WO2023164852A1 - 测量方法及装置 - Google Patents
测量方法及装置 Download PDFInfo
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- WO2023164852A1 WO2023164852A1 PCT/CN2022/078905 CN2022078905W WO2023164852A1 WO 2023164852 A1 WO2023164852 A1 WO 2023164852A1 CN 2022078905 W CN2022078905 W CN 2022078905W WO 2023164852 A1 WO2023164852 A1 WO 2023164852A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0686—Hybrid systems, i.e. switching and simultaneous transmission
- H04B7/0695—Hybrid systems, i.e. switching and simultaneous transmission using beam selection
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/10—Scheduling measurement reports ; Arrangements for measurement reports
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B17/00—Monitoring; Testing
- H04B17/30—Monitoring; Testing of propagation channels
- H04B17/309—Measuring or estimating channel quality parameters
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0621—Feedback content
- H04B7/0626—Channel coefficients, e.g. channel state information [CSI]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0048—Allocation of pilot signals, i.e. of signals known to the receiver
- H04L5/0051—Allocation of pilot signals, i.e. of signals known to the receiver of dedicated pilots, i.e. pilots destined for a single user or terminal
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
Definitions
- the present disclosure relates to the technical field of communications, and in particular to a measurement method and device.
- AI artificial intelligence
- the application of AI technology is becoming more and more extensive, and the research on applying AI technology to wireless network air interface has also attracted the attention of many scholars.
- applying AI technology to beam management scenarios can reduce airspace overhead and delay.
- AI recovery based on a specific beam group not only has better recovery performance, but also reduces the complexity of terminal equipment measurement.
- the embodiment of the first aspect of the present disclosure provides a measurement method, the method is executed by a terminal device, and the method includes: measuring the reference signal carried by the first reference signal resource in the first reference signal resource set, and obtaining the According to the first quality information of the first reference signal resource; according to the first quality information of the first reference signal resource, and according to the first auxiliary information and the first auxiliary information of the first reference signal resource in the first reference signal resource set /or the second auxiliary information of the second reference signal resource in the second reference signal resource set, and determine the second quality information of the second reference signal resource in the second reference signal resource set.
- the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can realize The obtained first quality information of each first reference signal resource in the first reference signal resource set recovers the second quality information of each second reference signal resource in the second reference signal resource set, which can reduce the complexity of terminal device measurement Spend.
- the embodiment of the second aspect of the present disclosure provides another measurement method, the method is executed by a network device, including: sending first indication information to the terminal device, where the first indication information is used to indicate the first reference
- the reference signal carried by the first reference signal resource in the signal resource set is measured to obtain the first quality information of the first reference signal resource; where the first quality information of the first reference signal resource is used for Determine a second reference signal resource set according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second auxiliary information of the second reference signal resource in the second reference signal resource set
- the second quality information of the second reference signal resource in .
- the embodiment of the third aspect of the present disclosure provides a measurement device, the measurement device has part or all of the functions of the terminal device in the method described in the first aspect above, for example, the function of the measurement device may have part or all of the functions in the present disclosure
- the functions in the embodiments may also have the functions of independently implementing any one of the embodiments in the present disclosure.
- the functions described above may be implemented by hardware, or may be implemented by executing corresponding software on the hardware.
- the hardware or software includes one or more units or modules corresponding to the above functions.
- the embodiment of the fourth aspect of the present disclosure provides another measurement device, which has part or all of the functions of the network device in the method described in the second aspect above, for example, the function of the measurement device may have part or all of the functions in the present disclosure.
- the functions in all of the embodiments may also have the functions of implementing any one of the embodiments in the present disclosure independently.
- the functions described above may be implemented by hardware, or may be implemented by executing corresponding software on the hardware.
- the hardware or software includes one or more units or modules corresponding to the above functions.
- the embodiment of the fifth aspect of the present disclosure provides another measurement device, the device includes a processor, and when the processor calls the computer program in the memory, it executes the method described in the first aspect above, or executes the second aspect above the method described.
- the embodiment of the sixth aspect of the present disclosure provides another measurement device, the device includes a processor and a memory, and a computer program is stored in the memory, and when the computer program is executed by the processor, the above-mentioned first aspect is executed The method described above, or execute the method described in the second aspect above.
- the embodiment of the seventh aspect of the present disclosure provides another measurement device, the device includes a processor and an interface circuit, the interface circuit is used to receive code instructions and transmit them to the processor, and the processor is used to run the code instructions to make
- the device executes the method described in the first aspect above, or executes the method described in the second aspect above.
- the embodiment of the eighth aspect of the present disclosure provides a communication system, the system includes the measurement device described in the third aspect, or, the system includes the measurement device described in the fourth aspect, or, the system includes the measurement device described in the fifth aspect or, the system includes the measuring device described in the sixth aspect, or, the system includes the measuring device described in the seventh aspect.
- the embodiment of the ninth aspect of the present disclosure provides a computer-readable storage medium for storing instructions used by the above-mentioned terminal device, and when the instructions are executed, the terminal device executes the method described in the above-mentioned first aspect , or, for storing instructions used by the above network equipment, and when the instructions are executed, the network equipment executes the method described in the above second aspect.
- the embodiment of the tenth aspect of the present disclosure provides a computer program product including a computer program, which, when run on a computer, causes the computer to execute the method described in the first aspect above, or causes the computer to execute the method described in the second aspect above Methods.
- the embodiment of the eleventh aspect of the present disclosure provides a chip system, the chip system includes at least one processor and an interface, used to support the terminal device to realize the functions involved in the first aspect, or to support the network device to realize the second The functions involved in the aspect, for example, determining or processing at least one of the data and information involved in the above methods.
- the chip system further includes a memory, and the memory is used for storing necessary computer programs and data of the terminal device and the network device.
- the system-on-a-chip may consist of chips, or may include chips and other discrete devices.
- the embodiment of the twelfth aspect of the present disclosure provides a computer program that, when running on a computer, causes the computer to execute the method described in the first aspect above, or causes the computer to execute the method described in the second aspect above.
- FIG. 1 is a schematic structural diagram of a communication system provided by an embodiment of the present disclosure
- Fig. 2 is a schematic flow chart of a measurement method provided by an embodiment of the present disclosure
- Fig. 3 is a schematic flow chart of another measurement method provided by an embodiment of the present disclosure.
- FIG. 4 is a schematic flow chart of another measurement method provided by an embodiment of the present disclosure.
- Fig. 5 is a schematic flow chart of another measurement method provided by an embodiment of the present disclosure.
- Fig. 6 is a schematic flow chart of another measurement method provided by an embodiment of the present disclosure.
- Fig. 7 is a schematic flow chart of another measurement method provided by an embodiment of the present disclosure.
- FIG. 8 is a first schematic diagram of beam pointing in an embodiment of the present disclosure.
- FIG. 9 is a second schematic diagram of beam pointing in an embodiment of the present disclosure.
- Fig. 10 is a schematic flow chart of another measurement method provided by an embodiment of the present disclosure.
- Fig. 11 is a schematic structural diagram of a measuring device provided by an embodiment of the present disclosure.
- Fig. 12 is a schematic structural diagram of another measuring device provided by an embodiment of the present disclosure.
- FIG. 13 is a schematic structural diagram of a chip provided by an embodiment of the present disclosure.
- FIG. 1 is a schematic structural diagram of a communication system provided by an embodiment of the present disclosure.
- the communication system may include, but is not limited to, a network device and a terminal device.
- the number and shape of the devices shown in Figure 1 are for example only and do not constitute a limitation to the embodiments of the present disclosure. In practical applications, two or more network equipment, two or more terminal equipment.
- the communication system shown in FIG. 1 only includes one network device 101 and one terminal device 102 as an example.
- LTE long term evolution
- 5th generation 5th generation
- 5G new radio new radio, NR
- other future new mobile communication systems etc.
- the network device 101 in the embodiment of the present disclosure is an entity on the network side for transmitting or receiving signals.
- the network device 101 may be an evolved base station (evolved NodeB, eNB), a transmission reception point (transmission reception point or transmit receive point, TRP), a next generation base station (next generation NodeB, gNB) in the NR system, or other future mobile A base station in a communication system or an access node in a wireless fidelity (Wireless Fidelity, WiFi) system, etc.
- eNB evolved base station
- TRP transmission reception point or transmit receive point
- next generation NodeB next generation NodeB
- gNB next generation NodeB
- the embodiments of the present disclosure do not limit the specific technology and specific device form adopted by the network device.
- the network device provided by the embodiment of the present disclosure may be composed of a centralized unit (central unit, CU) and a distributed unit (distributed unit, DU), wherein the CU may also be called a control unit (control unit), and the CU-DU
- the structure of the network device such as the protocol layer of the base station, can be separated, and the functions of some protocol layers are placed in the centralized control of the CU, and the remaining part or all of the functions of the protocol layer are distributed in the DU, and the CU centrally controls the DU.
- the terminal device 102 in the embodiment of the present disclosure is an entity on the user side for receiving or transmitting signals, such as a mobile phone.
- the terminal equipment may also be called terminal equipment (terminal), user equipment (user equipment, UE), mobile station (mobile station, MS), mobile terminal equipment (mobile terminal, MT) and so on.
- the terminal device can be a car with communication functions, a smart car, a mobile phone, a wearable device, a tablet computer (Pad), a computer with a wireless transceiver function, a virtual reality (VR) terminal device, an augmented reality (augmented reality (AR) terminal equipment, wireless terminal equipment in industrial control (industrial control), wireless terminal equipment in self-driving (self-driving), wireless terminal equipment in remote medical surgery (remote medical surgery), smart grid ( Wireless terminal devices in smart grid, wireless terminal devices in transportation safety, wireless terminal devices in smart city, wireless terminal devices in smart home, etc.
- the embodiments of the present disclosure do not limit the specific technology and specific device form adopted by the terminal device.
- AI+PHY physical layer, air interface physical layer
- Beam management is an important application scenario of AI+PHY.
- the application of AI technology can reduce the overhead and delay of the airspace.
- the purpose of beam selection based on AI technology is to:
- AI restoration based on a specific beam group has better performance than AI restoration based on a randomly selected beam group.
- AI recovery refers to recovering the quality information of beams in a large set based on the quality information of beams in a small set, for example, recovering the quality information of 32 beams based on the quality information of 8 beams.
- the choice of a specific beam group i.e., which beams are selected to form a specific beam group also affects the performance of AI. For example, even if the samples are uniformly sampled, the position of the first beam pair is different, and the final results are very different.
- the present disclosure provides a measuring method and device.
- FIG. 2 is a schematic flowchart of a measuring method provided by an embodiment of the present disclosure.
- the measurement method can be executed by a terminal device in the communication system shown in FIG. 1 .
- the measurement method may include but not limited to the following steps:
- Step 201 Measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain first quality information of the first reference signal resource.
- the number of first reference signal resources included in the first reference signal resource set may be one, or may be multiple, which is not limited in the present disclosure.
- the number of first reference signal resources may be 4, 6, 8 and so on.
- the reference signal carried by the first reference signal resource may at least include a channel state information-reference signal (CSI-RS), or may also include other downlink reference signals, such as synchronization
- CSI-RS channel state information-reference signal
- the reference signal is not limited in the present disclosure.
- the first quality information may include at least a reference signal receiving power (reference signal receiving power, RSRP) or a signal to interference and noise ratio (or called signal to interference plus noise ratio, signal to interference plus noise ratio, SINR).
- RSRP reference signal receiving power
- SINR signal to interference plus noise ratio
- the terminal device may measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain the first quality information of the first reference signal resource.
- Step 202 according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information is to determine second quality information of the second reference signal resource in the second reference signal resource set.
- the number of second reference signal resources included in the second reference signal resource set may be one, or may be multiple, which is not limited in the present disclosure.
- the number of second reference signal resources may be 24, 32, and so on.
- the number of second reference signal resources may be greater than the number of first reference signal resources, Alternatively, the quantity of the second reference signal resources may also be less than or equal to the quantity of the first reference signal resources, which is not limited in the present disclosure.
- the first auxiliary information may at least include: beam pointing information of the first reference signal resource in the first reference signal resource set.
- the second auxiliary information may at least include: beam pointing information corresponding to the second reference signal resource set, and/or, the quantity of the second reference signal resources.
- the second quality information may include at least RSRP or SINR.
- the second quality information may be the same as the first quality information, or the second quality information may also be different from the first quality information, which is not limited in the present disclosure.
- both the second quality information and the first quality information may be RSRP, or both the second quality information and the first quality information may be SINR, or the second quality information may be RSRP, and the first quality information may be SINR,
- the second quality information may be SINR
- the first quality information may be RSRP.
- the terminal device may use the first quality information of the first reference information resource, and the first auxiliary information and/or the second reference signal resource set of the first reference signal resource in the first reference signal resource set
- the second auxiliary information of the second reference signal resource in the second reference signal resource set determines the second quality information of the second reference signal resource in the second reference signal resource set.
- the terminal device may determine the second reference signal resource in the second reference signal resource set according to the first quality information of the first reference information resource and the first auxiliary information of the first reference signal resource in the first reference signal resource set.
- the second quality information of the reference signal resource may be determined according to the first quality information of the first reference information resource and the first auxiliary information of the first reference signal resource in the first reference signal resource set.
- the terminal device may determine the second reference signal resource in the second reference signal resource set according to the first quality information of the first reference information resource and the second auxiliary information of the second reference signal resource in the second reference signal resource set. Second quality information of the two reference signal resources.
- the terminal device may use the first quality information of the first reference information resource, and the first auxiliary information of the first reference signal resource in the first reference signal resource set and the second The second auxiliary information of the reference signal resource determines the second quality information of the second reference signal resource in the second reference signal resource set.
- the terminal device may determine the The second quality information of each second reference signal resource in the second reference signal resource set. For example, the terminal device may use the AI model to determine the second quality information of each second reference signal resource in the second reference signal resource set according to the first quality information and the first auxiliary information and/or the second auxiliary information.
- the terminal device measures the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain the first quality information of the first reference signal resource, and according to the first reference signal The first quality information of the resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second auxiliary information of the second reference signal resource in the second reference signal resource set, determine the second The second quality information of the second reference signal resource in the reference signal resource set. Therefore, the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can obtain the second quality information based on the measurement.
- the second quality information of each second reference signal resource in the second reference signal resource set is recovered from the first quality information of each first reference signal resource in a reference signal resource set, which can reduce the complexity of terminal device measurement.
- FIG. 3 is a schematic flowchart of another measurement method provided by an embodiment of the present disclosure.
- the measurement method can be executed by the terminal equipment in the communication system shown in Fig. 1 .
- the measuring method may be executed alone, or may be executed in combination with any embodiment in the present disclosure or a possible implementation manner in the embodiment, and may also be executed in combination with any technical solution in related technologies.
- the measurement method may include but not limited to the following steps:
- Step 301 receiving first indication information sent by a network device, wherein the first indication information is used to indicate a first reference signal resource in a first reference signal resource set.
- each first reference signal resource in the first reference signal resource set may be indicated by the network device, that is, the network device may send the first indication information to the terminal device, and the first indication information is used to indicate the first Each first reference signal resource in the reference signal resource set.
- Step 302 Measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain first quality information of the first reference signal resource.
- Step 303 according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information is to determine second quality information of the second reference signal resource in the second reference signal resource set.
- steps 302 to 303 may be implemented in any one of the embodiments of the present disclosure, which is not limited in the embodiment of the present disclosure, and will not be repeated here.
- the network device indicates the first reference signal resource in the first reference signal resource set, so that the terminal device can measure the reference signal carried by the indicated first reference signal resource to obtain the first reference signal
- the first quality information of the resource and according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information of the two reference signal resources determines the second quality information of the second reference signal resources in the second reference signal resource set. Therefore, the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can obtain the second quality information based on the measurement.
- the second quality information of each second reference signal resource in the second reference signal resource set is recovered from the first quality information of each first reference signal resource in a reference signal resource set, which can reduce the complexity of terminal device measurement.
- FIG. 4 is a schematic flowchart of another measurement method provided by an embodiment of the present disclosure.
- the measurement method can be executed by a terminal device in the communication system shown in FIG. 1 .
- the measuring method may be executed alone, or may be executed in combination with any embodiment in the present disclosure or a possible implementation manner in the embodiment, and may also be executed in combination with any technical solution in related technologies.
- the measurement method may include but not limited to the following steps:
- Step 401 Receive second indication information sent by the network device, where the second indication information is used to indicate second auxiliary information, where the second auxiliary information includes the number of second reference signal resources included in the second reference signal resource set .
- the second auxiliary information of the second reference signal resource set may be indicated by the network device, that is, the network device may send the second indication information to the terminal device, where the second indication information is used to indicate the second auxiliary information,
- the second auxiliary information may include the quantity of the second reference signal resources included in the second reference signal resource set.
- the number of second reference signal resources may be determined by the network device according to a rule.
- the foregoing rules may be predefined rules.
- the network device may determine the quantity of the second reference signal resources according to a predefined rule and/or an AI model.
- the predefined rule may be: the quantity of the second reference signal resources is a set multiple of the quantity of the first reference signal resources. Assuming that the above setting multiple is 4 and the number of first reference signal resources is x, then the number of second reference signal resources is: x*4.
- the predefined rule may be: set the quantity of the second reference signal resources as a constant value, such as Y.
- the corresponding relationship between different AI models and resource quantities can be preset.
- the above corresponding relationship can be queried according to the AI model actually used by the terminal device, and the resource quantity corresponding to the AI model can be determined, and used as the first 2.
- the number of reference signal resources For example, the AI model is A, the number of second reference signal resources is z, the AI model is B, and the number of second reference signal resources is y.
- the AI model actually used by the terminal device may be indicated to the terminal device by the network device, or may be selected by the terminal device itself, which is not limited in the present disclosure.
- the network device may send indication information to the terminal device, which is recorded as fifth indication information in this disclosure, wherein the fifth indication information may include the index Index of the AI model, which is used for Instructs the end device which AI model to choose.
- the network device uses separate indication information (that is, the fifth indication information) to instruct the AI model.
- the index Index of the AI model can also be embedded in some existing indication information (such as In the first indication information, the second indication information, etc.), the present disclosure does not limit this.
- the corresponding relationship/criteria between different quantities of first reference signal resources, AI models, and quantities of second reference signal resources may be established in advance.
- the above correspondence/criterion can be queried to determine the number of first reference signal resources included in the first reference signal resource set and the AI model actually used by the terminal device The number of corresponding second reference signal resources.
- the second indication information may at least be carried in radio resource control (radio resource control, RRC) signaling.
- RRC radio resource control
- the RRC signaling may directly carry the number of second reference signal resources.
- the RRC signaling may carry a scaling factor, where the scaling factor is a ratio of the quantity of the second reference signal resources to the quantity of the first reference signal resources.
- Step 402 Measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain first quality information of the first reference signal resource.
- step 401 is executed before step 402.
- step 401 can also be executed in parallel with step 402, or step 401 It can also be executed after step 402, which is not limited.
- Step 403 according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information is to determine second quality information of the second reference signal resource in the second reference signal resource set.
- steps 402 to 403 may be implemented in any one of the embodiments of the present disclosure, which is not limited in the embodiment of the present disclosure, and will not be repeated here.
- the network device indicates the second auxiliary information of the second reference signal resource in the second reference signal resource set, so that the terminal device can measure the reference signal carried by the first reference signal resource to obtain the first The first quality information of the reference signal resource, and according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second information indicated by the network device
- the auxiliary information is used to determine the second quality information of the second reference signal resource in the second reference signal resource set. Therefore, the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can obtain the second quality information based on the measurement.
- the second quality information of each second reference signal resource in the second reference signal resource set is recovered from the first quality information of each first reference signal resource in a reference signal resource set, which can reduce the complexity of terminal device measurement.
- FIG. 5 is a schematic flowchart of another measurement method provided by an embodiment of the present disclosure.
- the measurement method can be executed by a terminal device in the communication system shown in FIG. 1 .
- the measuring method may be executed alone, or may be executed in combination with any embodiment in the present disclosure or a possible implementation manner in the embodiment, and may also be executed in combination with any technical solution in related technologies.
- the measurement method may include but not limited to the following steps:
- Step 501 Receive third indication information sent by the network device, where the third indication information is used to indicate first auxiliary information, where the first auxiliary information includes the first reference signal resource of each first reference signal resource in the first reference signal resource set. A beam is directed at the information.
- the first auxiliary information of the first reference signal resource set may be indicated by the network device, that is, the network device may send third indication information to the terminal device, where the third indication information is used to indicate the first auxiliary information,
- the first auxiliary information may include first beam pointing information of each first reference signal resource in the second reference signal resource set.
- the first beam pointing information may include horizontal direction pointing information and vertical direction pointing information.
- the first beam pointing information of the first reference signal resource may be displayed and sent by the network device, for example, the horizontal direction pointing information in the first beam pointing information may be The pointing information in the vertical direction may be ⁇ 1.
- the first beam pointing information may also include beamwidth information, where the beamwidth information may include but not limited to half-power beamwidth, half-power angle, 3dB beamwidth, etc., and the 3dB beamwidth may include Horizontal 3dB width, vertical 3dB width.
- the third indication information may be carried in reference signal configuration information RS configuration corresponding to the first reference signal resource.
- the first reference signal resource may have a corresponding RS configuration, and the RS configuration may be configured with first beam pointing information corresponding to the first reference signal resource.
- the terminal device After receiving the RS configuration sent by the network device, the terminal device can determine the first beam pointing information of the first reference signal resource.
- the third indication information can also be sent independently of the RS configuration.
- the third indication information can be indicated by at least one or a combination of the following signaling: RRC signaling; media Access control control element (media access control control element, MAC CE) signaling; downlink control information (downlink control information, DCI) signaling.
- the beam pointing information corresponding to the activated reference signal RS may be indicated in the MAC CE signaling.
- the third indication information may include an index index of a reference signal carried by the first reference signal resource; where the index of the reference signal corresponds to the beam pointing.
- the correspondence between the beam pointing and the index of the reference signal may be predefined, so that in the present disclosure, the terminal device determines the index of the reference signal carried by the first reference signal resource according to the third indication information sent by the network device. After indexing, the above corresponding relationship can be queried according to the index of the reference signal, and the beam pointing corresponding to the index of the reference signal carried by the first reference signal resource is determined, and used as the first beam pointing information of the first reference signal resource.
- the beam pointing range in the horizontal direction Encode each reference signal with the beam pointing range [ ⁇ 1, ⁇ 2] in the vertical direction, and obtain the beam pointing information corresponding to the index of each reference signal.
- the beam pointing information corresponding to the reference signal with index 1 is Therefore, according to the index of the reference signal and the beam pointing information, a corresponding relationship between the index of the reference signal and the beam pointing can be established.
- the third indication information may include a quasi-co-location relationship between the first beam pointing information of the first reference signal resource and the target reference signal of known beam pointing information.
- the first reference signal resource of the first reference signal resource may be indicated by performing quasi co-location (Quasi Co-Location, QCL) with a target reference signal of known beam pointing information.
- QCL quasi co-location
- Beam pointing information may be determined by any of the above methods, or may also be determined by other methods, which is not limited in the present disclosure.
- Step 502 Measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain first quality information of the first reference signal resource.
- step 501 is executed before step 502.
- step 501 can also be executed in parallel with step 502, or step 501 It can also be executed after step 502, which is not limited.
- Step 503 according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information is to determine second quality information of the second reference signal resource in the second reference signal resource set.
- steps 502 to 503 may be implemented in any one of the embodiments of the present disclosure, which is not limited in the embodiment of the present disclosure, and will not be repeated here.
- the network device indicates the first auxiliary information of the first reference signal resource in the first reference signal resource set, so that the terminal device can measure the reference signal carried by the first reference signal resource to obtain the first The first quality information of the reference signal resource, and according to the first quality information of the first reference signal resource, and according to the first auxiliary information indicated by the network device and/or the second information of the second reference signal resource in the second reference signal resource set
- the auxiliary information is used to determine the second quality information of the second reference signal resource in the second reference signal resource set. Therefore, the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can obtain the first quality information based on the measurement.
- the second quality information of each second reference signal resource in the second reference signal resource set is recovered from the first quality information of each first reference signal resource in a reference signal resource set, which can reduce the complexity of terminal device measurement.
- FIG. 6 is a schematic flowchart of another measurement method provided by an embodiment of the present disclosure.
- the measurement method can be executed by a terminal device in the communication system shown in FIG. 1 .
- the measuring method may be executed alone, or may be executed in combination with any embodiment in the present disclosure or a possible implementation manner in the embodiment, and may also be executed in combination with any technical solution in related technologies.
- the measurement method may include but not limited to the following steps:
- Step 601 Receive fourth indication information sent by a network device, where the fourth indication information is used to indicate second auxiliary information, where the second auxiliary information includes second beam pointing information corresponding to the second reference signal resource set.
- the second auxiliary information of the second reference signal resource set may be indicated by the network device, that is, the network device may send fourth indication information to the terminal device, where the fourth indication information is used to indicate the second auxiliary information,
- the second auxiliary information may include second beam pointing information corresponding to the second reference signal resource set.
- the second beam pointing information may include a beam pointing information range in a horizontal direction and a beam pointing information range in a vertical direction.
- the second beam pointing information may be displayed and sent by the network device.
- the beam pointing information range in the horizontal direction in the second beam pointing information may be
- the beam pointing information range in the vertical direction may be [ ⁇ 1, ⁇ 2].
- the second beam pointing information may also include beamwidth information, where the beamwidth information may include but not limited to half-power beamwidth, half-power angle, 3dB beamwidth, etc., and the 3dB beamwidth may include Horizontal 3dB width, vertical 3dB width.
- the second beam pointing information is determined by the network device according to the quantity of second reference signal resources.
- the network device may determine the second beam pointing information of the second reference signal resource set according to the AI model and the quantity of the second reference signal resources.
- the corresponding relationship/criteria between different AI models, resource quantities, and beam pointing information can be preset.
- the network device can query the above-mentioned corresponding relationship/criteria to determine and use the AI model and the second reference signal resource.
- the beam pointing information corresponding to the number is used as the second beam pointing information.
- the second beam pointing information may be obtained by the network device querying the correspondence between the number of resources and the beam pointing according to the number of second reference signal resources.
- the correspondence between the beam pointing and the number of resources can be predefined. For example, if the number of resources is 8, the information range of the beam pointing in the horizontal direction is The beam pointing information range in the vertical direction is [ ⁇ 1, ⁇ 2]. For another example, if the number of resources is 24, the beam pointing information range in the horizontal direction is The beam pointing information range in the vertical direction is [ ⁇ 1, ⁇ 2, ⁇ 3, ⁇ 4].
- the network device may query the correspondence between the resource quantity and the beam direction according to the quantity of the second reference signal resources, and determine the second beam direction information corresponding to the quantity of the second reference signal resources.
- the fourth indication information may include the quantity of resources; where there is a corresponding relationship between the quantity of resources and the direction of the beam.
- the network device may send the corresponding relationship between the resource quantity and the beam direction to the terminal device in advance, for example, the network device may configure the above corresponding relationship through RRC signaling, for example, the above corresponding relationship may be configured through the RRC table, that is, RRCtable relation. Therefore, in the present disclosure, after receiving the fourth indication information including the resource quantity (that is, the quantity of the second reference signal resource), the terminal device can query the above correspondence according to the resource quantity, and determine the beam pointing information corresponding to the resource quantity, And as the second beam pointing information.
- the fourth indication information may include the corresponding relationship between the resource quantity and the beam direction, and the resource quantity (that is, the quantity of the second reference signal resources), so that in the present disclosure, the terminal device receives the After four indication information, according to the quantity of the second reference signal resources, the corresponding relationship between the resource quantity and the beam direction can be queried, and the beam direction information corresponding to the quantity of the second reference signal resource can be determined as the second beam direction information.
- the fourth indication information may be indicated by a combination of at least one or more of the following signalings: RRC signaling; MAC CE signaling; DCI signaling.
- Step 602 Measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain first quality information of the first reference signal resource.
- step 601 does not limit the execution sequence of steps 601 and 602.
- FIG. 6 is only an example in which step 601 is executed before step 602. In practical applications, step 601 can also be executed in parallel with step 602, or step 601 It can also be executed after step 602, which is not limited.
- Step 603 according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information is to determine second quality information of the second reference signal resource in the second reference signal resource set.
- steps 602 to 603 may be implemented in any one of the embodiments of the present disclosure, which is not limited in the embodiment of the present disclosure, and will not be repeated here.
- the network device indicates the second auxiliary information of the second reference signal resource in the second reference signal resource set, so that the terminal device can measure the reference signal carried by the first reference signal resource to obtain the first The first quality information of the reference signal resource, and according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second information indicated by the network device
- the auxiliary information is used to determine the second quality information of the second reference signal resource in the second reference signal resource set. Therefore, the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can obtain the second quality information based on the measurement.
- the second quality information of each second reference signal resource in the second reference signal resource set is recovered from the first quality information of each first reference signal resource in a reference signal resource set, which can reduce the complexity of terminal device measurement.
- FIG. 7 is a schematic flowchart of another measurement method provided by an embodiment of the present disclosure.
- the measurement method can be executed by a terminal device in the communication system shown in FIG. 1 .
- the measuring method may be executed alone, or may be executed in combination with any embodiment in the present disclosure or a possible implementation manner in the embodiment, and may also be executed in combination with any technical solution in related technologies.
- the measurement method may include but not limited to the following steps:
- Step 701 Measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain first quality information of the first reference signal resource.
- Step 702 according to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource in the second reference signal resource set
- the second auxiliary information is to determine second quality information of the second reference signal resource in the second reference signal resource set.
- steps 701 to 702 may be implemented in any one of the embodiments of the present disclosure, which is not limited in the embodiment of the present disclosure, and will not be repeated here.
- Step 703 sending indication information of the second quality information to the network device.
- the indication information of the second quality information includes: an identifier of at least one target reference signal resource determined from each second reference signal resource according to the second quality information of each second reference signal resource; and/or, at least one target The second quality information of the reference signal resource.
- the terminal device may determine the resource with the highest second quality information from each second reference signal resource according to the second quality information of each second reference signal resource.
- the target reference signal resource so that the identification (such as ID) of the target reference signal resource and/or the second quality information of the target reference signal resource can be sent to the network device.
- the terminal device may assign each second reference signal resource according to the second quality
- the value of the information is sorted from high to low, and a set number of second reference signal resources sorted first are selected as target reference signal resources, so that the identification of each target reference signal resource can be sent to the network device, and/or, Second quality information of each target reference signal resource.
- the indication information of the second quality information sent to the network device may include the identification of each target reference signal resource , may also include: the second quality information of the target reference signal resources sorted in the first place, and the difference information of the target reference signal resources ranked in the non-first place, the difference information may be the target reference signal resources sorted in the non-first place and the sorted in The difference information of the second quality information between the previous target reference signal resources.
- the indication information of the second quality information is sent to the network device, wherein the indication information of the second quality information includes: according to the second quality information of each second reference signal resource, from each second reference signal resource An identifier of at least one target reference signal resource determined in the signal resources; and/or, second quality information of the at least one target reference signal resource.
- the terminal device reports the identifier and/or the second quality information of the second reference signal resource in the second reference signal resource set to the network device.
- the network device may send The device indicates the quantity (such as 24) of the second reference signal resources included in the second reference signal resource set.
- the network device may also send the first reference signal resource in the first reference signal resource set to the terminal device, and indicate to the terminal device the first beam pointing information of the first reference signal resource in the first reference signal resource set, for example, When the number of first reference signal resources is 6, the first beam pointing information can be as shown in (1,1), (2,2), (3,3), (3,4), (3,5 ), (4, 6).
- FIG. 8 there are 6 angles in the horizontal direction (that is, the horizontal direction), and 4 angles in the longitudinal direction (vertical direction) to form beam directions.
- the terminal device measures each first reference signal resource in the first reference signal resource set, obtains the RSRP of each first reference signal resource in the first reference signal resource set, and predicts the second reference signal resource based on the six measured RSRPs.
- the RSRPs of the 24 second reference signal resources in the signal resource set for example, the RSRPs of the 24 CSI-RS resources whose beam directions are (1, 1)-(4, 6) in FIG. 8 .
- CRI CSI-RS resource indicator, channel state information reference signal resource identifier
- the network device may send the terminal The device indicates the quantity and beamwidth (such as 10°) of the second reference signal resources included in the second reference signal resource set.
- the network device may also send the first reference signal resource in the first reference signal resource set to the terminal device, and indicate to the terminal device the first beam pointing information and the beam width of the first reference signal resource in the first reference signal resource set ( For example, 20°), for example, the first beam pointing information may be shown as ABCDEF in FIG. 9 .
- the terminal device may predict the RSRP of the 24 second reference signal resources in the second reference signal resource set based on the measured 6 RSRPs, for example In FIG. 9 , beams point to RSRPs of 24 CSI-RS resources (1, 1)-(4, 6).
- a CSI reporting configuration is associated with a CSI resource configuration and an AI model, where the AI model may include the number of second reference signal resources included in the second reference signal resource set and the number of First beam pointing information of a first reference signal resource in a reference signal resource set.
- a CSI reporting configuration is associated with a CSI resource configuration, where the CSI resource configuration may include the index of the first reference signal resource in the first reference signal resource set and the first beam direction information, and implicitly includes the number of first reference signal resources included in the first reference signal resource set; the CSI reporting configuration may include the number of second reference signal resources included in the second reference signal resource set, and may also include the number of second reference signal resources included in the second reference signal resource set Two beam pointing information.
- a CSI reporting configuration is associated with a CSI resource configuration, where the CSI resource configuration may include the index of the first reference signal resource in the first reference signal resource set and the first beam direction information, and implicitly includes the number of first reference signal resources included in the first reference signal resource set.
- Each CSI reporting configuration in the CSI aperiodic trigger state table CSI-AperiodicTriggerStateList and/or the CSI semi-persistent trigger state table CSI-SemiPersistentOnPUSCH-TriggerStateList on the Physical Uplink Shared Channel (PUSCH) is associated with an AI model, wherein, the AI model may include a rule for determining the quantity of the second reference signal resources included in the second reference signal resource set.
- the above information may be reflected in RRC signaling of CSI reporting configuration and/or CSI resource configuration and/or AI configuration, and may also be reflected in MACCE signaling and/or DCI signaling.
- FIG. 10 is a schematic flowchart of another measurement method provided by an embodiment of the present disclosure.
- the measurement method can be executed by a network device in the communication system shown in FIG. 1 .
- the measurement method may include but not limited to the following steps:
- Step 1001 Send first indication information to the terminal device, where the first indication information is used to indicate to measure the reference signal carried by the first reference signal resource in the first reference signal resource set, so as to obtain the first reference signal resource First quality information.
- the first quality information of the first reference signal resource is used for the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second reference signal resource of the second reference signal resource in the second reference signal resource set.
- the second auxiliary information is to determine the second quality information of the second reference signal resource in the second reference signal resource set.
- the reference signal carried by the first reference signal resource includes at least a CSI-RS.
- the network device may send the second indication information to the terminal device, where the second indication information is used to indicate the second auxiliary information, where the second auxiliary information includes the second The quantity of the second reference signal resources included in the reference signal resource set.
- the quantity of the second reference signal resources is determined by a rule.
- the second indication information is at least carried in the RRC signaling.
- the network device may send third indication information to the terminal device, where the third indication information is used to indicate the first auxiliary information, where the first auxiliary information includes the first The first beam pointing information of each first reference signal resource in the reference signal resource set.
- the third indication information is indicated by at least one or a combination of multiple signalings in the following signaling: RRC signaling; MAC CE signaling; DCI signaling.
- the third indication information includes an index of a reference signal; where there is a corresponding relationship between the index of the reference signal and the beam pointing.
- the third indication information includes a quasi-co-location relationship between the first beam pointing information of the first reference signal resource and the target reference signal of known beam pointing information.
- the first beam pointing information includes horizontal beam pointing information and vertical beam pointing information.
- the first beam pointing information further includes beamwidth information, where the beamwidth information includes at least one of a half-power beamwidth, a half-power angle, and a 3dB beamwidth.
- the network device may send fourth indication information to the terminal device, where the fourth indication information is used to indicate the second auxiliary information, where the second auxiliary information includes the second The second beam pointing information corresponding to the reference signal resource set.
- the fourth indication information is indicated by at least one or a combination of multiple signalings in the following signaling: RRC signaling; MAC CE signaling; DCI signaling.
- the second beam pointing information is determined according to the number of second reference signal resources.
- the second beam pointing information is obtained by querying the correspondence between the number of resources and the beam pointing according to the number of second reference signal resources.
- the fourth indication information includes a resource quantity; where there is a corresponding relationship between the resource quantity and the beam direction.
- the second beam pointing information includes a horizontal beam pointing information range and a vertical beam pointing information range.
- the second beam pointing information further includes beam width information, where the beam width information includes at least one of half power beam width, half power angle, and 3dB beam width.
- the first quality information and/or the second quality information includes at least SINR or RSRP.
- the network device may also receive indication information of the second quality information sent by the terminal device; where the indication information of the second quality information includes:
- the second quality information is an identifier of at least one target reference signal resource determined from each second reference signal resource; and/or, second quality information of at least one target reference signal resource.
- the network device sends the first indication information to the terminal device, where the first indication information is used to indicate to measure the reference signal carried by the first reference signal resource in the first reference signal resource set , to obtain the first quality information of the first reference signal resource; wherein, the first quality information of the first reference signal resource is used according to the first auxiliary information and/or of the first reference signal resource in the first reference signal resource set
- the second auxiliary information of the second reference signal resources in the second reference signal resource set determines the second quality information of the second reference signal resources in the second reference signal resource set.
- the terminal device can obtain the second quality information of each second reference signal resource without measuring the second reference signal resources in the second reference signal resource set, that is, the terminal device can obtain the second quality information based on the measurement.
- the second quality information of each second reference signal resource in the second reference signal resource set is recovered from the first quality information of each first reference signal resource in a reference signal resource set, which can reduce the complexity of terminal device measurement.
- the methods provided in the embodiments of the present disclosure are introduced from the perspectives of terminal devices and network devices.
- the terminal device and the network device may include a hardware structure and a software module, and implement the above functions in the form of a hardware structure, a software module, or a hardware structure plus a software module.
- a certain function among the above-mentioned functions may be implemented in the form of a hardware structure, a software module, or a hardware structure plus a software module.
- FIG. 11 is a schematic structural diagram of a measurement device 110 provided by an embodiment of the present disclosure.
- the measurement device 110 shown in FIG. 11 may include a processing unit 1101 and a transceiver unit 1102 .
- the transceiver unit 1102 may include a sending unit and/or a receiving unit, the sending unit is used to implement a sending function, the receiving unit is used to implement a receiving function, and the sending and receiving unit may implement a sending function and/or a receiving function.
- the measurement device 110 may be a terminal device, or a device in the terminal device, or a device that can be used in conjunction with the terminal device; or, the measurement device 110 may be a network device, or a device in the network device, or It is a device that can be used with network equipment.
- the processing unit 1101 is configured to measure the reference signal carried by the first reference signal resource in the first reference signal resource set to obtain the first quality information of the first reference signal resource, and, According to the first quality information of the first reference signal resource, and according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second auxiliary information of the second reference signal resource in the second reference signal resource set The information is to determine the second quality information of the second reference signal resource in the second reference signal resource set.
- the transceiving unit 1102 is configured to receive first indication information sent by the network device, where the first indication information is used to indicate the first reference signal resource in the first reference signal resource set.
- the reference signal carried by the first reference signal resource includes at least a channel state information reference signal CSI-RS.
- the transceiver unit 1102 is further configured to receive second indication information sent by the network device, where the second indication information is used to indicate second auxiliary information, where the second auxiliary information includes a second reference signal resource The number of second reference signal resources included in the set.
- the second indication information is at least carried in RRC signaling.
- the transceiver unit 1102 is further configured to receive third indication information sent by the network device, where the third indication information is used to indicate the first auxiliary information, where the first auxiliary information includes the first reference signal resource First beam pointing information of each first reference signal resource in the set.
- the third indication information is indicated by at least one or a combination of the following signalings: RRC signaling; MAC CE signaling; DCI signaling.
- the third indication information includes an index of the reference signal; wherein, the index of the reference signal has a corresponding relationship with the beam pointing.
- the third indication information includes a quasi-co-location relationship between the first beam pointing information of the first reference signal resource and the target reference signal of known beam pointing information.
- the first beam pointing information includes horizontal direction pointing information and vertical direction pointing information.
- the first beam pointing information further includes beamwidth information, where the beamwidth information includes at least one of half-power beamwidth, half-power angle, and 3dB beamwidth.
- the transceiver unit 1102 is further configured to receive fourth indication information sent by the network device, where the fourth indication information is used to indicate the second auxiliary information, where the second auxiliary information includes the second reference signal resource Collect corresponding second beam pointing information.
- the fourth indication information is indicated by at least one or a combination of the following signalings: RRC signaling; MAC CE signaling; DCI signaling.
- the fourth indication information includes the quantity of resources; wherein, there is a corresponding relationship between the quantity of resources and the direction of the beam.
- the second beam pointing information includes a horizontal beam pointing information range and a vertical beam pointing information range.
- the second beam pointing information further includes beam width information, wherein the beam width information includes at least one of half power beam width, half power angle, and 3dB beam width.
- the first quality information and/or the second quality information includes at least SINR or RSRP.
- the transceiver unit 1102 is further configured to send indication information of the second quality information to the network device; wherein the indication information of the second quality information includes: according to the second quality information of each second reference signal resource, from An identifier of at least one target reference signal resource determined in each second reference signal resource; and/or second quality information of at least one target reference signal resource.
- the transceiver unit 1102 is configured to send first indication information to the terminal device, wherein the first indication information is used to indicate the reference to the first reference signal resource bearer in the first reference signal resource set The signal is measured to obtain the first quality information of the first reference signal resource; wherein, the first quality information of the first reference signal resource is used according to the first auxiliary information of the first reference signal resource in the first reference signal resource set and/or the second auxiliary information of the second reference signal resources in the second reference signal resource set, to determine the second quality information of the second reference signal resources in the second reference signal resource set.
- the reference signal carried by the first reference signal resource includes at least a channel state information reference signal CSI-RS.
- the transceiving unit 1102 is further configured to send second indication information to the terminal device, where the second indication information is used to indicate second auxiliary information, where the second auxiliary information includes a second reference signal resource set The number of included second reference signal resources.
- the number of second reference signal resources is determined by a rule.
- the second indication information is at least carried in RRC signaling.
- the transceiver unit 1102 is further configured to send third indication information to the terminal device, where the third indication information is used to indicate the first auxiliary information, where the first auxiliary information includes the first reference signal resource set First beam pointing information of each first reference signal resource in .
- the third indication information is indicated by at least one or a combination of the following signalings: RRC signaling; MAC CE signaling; DCI signaling.
- the third indication information includes an index of the reference signal; wherein, the index of the reference signal has a corresponding relationship with the beam pointing.
- the third indication information includes a quasi-co-location relationship between the first beam pointing information of the first reference signal resource and the target reference signal of known beam pointing information.
- the first beam pointing information includes horizontal beam pointing information and vertical beam pointing information.
- the first beam pointing information further includes beamwidth information, where the beamwidth information includes at least one of half-power beamwidth, half-power angle, and 3dB beamwidth.
- the transceiving unit 1102 is further configured to send fourth indication information to the terminal device, where the fourth indication information is used to indicate the second auxiliary information, where the second auxiliary information includes the second reference signal resource set Corresponding second beam pointing information.
- the fourth indication information is indicated by at least one or a combination of the following signalings: RRC signaling; MAC CE signaling; DCI signaling.
- the second beam pointing information is determined according to the quantity of second reference signal resources.
- the second beam pointing information is obtained by querying the correspondence between the number of resources and the beam pointing according to the number of second reference signal resources.
- the fourth indication information includes the quantity of resources; wherein, there is a corresponding relationship between the quantity of resources and the direction of the beam.
- the second beam pointing information includes a horizontal beam pointing information range and a vertical beam pointing information range.
- the second beam pointing information further includes beam width information, wherein the beam width information includes at least one of half power beam width, half power angle, and 3dB beam width.
- the first quality information and/or the second quality information includes at least SINR or RSRP.
- the transceiver unit 1102 is further configured to receive indication information of the second quality information sent by the terminal device; wherein, the indication information of the second quality information includes: according to the second quality information of each second reference signal resource, An identifier of at least one target reference signal resource determined from each second reference signal resource; and/or second quality information of at least one target reference signal resource.
- FIG. 12 is a schematic structural diagram of another measurement device provided by an embodiment of the present disclosure.
- the measurement device 120 may be a terminal device or a network device, and may also be a chip, a chip system, or a processor that supports the terminal device or network device to implement the above method.
- the device can be used to implement the methods described in the above method embodiments, and for details, refer to the descriptions in the above method embodiments.
- Measurement device 120 may include one or more processors 1201 .
- the processor 1201 may be a general-purpose processor or a special-purpose processor. For example, it can be a baseband processor or a central processing unit.
- the baseband processor can be used to process communication protocols and communication data
- the central processor can be used to control measurement devices (such as base stations, baseband chips, terminal equipment, terminal equipment chips, DU or CU, etc.) and execute computer programs , to process data for computer programs.
- the measuring device 120 may further include one or more memories 1202, on which a computer program 1203 may be stored, and the processor 1201 executes the computer program 1203, so that the measuring device 120 executes the methods described in the above method embodiments.
- the computer program 1203 may be solidified in the processor 1201, and in this case, the processor 1201 may be implemented by hardware.
- data may also be stored in the memory 1202 .
- the measuring device 120 and the memory 1202 can be set separately or integrated together.
- the measurement device 120 may further include a transceiver 1205 and an antenna 1206 .
- the transceiver 1205 may be called a transceiver unit, a transceiver, or a transceiver circuit, etc., and is used to implement a transceiver function.
- the transceiver 1205 may include a receiver and a transmitter, and the receiver may be called a receiver or a receiving circuit for realizing a receiving function; the transmitter may be called a transmitter or a sending circuit for realizing a sending function.
- the measurement device 120 may further include one or more interface circuits 1207 .
- the interface circuit 1207 is used to receive code instructions and transmit them to the processor 1201 .
- the processor 1201 runs code instructions to enable the measurement device 120 to execute the methods described in the above method embodiments.
- the measuring device 120 is a terminal device: a processor 1201 configured to execute any method embodiment in FIG. 2 to FIG. 7 described above in the present disclosure.
- the measurement device 120 is a network device: a processor 1201 configured to execute the method embodiment shown in FIG. 10 above in the present disclosure.
- the processor 1201 may include a transceiver for implementing receiving and sending functions.
- the transceiver may be a transceiver circuit, or an interface, or an interface circuit.
- the transceiver circuits, interfaces or interface circuits for realizing the functions of receiving and sending can be separated or integrated together.
- the above-mentioned transceiver circuit, interface or interface circuit may be used for reading and writing code/data, or the above-mentioned transceiver circuit, interface or interface circuit may be used for signal transmission or transfer.
- the measurement device 120 may include a circuit, and the circuit may implement the function of sending or receiving or communicating in the foregoing method embodiments.
- the processors and transceivers described in this disclosure can be implemented on integrated circuits (integrated circuits, ICs), analog ICs, radio frequency integrated circuits (RFICs), mixed signal ICs, application specific integrated circuits (ASICs), printed circuit boards ( printed circuit board, PCB), electronic equipment, etc.
- the processor and transceiver can also be fabricated using various IC process technologies such as complementary metal oxide semiconductor (CMOS), nMetal-oxide-semiconductor (NMOS), P-type Metal oxide semiconductor (positive channel metal oxide semiconductor, PMOS), bipolar junction transistor (bipolar junction transistor, BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.
- CMOS complementary metal oxide semiconductor
- NMOS nMetal-oxide-semiconductor
- PMOS P-type Metal oxide semiconductor
- BJT bipolar junction transistor
- BiCMOS bipolar CMOS
- SiGe silicon germanium
- GaAs gallium arsenide
- the measurement device described in the above embodiments may be a terminal device or a network device, but the scope of the measurement device described in the present disclosure is not limited thereto, and the structure of the measurement device may not be limited by FIG. 12 .
- the measuring device may be a stand-alone device or may be part of a larger device. Examples of measuring devices could be:
- a set of one or more ICs may also include storage components for storing data and computer programs;
- ASIC such as modem (Modem);
- the measuring device can be a chip or a system on a chip
- the chip shown in FIG. 13 includes a processor 1301 and an interface 1302 .
- the number of processors 1301 may be one or more, and the number of interfaces 1302 may be more than one.
- Interface 1302 used to transmit code instructions to the processor
- the processor 1301 is configured to run code instructions to execute the method shown in any one of the embodiments in FIG. 2 to FIG. 7 .
- Interface 1302 used to transmit code instructions to the processor
- the processor 1301 is configured to run code instructions to execute the method shown in the embodiment of FIG. 10 .
- the chip further includes a memory 1303 for storing necessary computer programs and data.
- An embodiment of the present disclosure also provides a communication system, the system includes the measuring device as the terminal device or the network device in the aforementioned embodiment of FIG. 12 , or the system includes the measuring device as the terminal device or the network device in the aforementioned embodiment of FIG. 13 .
- the present disclosure also provides a readable storage medium on which instructions are stored, and when the instructions are executed by a computer, the functions of any one of the above method embodiments are realized.
- the present disclosure also provides a computer program product, which implements the functions of any one of the above method embodiments when executed by a computer.
- all or part of them may be implemented by software, hardware, firmware or any combination thereof.
- software When implemented using software, it may be implemented in whole or in part in the form of a computer program product.
- the computer program product comprises one or more computer programs. When the computer program is loaded and executed on the computer, all or part of the processes or functions according to the embodiments of the present disclosure will be generated.
- the computer can be a general purpose computer, a special purpose computer, a computer network, or other programmable devices.
- the computer program can be stored in or transmitted from one computer-readable storage medium to another computer-readable storage medium, for example, the computer program can be downloaded from a website, computer, server or data center Transmission to another website site, computer, server or data center by wired (such as coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.).
- the computer-readable storage medium may be any available medium that can be accessed by a computer, or a data storage device such as a server or a data center integrated with one or more available media.
- the available medium may be a magnetic medium (for example, a floppy disk, a hard disk, a magnetic tape), an optical medium (for example, a high-density digital video disc (digital video disc, DVD)), or a semiconductor medium (for example, a solid state disk (solid state disk, SSD)) etc.
- a magnetic medium for example, a floppy disk, a hard disk, a magnetic tape
- an optical medium for example, a high-density digital video disc (digital video disc, DVD)
- a semiconductor medium for example, a solid state disk (solid state disk, SSD)
- At least one in the present disclosure can also be described as one or more, and a plurality can be two, three, four or more, and the present disclosure is not limited.
- the technical feature is distinguished by "first”, “second”, “third”, “A”, “B”, “C” and “D”, etc.
- the technical features described in the “first”, “second”, “third”, “A”, “B”, “C” and “D” have no sequence or order of magnitude among the technical features described.
- the word “if” may be construed as “at” or “when” or “in response to a determination.”
- each table in the present disclosure may be configured or predefined.
- the values of the information in each table are just examples, and may be configured as other values, which are not limited in the present disclosure.
- the corresponding relationship shown in some rows may not be configured.
- appropriate deformation adjustments can be made based on the above table, for example, splitting, merging, and so on.
- the names of the parameters shown in the titles of the above tables may also adopt other names understandable by the communication device, and the values or representations of the parameters may also be other values or representations understandable by the communication device.
- other data structures can also be used, for example, arrays, queues, containers, stacks, linear tables, pointers, linked lists, trees, graphs, structures, classes, heaps, hash tables or hash tables can be used wait.
- Predefinition in the present disclosure can be understood as definition, predefinition, storage, prestorage, prenegotiation, preconfiguration, curing, or prefiring.
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Abstract
Description
Claims (39)
- 一种测量方法,其特征在于,所述方法由终端设备执行,包括:对第一参考信号资源集合中的第一参考信号资源承载的参考信号进行测量,得到所述第一参考信号资源的第一质量信息;根据所述第一参考信号资源的第一质量信息,以及根据所述第一参考信号资源集合中所述第一参考信号资源的第一辅助信息和/或第二参考信号资源集合中第二参考信号资源的第二辅助信息,确定所述第二参考信号资源集合中所述第二参考信号资源的第二质量信息。
- 根据权利要求1所述的方法,其特征在于,所述方法还包括:接收网络设备发送的第一指示信息,其中,所述第一指示信息,用于指示所述第一参考信号资源集合中的所述第一参考信号资源。
- 根据权利要求1或2所述的方法,其特征在于,所述第一参考信号资源所承载的参考信号至少包括信道状态信息参考信号CSI-RS。
- 根据权利要求1-3中任一项所述的方法,其特征在于,所述方法还包括:接收网络设备发送的第二指示信息,其中,所述第二指示信息,用于指示所述第二辅助信息,其中,所述第二辅助信息包括所述第二参考信号资源集合包含的所述第二参考信号资源的数量。
- 根据权利要求4所述的方法,其特征在于,所述第二指示信息至少携带于无线资源控制RRC信令。
- 根据权利要求1-3中任一项所述的方法,其特征在于,所述方法还包括:接收网络设备发送的第三指示信息,其中,所述第三指示信息,用于指示所述第一辅助信息,其中,所述第一辅助信息包括所述第一参考信号资源集合中各所述第一参考信号资源的第一波束指向信息。
- 根据权利要求6所述的方法,其特征在于,所述第三指示信息由以下信令中的至少一项或者多项的组合进行指示:无线资源控制RRC信令;媒体接入控制控制单元MAC CE信令;下行控制信息DCI信令。
- 根据权利要求6所述的方法,其特征在于,所述第三指示信息包括参考信号的索引;其中,所述参考信号的索引与波束指向存在对应关系。
- 根据权利要求6所述的方法,其特征在于,所述第三指示信息包括所述第一参考信号资源的第一波束指向信息与已知波束指向信息的目标参考信号之间的准共址关系。
- 根据权利要求6-9中任一项所述的方法,其特征在于,所述第一波束指向信息包括水平方向指向信息和垂直方向指向信息。
- 根据权利要求6-10中任一项所述的方法,其特征在于,所述第一波束指向信息还包括波束宽度信息,其中,所述波束宽度信息包括半功率波束宽度、半功率角和3dB波束宽度中的至少一项。
- 根据权利要求1-3中任一项所述的方法,其特征在于,所述方法还包括:接收网络设备发送的第四指示信息,其中,所述第四指示信息,用于指示所述第二辅助信息,其中,所述第二辅助信息包括所述第二参考信号资源集合对应的第二波束指向信息。
- 根据权利要求12所述的方法,其特征在于,所述第四指示信息由以下信令中的至少一项或者多项的组合进行指示:无线资源控制RRC信令;媒体接入控制控制单元MAC CE信令;下行控制信息DCI信令。
- 根据权利要求12所述的方法,其特征在于,所述第四指示信息包括资源数量;其中,所述资源数量与波束指向之间存在对应关系。
- 根据权利要求12-14中任一项所述的方法,其特征在于,所述第二波束指向信息包括水平方向的波束指向信息范围和垂直方向的波束指向信息范围。
- 根据权利要求1-15中任一项所述的方法,其特征在于,所述方法还包括:向网络设备发送所述第二质量信息的指示信息;其中,所述第二质量信息的指示信息包括:根据各所述第二参考信号资源的第二质量信息,从各所述第二参考信号资源中确定的至少一个目标参考信号资源的标识;和/或,所述至少一个目标参考信号资源的第二质量信息。
- 一种测量方法,其特征在于,所述方法由网络设备执行,包括:向终端设备发送第一指示信息,其中,所述第一指示信息,用于指示对第一参考信号资源集合中所述第一参考信号资源承载的参考信号进行测量,以得到所述第一参考信号资源的第一质量信息;其中,所述第一参考信号资源的第一质量信息,用于根据所述第一参考信号资源集合中所述第一参考信号资源的第一辅助信息和/或第二参考信号资源集合中第二参考信号资源的第二辅助信息,确定第二参考信号资源集合中所述第二参考信号资源的第二质量信息。
- 根据权利要求17所述的方法,其特征在于,所述第一参考信号资源所承载的参考信号至少包括信道状态信息参考信号CSI-RS。
- 根据权利要求17或18所述的方法,其特征在于,所述方法还包括:向所述终端设备发送第二指示信息,其中,所述第二指示信息,用于指示所述第二辅助信息,其中,所述第二辅助信息包括所述第二参考信号资源集合包含的所述第二参考信号资源的数量。
- 根据权利要求19所述的方法,其特征在于,所述第二参考信号资源的数量由规则确定。
- 根据权利要求19所述的方法,其特征在于,所述第二指示信息至少携带于无线资源控制RRC信令。
- 根据权利要求17或18所述的方法,其特征在于,所述方法还包括:向所述终端设备发送第三指示信息,其中,所述第三指示信息,用于指示所述第一辅助信息,其中,所述第一辅助信息包括所述第一参考信号资源集合中各所述第一参考信号资源的第一波束指向信息。
- 根据权利要求22所述的方法,其特征在于,所述第三指示信息由以下信令中的至少一项或者多项的组合进行指示:无线资源控制RRC信令;媒体接入控制控制单元MAC CE信令;下行控制信息DCI信令。
- 根据权利要求22所述的方法,其特征在于,所述第三指示信息包括参考信号的索引;其中,所述参考信号的索引与波束指向存在对应关系。
- 根据权利要求22所述的方法,其特征在于,所述第三指示信息包括所述第一参考信号资源的第一波束指向信息与已知波束指向信息的目标参考信号之间的准共址关系。
- 根据权利要求22-25中任一项所述的方法,其特征在于,所述第一波束指向信息包括水平波束指向信息和垂直波束指向信息。
- 根据权利要求22-26中任一项所述的方法,其特征在于,所述第一波束指向信息还包括波束宽度信息,其中,所述波束宽度信息包括半功率波束宽度、半功率角和3dB波束宽度中的至少一项。
- 根据权利要求17或18所述的方法,其特征在于,所述方法还包括:向所述终端设备发送第四指示信息,其中,所述第四指示信息,用于指示所述第二辅助信息,其中,所述第二辅助信息包括所述第二参考信号资源集合对应的第二波束指向信息。
- 根据权利要求28所述的方法,其特征在于,所述第四指示信息由以下信令中的至少一项或者多项的组合进行指示:无线资源控制RRC信令;媒体接入控制控制单元MAC CE信令;下行控制信息DCI信令。
- 根据权利要求28所述的方法,其特征在于,所述第二波束指向信息是根据所述第二参考信号资源的数量确定的。
- 根据权利要求28所述的方法,其特征在于,所述第二波束指向信息,是根据所述第二参考信 号资源的数量,查询资源数量与波束指向之间的对应关系得到的。
- 根据权利要求28所述的方法,其特征在于,所述第四指示信息包括资源数量;其中,所述资源数量与波束指向之间存在对应关系。
- 根据权利要求28-32中任一项所述的方法,其特征在于,所述第二波束指向信息包括水平方向的波束指向信息范围和垂直方向的波束指向信息范围。
- 根据权利要求17-33中任一项所述的方法,其特征在于,所述方法还包括:接收所述终端设备发送的所述第二质量信息的指示信息;其中,所述第二质量信息的指示信息包括:根据各所述第二参考信号资源的第二质量信息,从各所述第二参考信号资源中确定的至少一个目标参考信号资源的标识;和/或,所述至少一个目标参考信号资源的第二质量信息。
- 一种测量装置,其特征在于,应用于终端设备,包括:处理单元,用于对第一参考信号资源集合中的第一参考信号资源承载的参考信号进行测量,得到所述第一参考信号资源的第一质量信息,以及,根据所述第一参考信号资源的第一质量信息,及根据所述第一参考信号资源集合中所述第一参考信号资源的第一辅助信息和/或第二参考信号资源集合中第二参考信号资源的第二辅助信息,确定所述第二参考信号资源集合中所述第二参考信号资源的第二质量信息。
- 一种测量装置,其特征在于,应用于网络设备,包括:收发单元,用于向终端设备发送第一指示信息,其中,所述第一指示信息,用于指示对第一参考信号资源集合中所述第一参考信号资源承载的参考信号进行测量,以得到所述第一参考信号资源的第一质量信息;其中,所述第一参考信号资源的第一质量信息,用于根据所述第一参考信号资源集合中所述第一参考信号资源的第一辅助信息和/或第二参考信号资源集合中第二参考信号资源的第二辅助信息,确定第二参考信号资源集合中所述第二参考信号资源的第二质量信息。
- 一种测量装置,其特征在于,所述装置包括处理器和存储器,所述存储器中存储有计算机程序,当所述计算机程序被所述处理器执行时,执行如权利要求1至16中任一项所述的方法,或者,执行如权利要求17至34中任一项所述的方法。
- 一种测量装置,其特征在于,包括:处理器和接口电路;所述接口电路,用于接收代码指令并传输至所述处理器;所述处理器,用于运行所述代码指令以执行如权利要求1至16中任一项所述的方法,或者,执行如权利要求17至34中任一项所述的方法。
- 一种计算机可读存储介质,用于存储有指令,当所述指令被执行时,使如权利要求1至16中任一项所述的方法,或者,执行如权利要求17至34中任一项所述的方法。
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| WO2025060882A1 (zh) * | 2023-09-18 | 2025-03-27 | 中国移动通信有限公司研究院 | 配置方法、网络侧设备、终端、存储介质及计算机程序产品 |
| WO2026011335A1 (en) * | 2024-07-10 | 2026-01-15 | Qualcomm Incorporated | Prediction for channel state information reporting |
| WO2026065075A1 (zh) * | 2024-09-26 | 2026-04-02 | 北京小米移动软件有限公司 | 报告上报方法及装置 |
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| CN108400852B (zh) * | 2017-02-06 | 2020-10-30 | 电信科学技术研究院 | 一种大尺度信道参数的指示、确定方法、基站及终端 |
| US20190297603A1 (en) * | 2018-03-23 | 2019-09-26 | Samsung Electronics Co., Ltd. | Method and apparatus for beam management for multi-stream transmission |
| US11677454B2 (en) * | 2020-04-24 | 2023-06-13 | Qualcomm Incorporated | Reporting beam measurements for proposed beams and other beams for beam selection |
| KR20240036036A (ko) * | 2021-07-14 | 2024-03-19 | 엘지전자 주식회사 | 무선 통신 시스템에서 빔 정보를 송수신하는 방법 및 이를 위한 장치 |
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| CN111431687A (zh) * | 2019-01-10 | 2020-07-17 | 华为技术有限公司 | 一种资源指示方法及装置 |
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| WO2021072657A1 (zh) * | 2019-10-15 | 2021-04-22 | 华为技术有限公司 | 一种传输信道状态信息的方法及装置 |
| CN112119597A (zh) * | 2020-08-21 | 2020-12-22 | 北京小米移动软件有限公司 | 波束失败确定方法、装置、设备及存储介质 |
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| WO2026011335A1 (en) * | 2024-07-10 | 2026-01-15 | Qualcomm Incorporated | Prediction for channel state information reporting |
| WO2026065075A1 (zh) * | 2024-09-26 | 2026-04-02 | 北京小米移动软件有限公司 | 报告上报方法及装置 |
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| CN116998174A (zh) | 2023-11-03 |
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