second signaling is Y, which means that the uplink positioning reference signal resources and the downlink positioning are jointly indicated. reference signal resources.
  • the high-layer signaling configures the PRS and SRS in the same way as in the above example 2a, and the selected PRS/SRS resource indication method is determined by the following methods which one of the above example 1a, example 2a, example 2b, and example 2c :
  • Mode A through higher layer signaling, such as RRC, to indicate the resource indication mode adopted by the MAC CE signaling;
  • mode B the resource indication mode adopted by the MAC CE signaling is indicated.
  • the information used to indicate the PRS/SRS resource indication manner may be 1 bit:
  • a value of 0 indicates that the first signaling indicates PRS or SRS, and will not use any of the above examples to jointly indicate PRS+SRS;
  • a value of 1 indicates that the first signaling uses one of the above examples 1a, 2a, 2b, and 2c to jointly indicate the PRS+SRS resources.
  • the specific method is specified or predefined by the protocol, which is not described here. limited.
  • the information used to indicate the PRS/SRS resource indication manner may be 2 bits:
  • a value of 00 indicates that the first signaling contains two separate fields for indicating the uplink and downlink positioning reference signal resources respectively, that is, the solution of the above example 1a;
  • a value of 01 indicates that only one field is included in the first signaling for downlink positioning reference signal resource indication, and the corresponding uplink positioning reference signal resource is determined according to the association relationship, that is, the solution in the above example 2a;
  • a value of 10 indicates that only one field is included in the first signaling for uplink positioning reference signal resource indication, and the corresponding downlink positioning reference signal resource is determined according to the association relationship, that is, the solution in the above example 2b;
  • a value of 11 indicates that only one field is included in the first signaling for indicating the combination of uplink and downlink positioning reference signal resources, that is, the solution in Example 2c above.
  • the information used to indicate the PRS/SRS resource indication manner may be 3 bits:
  • a value of 000 indicates that the first signaling will not simultaneously indicate the uplink and downlink positioning reference signal resources, and the R-16 method is used to indicate only the uplink SRS or downlink PRS resources;
  • a value of 001 indicates that the first signaling includes two separate fields for indicating uplink and downlink positioning reference signal resources respectively, that is, the solution in the above example 1a;
  • a value of 010 indicates that only one field is included in the first signaling for downlink positioning reference signal resource indication, and the corresponding uplink positioning reference signal resource is determined according to the association relationship, that is, the solution in the above example 2a;
  • a value of 011 indicates that the first signaling contains only one field for uplink positioning reference signal resource indication, and the corresponding downlink positioning reference signal resource is determined according to the association relationship, that is, the solution in the above example 2b;
  • a value of 100 indicates that only one field is included in the first signaling for indicating the combination of uplink and downlink positioning reference signal resources, that is, the solution in Example 2c above;
  • the value 101/110/111 is temporarily reserved.
  • examples 3a to 3d they correspond to the above examples 2a to 2d respectively, the difference is that the PRS/SRS signal configured by the high layer is aperiodic, and corresponding to triggering in DCI, PRS resource ID or SRS resource ID or PRS+SRS resource combination can be used
  • the ID is used to indicate the triggered resource, which can also be indicated in a manner similar to an aperiodic SRS resource trigger (aperiodic SRS-ResourceTrigger).
  • the selected PRS/SRS resource indication manner is determined by the following manners, which one of the foregoing examples 2a to 2d is:
  • the resource indication mode used is indicated through high-layer signaling, such as RRC;
  • the adopted resource indication mode is indicated by DCI.
  • example 3f it may be determined by adopting different DCI formats which of the above-mentioned example 1a, example 2a, example 2b, and example 2c the selected PRS/SRS resource indication manner is.
  • the second signaling when the second signaling is used to indicate the joint indication of uplink positioning reference signal resources and downlink positioning reference signal resources, or, the format or length of the second signaling is used to indicate the joint indication of uplink In the case of the positioning reference signal resources and the downlink positioning reference signal resources, the second signaling is also used to indicate a joint indication manner of the uplink positioning reference signal resources and the downlink positioning reference signal resources.
  • the joint indication mode of the uplink positioning reference signal resources and the downlink positioning reference signal resources may be, for example, the above-mentioned methods 1 to 4, and the second signaling may indicate that the first signaling specifically adopts the above-mentioned methods 1 to 4. 4 which way.
  • the format or length of the second signaling is used to indicate the uplink positioning reference signal resources and the downlink positioning reference signal resources. Joint indication method of downlink positioning reference signal resources. It should be noted that the joint indication mode of the uplink positioning reference signal resources and the downlink positioning reference signal resources may be, for example, the above-mentioned methods 1 to 4, and which of the above-mentioned methods 1 to 4 may be used for the first signaling. It is determined by the format or length of the second signaling.
  • the format of the second signaling is format 1, the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned mode 1; the format of the second signaling is Format 2, the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned method 2; the format of the second signaling is format 3, then the first signaling indicates The specific method of the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned method 3; the format of the second signaling is format 4, and the first signaling indicates the at least one uplink positioning reference signal resource and the at least one uplink positioning reference signal resource and The specific manner of the at least one downlink positioning reference signal resource is the foregoing manner 4.
  • the length of the second signaling is A, the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above method 1; the length of the second signaling is B , the specific manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned method 2; the length of the second signaling is C, then the first signaling indicates the at least one The specific manner of the uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is the above-mentioned mode 3; the length of the second signaling is format D, and the first signaling indicates the at least one uplink positioning reference signal resource and the at least one The specific manner of the downlink positioning reference signal resource is the foregoing manner 4.
  • the second signaling includes at least one of the following:
  • RRC signaling RRC signaling, MAC CE signaling, DCI.
  • the first operation is activation or triggering, and the at least one uplink positioning reference signal resource is located on a different uplink BWP; the terminal device only activates or triggers the at least one uplink positioning reference signal resource that is located in the activated The uplink positioning reference signal resources in the uplink BWP.
  • the at least one uplink positioning reference signal resource when the first operation is activation or triggering, and the at least one uplink positioning reference signal resource is located on a different uplink BWP, only the at least one uplink positioning reference signal resource located in the at least one uplink positioning reference signal resource is activated or triggered.
  • the uplink positioning reference signal resources in the uplink BWP currently activated by the terminal device.
  • the terminal device determines the actually transmitted SRS resources (sets) according to the currently activated UL BWP information ), the corresponding activation/triggering process will not be performed for SRS resources outside the currently activated UL BWP.
  • the high-layer signaling may associate multiple SRS resources (sets) in multiple different UL BWPs for the same PRS resource (set), and the terminal device flexibly selects the actually activated/triggered SRS according to the currently activated UL BWP resource (set), which can reduce the bits in MAC CE signaling/DCI while ensuring the associated SRS transmission.
  • the network device simultaneously triggers or activates or deactivates at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource through one signaling, so as to avoid triggering, activation or deactivation separately.
  • Signaling interaction and delay also avoid the situation that only one positioning reference signal resource is activated or triggered in the uplink positioning reference signal resource and the downlink positioning reference signal resource, the configuration is more efficient and reasonable, and the positioning efficiency and measurement accuracy are improved.
  • FIG. 9 shows a schematic block diagram of a terminal device 300 according to an embodiment of the present application.
  • the terminal device 300 includes:
  • a communication unit 310 configured to receive the first signaling
  • the first signaling is used to instruct the terminal device to perform at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource for a first operation, where the first operation is one of activation, deactivation, and triggering.
  • the first signaling includes a first field and a second field that are independent of each other, wherein the first field is used to indicate the at least one uplink positioning reference signal resource, and the second field is used to indicate the at least one uplink positioning reference signal resource.
  • a downlink positioning reference signal resource is used to indicate the at least one uplink positioning reference signal resource.
  • the first signaling includes a third field
  • the third field is used to indicate the at least one uplink positioning reference signal resource
  • the at least one downlink positioning reference signal resource is a first association relationship with the at least one The downlink positioning reference signal resource corresponding to the uplink positioning reference signal resource.
  • the first signaling includes a fourth field, where the fourth field is used to indicate the at least one downlink positioning reference signal resource, and the at least one uplink positioning reference signal resource is the first association relationship with the at least one The uplink positioning reference signal resources corresponding to the downlink positioning reference signal resources.
  • the first signaling includes a fifth field, where the fifth field is used to indicate the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource.
  • the fifth field carries at least one resource group number, and the at least one resource group number is used to indicate the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal having a first association relationship resource.
  • the first association relationship is pre-configured or agreed in a protocol, or the first association relationship is configured by a network device.
  • the format or length of the first signaling indicates that the first signaling indicates uplink positioning reference signal resources and downlink positioning reference signal resources by means of a joint indication; and/or, the first signaling
  • the manner of indicating the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is pre-configured or agreed in the protocol.
  • the manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is determined by the format or length of the first signaling.
  • the communication unit 310 is further configured to receive the second signaling; wherein,
  • the second signaling is used to indicate whether the uplink positioning reference signal resources and the downlink positioning reference signal resources are jointly indicated, or the format or length of the second signaling is used to indicate whether the uplink positioning reference signal resources and the downlink positioning reference signal resources are jointly indicated resource.
  • the second signaling when the second signaling is used to indicate the joint indication of uplink positioning reference signal resources and downlink positioning reference signal resources, or, the format or length of the second signaling is used to indicate the joint indication of uplink In the case of positioning reference signal resources and downlink positioning reference signal resources,
  • the second signaling is also used to indicate a joint indication manner of uplink positioning reference signal resources and downlink positioning reference signal resources.
  • the format or length of the second signaling is used to indicate the uplink positioning reference signal resources and the downlink positioning reference signal resources. Joint indication method of downlink positioning reference signal resources.
  • the second signaling includes at least one of the following:
  • the first operation is activation or triggering, and the at least one uplink positioning reference signal resource is located on a different uplink bandwidth part BWP;
  • the terminal device further includes: a processing unit 320, wherein:
  • the processing unit 320 is configured to activate or trigger only the uplink positioning reference signal resource located in the activated uplink BWP among the at least one uplink positioning reference signal resource.
  • the first signaling includes at least one of the following:
  • the above-mentioned communication unit may be a communication interface or a transceiver, or an input/output interface of a communication chip or a system-on-chip.
  • the aforementioned processing unit may be one or more processors.
  • terminal device 300 may correspond to the terminal device in the method embodiment of the present application, and the above-mentioned and other operations and/or functions of the various units in the terminal device 300 are respectively for realizing the method shown in FIG. 5 .
  • the corresponding process of the terminal device in 200 is not repeated here for brevity.
  • FIG. 10 shows a schematic block diagram of a network device 400 according to an embodiment of the present application.
  • the network device 400 includes:
  • a communication unit 410 configured to send the first signaling to the terminal device
  • the first signaling is used to instruct the terminal device to perform at least one uplink positioning reference signal resource and at least one downlink positioning reference signal resource for a first operation, where the first operation is one of activation, deactivation, and triggering.
  • the first signaling includes a first field and a second field that are independent of each other, wherein the first field is used to indicate the at least one uplink positioning reference signal resource, and the second field is used to indicate the at least one uplink positioning reference signal resource.
  • a downlink positioning reference signal resource is used to indicate the at least one uplink positioning reference signal resource.
  • the first signaling includes a third field
  • the third field is used to indicate the at least one uplink positioning reference signal resource
  • the at least one downlink positioning reference signal resource is a first association relationship with the at least one The downlink positioning reference signal resource corresponding to the uplink positioning reference signal resource.
  • the first signaling includes a fourth field, where the fourth field is used to indicate the at least one downlink positioning reference signal resource, and the at least one uplink positioning reference signal resource is the first association relationship with the at least one The uplink positioning reference signal resources corresponding to the downlink positioning reference signal resources.
  • the first signaling includes a fifth field, where the fifth field is used to indicate the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource.
  • the fifth field carries at least one resource group number, and the at least one resource group number is used to indicate the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal having a first association relationship resource.
  • the first association relationship is pre-configured or agreed in a protocol, or the first association relationship is configured by a network device.
  • the format or length of the first signaling indicates that the first signaling indicates uplink positioning reference signal resources and downlink positioning reference signal resources by means of a joint indication; and/or, the first signaling
  • the manner of indicating the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is pre-configured or agreed in the protocol.
  • the manner in which the first signaling indicates the at least one uplink positioning reference signal resource and the at least one downlink positioning reference signal resource is determined by the format or length of the first signaling.
  • the communication unit 410 is further configured to send the second signaling to the terminal device; wherein,
  • the second signaling is used to indicate whether to jointly indicate uplink positioning reference signal resources and downlink positioning reference signal resources, or the format or length of the second signaling is used to indicate whether to jointly indicate uplink positioning reference signal resources and downlink positioning reference signal resources. resource.
  • the second signaling when the second signaling is used to indicate the joint indication of uplink positioning reference signal resources and downlink positioning reference signal resources, or, the format or length of the second signaling is used to indicate the joint indication of uplink In the case of positioning reference signal resources and downlink positioning reference signal resources,
  • the second signaling is also used to indicate a joint indication manner of uplink positioning reference signal resources and downlink positioning reference signal resources.
  • the format or length of the second signaling is used to indicate the uplink positioning reference signal resources and the downlink positioning reference signal resources. Joint indication method of downlink positioning reference signal resources.
  • the second signaling includes at least one of the following:
  • the at least one uplink positioning reference signal resource when the first operation is activation or triggering, and the at least one uplink positioning reference signal resource is located on a different uplink bandwidth part BWP, only the at least one uplink positioning reference signal resource is activated or triggered The uplink positioning reference signal resources located in the currently activated uplink BWP of the terminal device.
  • the first signaling includes at least one of the following:
  • the above-mentioned communication unit may be a communication interface or a transceiver, or an input/output interface of a communication chip or a system-on-chip.
  • the network device 400 may correspond to the network device in the method embodiment of the present application, and the above-mentioned and other operations and/or functions of each unit in the network device 400 are respectively for realizing the method shown in FIG. 5 .
  • the corresponding process of the network device in 200 is not repeated here for brevity.
  • FIG. 11 is a schematic structural diagram of a communication device 500 provided by an embodiment of the present application.
  • the communication device 500 shown in FIG. 11 includes a processor 510, and the processor 510 can call and run a computer program from a memory, so as to implement the method in the embodiment of the present application.
  • the communication device 500 may further include a memory 520 .
  • the processor 510 may call and run a computer program from the memory 520 to implement the methods in the embodiments of the present application.
  • the memory 520 may be a separate device independent of the processor 510 , or may be integrated in the processor 510 .
  • the communication device 500 may further include a transceiver 530, and the processor 510 may control the transceiver 530 to communicate with other devices, specifically, may send information or data to other devices, or receive other Information or data sent by a device.
  • the transceiver 530 may include a transmitter and a receiver.
  • the transceiver 530 may further include antennas, and the number of the antennas may be one or more.
  • the communication device 500 may specifically be a network device in this embodiment of the present application, and the communication device 500 may implement the corresponding processes implemented by the network device in each method in the embodiment of the present application. For brevity, details are not repeated here. .
  • the communication device 500 may specifically be the terminal device of the embodiment of the present application, and the communication device 500 may implement the corresponding processes implemented by the terminal device in each method of the embodiment of the present application, which is not repeated here for brevity. .
  • FIG. 12 is a schematic structural diagram of an apparatus according to an embodiment of the present application.
  • the apparatus 600 shown in FIG. 12 includes a processor 610, and the processor 610 can call and run a computer program from a memory, so as to implement the method in this embodiment of the present application.
  • the apparatus 600 may further include a memory 620 .
  • the processor 610 may call and run a computer program from the memory 620 to implement the methods in the embodiments of the present application.
  • the memory 620 may be a separate device independent of the processor 610 , or may be integrated in the processor 610 .
  • the apparatus 600 may further include an input interface 630 .
  • the processor 610 may control the input interface 630 to communicate with other devices or chips, and specifically, may acquire information or data sent by other devices or chips.
  • the apparatus 600 may further include an output interface 640 .
  • the processor 610 can control the output interface 640 to communicate with other devices or chips, and specifically, can output information or data to other devices or chips.
  • the apparatus can be applied to the network equipment in the embodiments of the present application, and the apparatus can implement the corresponding processes implemented by the network equipment in the various methods of the embodiments of the present application, which are not repeated here for brevity.
  • the apparatus may be applied to the terminal equipment in the embodiments of the present application, and the apparatus may implement the corresponding processes implemented by the terminal equipment in each method of the embodiments of the present application, which will not be repeated here for brevity.
  • the device mentioned in the embodiment of the present application may also be a chip.
  • it can be a system-on-chip, a system-on-a-chip, a system-on-a-chip, or a system-on-a-chip.
  • FIG. 13 is a schematic block diagram of a communication system 700 provided by an embodiment of the present application. As shown in FIG. 13 , the communication system 700 includes a terminal device 710 and a network device 720 .
  • the terminal device 710 can be used to implement the corresponding functions implemented by the terminal device in the above method
  • the network device 720 can be used to implement the corresponding functions implemented by the network device in the above method. For brevity, details are not repeated here. .
  • the processor in this embodiment of the present application may be an integrated circuit chip, which has a signal processing capability.
  • each step of the above method embodiment may be completed by a hardware integrated logic circuit in a processor or an instruction in the form of software.
  • the above-mentioned processor can be a general-purpose processor, a digital signal processor (Digital Signal Processor, DSP), an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), an off-the-shelf programmable gate array (Field Programmable Gate Array, FPGA) or other available Programming logic devices, discrete gate or transistor logic devices, discrete hardware components.
  • DSP Digital Signal Processor
  • ASIC Application Specific Integrated Circuit
  • FPGA Field Programmable Gate Array
  • a general purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
  • the steps of the methods disclosed in conjunction with the embodiments of the present application may be directly embodied as executed by a hardware decoding processor, or executed by a combination of hardware and software modules in the decoding processor.
  • the software module may be located in random access memory, flash memory, read-only memory, programmable read-only memory or electrically erasable programmable memory, registers and other storage media mature in the art.
  • the storage medium is located in the memory, and the processor reads the information in the memory, and completes the steps of the above method in combination with its hardware.
  • the memory in this embodiment of the present application may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memory.
  • the non-volatile memory may be a read-only memory (Read-Only Memory, ROM), a programmable read-only memory (Programmable ROM, PROM), an erasable programmable read-only memory (Erasable PROM, EPROM), an electrically programmable read-only memory (Erasable PROM, EPROM). Erase programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
  • Volatile memory may be Random Access Memory (RAM), which acts as an external cache.
  • RAM Static RAM
  • DRAM Dynamic RAM
  • SDRAM Synchronous DRAM
  • SDRAM double data rate synchronous dynamic random access memory
  • Double Data Rate SDRAM DDR SDRAM
  • enhanced SDRAM ESDRAM
  • synchronous link dynamic random access memory Synchlink DRAM, SLDRAM
  • Direct Rambus RAM Direct Rambus RAM
  • the memory in the embodiment of the present application may also be a static random access memory (static RAM, SRAM), a dynamic random access memory (dynamic RAM, DRAM), Synchronous dynamic random access memory (synchronous DRAM, SDRAM), double data rate synchronous dynamic random access memory (double data rate SDRAM, DDR SDRAM), enhanced synchronous dynamic random access memory (enhanced SDRAM, ESDRAM), synchronous connection Dynamic random access memory (synch link DRAM, SLDRAM) and direct memory bus random access memory (Direct Rambus RAM, DR RAM) and so on. That is, the memory in the embodiments of the present application is intended to include but not limited to these and any other suitable types of memory.
  • Embodiments of the present application further provide a computer-readable storage medium for storing a computer program.
  • the computer-readable storage medium can be applied to the network device in the embodiments of the present application, and the computer program enables the computer to execute the corresponding processes implemented by the network device in the various methods of the embodiments of the present application.
  • the computer program enables the computer to execute the corresponding processes implemented by the network device in the various methods of the embodiments of the present application.
  • the computer-readable storage medium can be applied to the terminal device in the embodiments of the present application, and the computer program enables the computer to execute the corresponding processes implemented by the terminal device in each method of the embodiments of the present application.
  • the computer program enables the computer to execute the corresponding processes implemented by the terminal device in each method of the embodiments of the present application.
  • Embodiments of the present application also provide a computer program product, including computer program instructions.
  • the computer program product can be applied to the network device in the embodiments of the present application, and the computer program instructions cause the computer to execute the corresponding processes implemented by the network device in each method of the embodiments of the present application. Repeat.
  • the computer program product can be applied to the terminal device in the embodiments of the present application, and the computer program instructions cause the computer to execute the corresponding processes implemented by the terminal device in each method of the embodiments of the present application. Repeat.
  • the embodiments of the present application also provide a computer program.
  • the computer program can be applied to the network device in the embodiments of the present application.
  • the computer program When the computer program is run on the computer, it causes the computer to execute the corresponding processes implemented by the network device in each method of the embodiments of the present application. For the sake of brevity. , and will not be repeated here.
  • the computer program may be applied to the terminal device in the embodiments of the present application, and when the computer program runs on the computer, the computer executes the corresponding processes implemented by the terminal device in each method of the embodiments of the present application, for the sake of brevity. , and will not be repeated here.
  • the disclosed system, apparatus and method may be implemented in other manners.
  • the apparatus 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 may be combined or Can be integrated into another system, or some features can be ignored, or not implemented.
  • the shown or discussed mutual coupling or direct coupling or communication connection may be through some interfaces, indirect coupling or communication connection of devices or units, and may be in electrical, mechanical or other forms.
  • the units described as separate components may or may not be physically separated, and components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution in this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit.
  • the functions, if implemented in the form of software functional units and sold or used as independent products, may be stored in a computer-readable storage medium.
  • the technical solution of the present application can be embodied in the form of a software product in essence, or the part that contributes to the prior art or the part of the technical solution.
  • the computer software product is stored in a storage medium, including Several instructions are used to cause a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present application.
  • the aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other media that can store program codes .

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

L'invention concerne un procédé de communication sans fil, un dispositif terminal et un dispositif de réseau. Des ressources de signal PRS et des ressources de signal SRS pour le positionnement sont simultanément déclenchées, activées ou désactivées dans la signalisation de couche physique, ce qui permet d'éviter une interaction de signalisation et une latence résultant d'un déclenchement, d'un activation ou d'une désactivation distincts, et d'éviter également la situation d'une seule ressource de signal dans les ressources de signal PRS et les ressources de signal SRS pour le positionnement qui sont activées ou déclenchées de telle sorte que la configuration soit plus efficace et rationnelle. Le procédé de communication sans fil comprend l'étape suivante : un dispositif terminal reçoit une première signalisation, la première signalisation étant utilisée pour ordonner au dispositif terminal d'exécuter au moins une ressource de signal de référence de positionnement de liaison montante et au moins une ressource de signal de référence de positionnement de liaison descendante d'une première opération, et la première opération étant soit une activation, soit une désactivation, soit un déclenchement.
PCT/CN2021/072310 2021-01-15 2021-01-15 Procédé de communication sans fil, dispositif terminal et dispositif de réseau WO2022151425A1 (fr)

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PCT/CN2021/072310 WO2022151425A1 (fr) 2021-01-15 2021-01-15 Procédé de communication sans fil, dispositif terminal et dispositif de réseau
CN202180075047.2A CN116458098A (zh) 2021-01-15 2021-01-15 无线通信的方法、终端设备和网络设备

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180077643A1 (en) * 2016-09-10 2018-03-15 Ofinno Technologies, Llc Deactivation timer management in a wireless device and wireless network
CN111294139A (zh) * 2018-12-06 2020-06-16 电信科学技术研究院有限公司 一种配置授权的确认方法、终端和网络侧设备
CN111869156A (zh) * 2020-06-16 2020-10-30 北京小米移动软件有限公司 参考信号资源的配置方法、装置、通信设备及存储介质

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180077643A1 (en) * 2016-09-10 2018-03-15 Ofinno Technologies, Llc Deactivation timer management in a wireless device and wireless network
CN111294139A (zh) * 2018-12-06 2020-06-16 电信科学技术研究院有限公司 一种配置授权的确认方法、终端和网络侧设备
CN111869156A (zh) * 2020-06-16 2020-10-30 北京小米移动软件有限公司 参考信号资源的配置方法、装置、通信设备及存储介质

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