WO2021068930A1 - Procédé, dispositif et système de configuration de rapport de mesures - Google Patents

Procédé, dispositif et système de configuration de rapport de mesures Download PDF

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Publication number
WO2021068930A1
WO2021068930A1 PCT/CN2020/120156 CN2020120156W WO2021068930A1 WO 2021068930 A1 WO2021068930 A1 WO 2021068930A1 CN 2020120156 W CN2020120156 W CN 2020120156W WO 2021068930 A1 WO2021068930 A1 WO 2021068930A1
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Prior art keywords
measurement
configuration
report
value
height
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PCT/CN2020/120156
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English (en)
Chinese (zh)
Inventor
梁敬
陈力
鲍炜
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维沃移动通信有限公司
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Publication of WO2021068930A1 publication Critical patent/WO2021068930A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition

Definitions

  • the embodiments of the present application relate to the field of communication technologies, and in particular, to a measurement report configuration method, device, and system.
  • the network device can send a measurement configuration to the UE in a non-connected state (i.e., idle or inactive state) to instruct the UE to perform measurement according to the measurement configuration. ; And, when the UE is in the connected state, the UE can report the measurement result obtained by the measurement to the network device.
  • a non-connected state i.e., idle or inactive state
  • the UE after the UE performs the measurement, it directly sends the measurement result obtained by the measurement to the network device.
  • the UE's measurement result may not meet the reporting requirements of the network device.
  • the UE has poor flexibility in measuring and reporting.
  • the embodiments of the present application provide a measurement report configuration method, device, and system, which can solve the problem of UE's poor flexibility in measurement report.
  • the first aspect of the embodiments of the present application provides a measurement report configuration method, which is applied to a UE.
  • the measurement report configuration method includes: receiving a measurement configuration sent by a network device; wherein the measurement configuration is used to instruct the UE to report a measurement report Condition, the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, first measurement height configuration, first measurement location configuration, and first measurement speed configuration; according to the measurement configuration, it is determined whether to report the measurement report.
  • the second aspect of the embodiments of the present application provides a measurement report configuration method, which is applied to a network device.
  • the measurement report configuration method includes: sending a measurement configuration to a UE; wherein the measurement configuration is used to indicate the reporting condition of the UE's measurement report ,
  • the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, first measurement height configuration, first measurement position configuration, and first measurement speed configuration.
  • a third aspect of the embodiments of the present application provides a UE.
  • the UE may include: a receiving module and a determining module.
  • the receiving module is used to receive the measurement configuration sent by the network device; wherein, the measurement configuration is used to indicate the reporting condition of the measurement report of the UE, and the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, The first measurement height configuration, the first measurement position configuration, and the first measurement speed configuration.
  • the determining module is used to determine whether to report a measurement report according to the measurement configuration received by the receiving module.
  • a network device may include: a sending module.
  • the sending module is used to send the measurement configuration to the UE; wherein the measurement configuration is used to indicate the reporting conditions of the measurement report of the UE, and the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, first Measurement height configuration, first measurement position configuration, and first measurement speed configuration.
  • a UE in a fifth aspect of the embodiments of the present application, includes a processor, a memory, and a computer program stored in the memory and capable of running on the processor.
  • the computer program implements the above-mentioned first aspect when executed by the processor. Steps of the measurement report configuration method in.
  • a network device in a sixth aspect of the embodiments of the present application, includes a processor, a memory, and a computer program that is stored in the memory and can run on the processor.
  • the computer program When the computer program is executed by the processor, the above-mentioned first The steps of the measurement report configuration method in the second aspect.
  • a seventh aspect of the embodiments of the present application provides a communication system including the UE described in the third aspect and the network device described in the fourth aspect; or, the communication system includes the communication system described in the fifth aspect.
  • An eighth aspect of the embodiments of the present application provides a computer-readable storage medium storing a computer program on the computer-readable storage medium, and when the computer program is executed by a processor, the measurement report configuration method as described in the first aspect is implemented. Steps, or the steps of the measurement report configuration method as described in the second aspect.
  • the UE may determine whether to report the measurement report according to the measurement configuration configured by the network device (the measurement configuration is used to indicate the reporting condition of the UE's measurement report). Since the UE can determine whether the report conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration configured by the network device, so as to determine whether to perform the measurement report.
  • the measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • FIG. 1 is a schematic diagram of the architecture of a communication system provided by an embodiment of this application.
  • FIG. 2 is one of the schematic diagrams of a measurement report configuration method provided by an embodiment of the application
  • FIG. 3 is a second schematic diagram of a measurement report configuration method provided by an embodiment of this application.
  • FIG. 5 is a schematic structural diagram of a UE provided by an embodiment of this application.
  • FIG. 6 is a schematic structural diagram of a network device provided by an embodiment of this application.
  • FIG. 7 is a schematic diagram of hardware of a UE provided by an embodiment of the application.
  • FIG. 8 is a schematic diagram of hardware of a network device provided by an embodiment of the application.
  • first and second in the description and claims of the embodiments of the present application are used to distinguish different objects, rather than to describe a specific order of objects.
  • first measurement height configuration and the second measurement height configuration are used to distinguish different measurement height configurations, rather than describing a specific sequence of the measurement height configurations.
  • plural means two or more.
  • a plurality of elements refers to two elements or more than two elements.
  • words such as “exemplary” or “for example” are used as examples, illustrations, or illustrations. Any embodiment or design solution described as “exemplary” or “for example” in the embodiments of the present application should not be construed as being more preferable or advantageous than other embodiments or design solutions. To be precise, words such as “exemplary” or “for example” are used to present related concepts in a specific manner.
  • LTE long-term evolution
  • NR new radio
  • the UE when determining whether to measure intra-frequency neighboring cells for cell selection and reselection, when If the serving cell satisfies Srxlev>SIntraSearchP and Squal>SIntraSearchQ, the UE chooses not to perform the measurement of the neighboring cells of the same frequency, otherwise, if it is lower than the threshold, it needs to perform the measurement of the neighboring cells of the same frequency.
  • RAT radio access technology
  • the UE chooses not to perform neighboring cell measurement; otherwise, if it is lower than the threshold, it needs to perform neighboring measurement. Measurement of the cell.
  • the UE can be based on the SpCell measurement result (RSRP or RSRQ) and the configured S-measure related threshold (s-MeasureConfig). If the measurement result is lower than the configured threshold, the UE can use the measurement configuration and measurement report configuration. Carry out the calculation of the measurement results and the evaluation of the report. Therefore, when the measurement result is higher than the threshold, there is no need to perform corresponding measurement and measurement report evaluation.
  • RSRP SpCell measurement result
  • RSRQ the configured S-measure related threshold
  • Measurement report If the report conditions are met, the UE will fill in the measurement results and include the measurement results in the measurement report and send it to the network device.
  • related events are: measurement events in the same system are identified by AX (A1: serving cell is better than the absolute threshold, used to stop the ongoing inter-frequency/IRAT measurement, and deactivate the measurement gap under RRC control; A2: service The cell is worse than the absolute threshold, indicating the poor coverage of the current frequency.
  • Inter-frequency/IRAT measurement can be started, and the measurement gap is activated under the control of RRC;
  • A3 neighbor cell ratio (serving cell + offset) is better, used for handover;
  • A4 The neighboring cell is better than the absolute threshold and can be used for load balancing, similar to moving to high-priority cell reselection;
  • A5 the serving cell is worse than the absolute threshold 1, and the neighboring cell is better than the absolute threshold 2, which can be used for load balancing, and mobile Reselection to low-priority cells is similar); different system measurement events are identified by BX (B1: inter RAT neighboring cell is better than absolute threshold, used to measure high-priority RAT cells;
  • B2 serving cell is worse than absolute threshold 1 ,
  • the inter RAT neighboring cell is better than the absolute threshold 2, which is used for the measurement of the same or low priority RAT cell).
  • the measurement report is divided into event-triggered one-time report, periodic report, event-triggered periodic report, etc.
  • the measurement report needs
  • the embodiments of the present application provide a measurement report configuration method, device, and system.
  • the UE can determine whether to report the measurement report according to the measurement configuration configured by the network device (the measurement configuration is used to indicate the reporting condition of the UE's measurement report). Since the UE can determine whether the report conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration configured by the network device, so as to determine whether to perform the measurement report.
  • the measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • the measurement report configuration method, device, and system provided in the embodiments of the present application can be applied to a communication system. Specifically, it can be applied to the process in which the UE determines whether to perform measurement report according to the measurement configuration of the network device based on the communication system.
  • FIG. 1 shows a schematic diagram of the architecture of a communication system provided by an embodiment of the present application.
  • the communication system may include UE 01 and network equipment 02. Among them, a connection and communication can be established between the UE 01 and the network device 02.
  • a UE is a device that provides voice and/or data connectivity to users, a handheld device with wired/wireless connection functions, or other processing devices connected to a wireless modem.
  • the UE may communicate with one or more core network devices through a radio access network (RAN).
  • RAN radio access network
  • the UE can be a mobile terminal, such as a mobile phone (or called a "cellular" phone) and a computer with a mobile terminal.
  • PCS personal communication service
  • SIP Session Initiation Protocol
  • WLL wireless local loop
  • PDA personal digital assistants
  • the UE may also be called a user agent or terminal device.
  • the network device may be a base station.
  • a base station is a device deployed in the RAN to provide wireless communication functions for the UE.
  • the base station may include various forms of macro base stations, micro base stations, relay stations, access points, and so on.
  • the names of devices with base station functions may be different.
  • 3G third-generation mobile communication
  • eNB Called evolved NodeB
  • gNB fifth generation mobile communication
  • the name "base station” may change.
  • the measurement report configuration method may include the following steps 201 to 203.
  • Step 201 The network device sends the measurement configuration to the UE.
  • Step 202 The UE receives the measurement configuration sent by the network device.
  • the foregoing measurement configuration is used to indicate the reporting conditions of the UE's measurement report
  • the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, first measurement height configuration, first measurement location configuration, and The first measurement speed configuration.
  • the network device may send the measurement configuration to the UE through dedicated signaling (for example, radio resource control (Radio Resource Control, RRC) reconfiguration).
  • dedicated signaling for example, radio resource control (Radio Resource Control, RRC) reconfiguration.
  • the measurement event configuration includes at least one of the following configurations for the corresponding measurement event: measurement quantity configuration, second measurement height configuration, and The second measurement position configuration and the second measurement speed configuration.
  • the above measurement event configuration can be understood as an event identifier (corresponding to an event number, which can indicate an event, and the event number can be letters and/or numbers (such as H3, L1, etc.)) And the event configuration corresponding to the event identifier.
  • the above-mentioned measurement quantity configuration includes a first measurement quantity change value and a first measurement quantity threshold value
  • the second measurement height configuration includes a first height threshold value and/or a first height offset
  • the second measurement position configuration includes the first position value and/or the first position offset value.
  • the first height offset value is the change threshold of the height of the UE in the first preset time period;
  • the first position value is used to indicate at least one of the following: the first geographic location range, the first area identifier , The first cell identifier, the first access network notification area (RAN-based notification area, RNA) information, and the first tracking area (tracking area, TA) identifier;
  • the above-mentioned first location offset value is used by the UE to determine the second location Whether the location of the UE changes within the preset time period and/or the change value of the location of the UE.
  • the above-mentioned first cell identifier may be used to indicate the coverage area corresponding to the first cell; the above-mentioned first RNA information may be used to indicate the coverage area corresponding to the first RNA; the above-mentioned first TA identifier may be used to indicate the first The coverage area corresponding to TA.
  • the above-mentioned first position offset value may be understood as the threshold value of the movement distance of the UE configured for the UE, or the change condition of the position of the UE configured for the UE (for example, the change of the cell identity) The number of times or the amount of change in the cell identity (for example, handover from one cell to another)).
  • the UE can determine whether to report the measurement report according to the magnitude relationship between the first movement distance of the UE in the second preset time period and the first position offset value; or, the UE can determine whether to report the measurement report according to the UE staying in a certain time period.
  • the relationship between the number of changes or the amount of change of the cell identity of the cell and the first position offset value determines whether to report a measurement report.
  • the UE determines to report the measurement report.
  • the number of times the cell identity of the cell camped on within the time period changes is less than (or equal to) the first position offset value, the UE determines not to report the measurement report; or, if the cell identity of the cell where the UE resides within a certain period of time If the number of changes is less than (or equal to) the first location offset value, the UE determines to report a measurement report. If the number of changes in the cell identity of the cell where the UE resides within a certain period of time is greater than (or equal to) the first location offset value, Then the UE determines not to report the measurement report.
  • the UE determines to report a measurement report, and if the UE is in a certain period of time, If the change of the cell identity of the cell where the UE is camping is different from the first position offset value, the UE determines not to report a measurement report; or, if the change of the cell identity of the cell where the UE is camping within a certain period of time is different from the first position If the offset value is different, the UE determines to report the measurement report. If the change amount of the cell identity of the cell where the UE resides within a certain period of time is the same as the first location offset value, the UE determines not to report the measurement report.
  • the first position offset value is the number of times the cell identity changes (for example, 3 times)
  • the cell identities of the cells where the UE resides within a certain period of time are cell a, cell b, cell c, and cell d
  • the number of changes of the cell identity of the cell where the UE resides within a certain period of time is 4 times, and the UE determines to report the measurement report.
  • the first position offset value is the change amount of the cell identity (for example, from cell a to cell b)
  • the change amount of the cell identity of the cell where the UE resides within a certain period of time is secondary cell a
  • the UE determines to report a measurement report.
  • the above-mentioned first measured value change value may be a positive value, zero or a negative value.
  • the RNA information may include at least one of the following: an RNA identifier and a cell list corresponding to the RNA.
  • the aforementioned measurement quantity configuration may further include at least one of the following: one or more measurement quantity offset values, hysteresis values, and reporting trigger time.
  • the above measurement configuration includes measurement report configuration (reporting configurations), and the measurement report configuration includes at least one of the following: measurement event configuration, first measurement height configuration, first measurement position configuration, and first measurement speed configuration.
  • the foregoing measurement report configuration further includes at least one of the following: reference signal type, reporting interval, and reporting frequency.
  • the foregoing measurement configuration further includes at least one of the following: measurement objects, measurement identities, quantity configurations, measurement gaps, and so on.
  • the above-mentioned first measurement height configuration includes a second height threshold value and/or a third height offset value
  • the first measurement position configuration includes a second position value and/or a second position offset value. Shift value.
  • the third height offset value is the change threshold of the height of the UE in the third preset time period;
  • the second position value is used to indicate at least one of the following: the second geographic location range, the third area identifier , The third cell identifier, the third RNA information, and the third TA identifier;
  • the above-mentioned second location offset value is used by the UE to determine whether the location of the UE has changed within the fourth preset time period and/or the change value of the location of the UE .
  • the above-mentioned third cell identifier may be used to indicate the coverage area corresponding to the third cell; the above-mentioned third RNA information may be used to indicate the coverage area corresponding to the third RNA; the above-mentioned third TA identifier may be used to indicate the third The coverage area corresponding to TA.
  • the first measurement value change value may include one or more measurement value change values
  • the first measurement value threshold value may include one or more measurement value threshold values
  • the first height threshold value is It may include one or more height thresholds
  • the first height offset value may include one or more height offset values
  • the first position value may include one or more position values
  • the first position offset value may be It may include one or more position offset values
  • the above-mentioned second height threshold value may include one or more height threshold values
  • the above-mentioned third height offset value may include one or more height offset values
  • the above-mentioned second height threshold value may include one or more height offset values.
  • the position value may include one or more position values
  • the aforementioned second position offset value may include one or more position offset values.
  • the aforementioned measurement report may include at least one of the following: actual measurement amount of the UE, height information of the UE, location information of the UE, and speed information of the UE.
  • the measurement report may also include at least one of the following: measurement identities, measurement results of the current cell (including beam measurement results and/or cell measurement results), and neighboring cells (including measurement identities). Measurement results (including beam measurement results and/or cell measurement results) of neighboring cells on the same frequency, measurements on other frequency points, and/or measurements on other RATs.
  • the above-mentioned height information of the UE may include the height value of the UE and/or the height offset value of the UE
  • the position information of the UE may include the position value of the UE and/or the position offset value of the UE.
  • the speed information of the UE may include the horizontal speed value of the UE, the vertical speed value of the UE, or the speed value of the UE in any direction.
  • the height involved in the embodiments of this application can refer to absolute heights or relative heights.
  • the reference of relative heights can be configured by network equipment or agreed upon by agreement, and height can also refer to a range of heights;
  • the height offset value of may refer to the amount of change in the height value of the UE;
  • the location value involved in the embodiments of this application may refer to the geographic location of the UE, where the geographic location may refer to the absolute latitude and longitude location or range of the UE, and the location value may also be Refers to the zone ID (zone ID) of the area where the UE is located, or refers to the cell identity of the cell where the UE is located, or refers to the RNA identification of the RNA where the UE is located or the corresponding cell list, or refers to the TA identity of the TA where the UE is located;
  • the position offset value can refer to the horizontal movement distance, the vertical movement distance or the direct movement distance, where the direct movement distance refers to the movement distance in any direction, and the position offset
  • the UE has left one TA and/or entered another TA. It can also refer to the UE’s area identifier or calculated based on latitude and longitude. The position of has changed; the speed involved in the embodiment of this application can refer to the horizontal speed, the vertical speed or the speed in any direction.
  • Step 203 The UE determines whether to report a measurement report according to the measurement configuration.
  • the UE may determine whether to report the measurement report according to whether the actual measurement quantity of the UE meets the measurement quantity configuration; and/or the UE may determine whether to report the measurement report according to the UE Determine whether to report a measurement report according to whether the height information of the UE meets the second measurement height configuration; and/or, the UE may determine whether to report the measurement report according to whether the UE’s location information meets the second measurement position configuration; and/or, the UE may determine whether to report the measurement report according to the UE’s location information. Whether the speed information meets the second measurement speed configuration, determine whether to report the measurement report.
  • the actual measurement quantity of the above UE may be understood as a measurement result obtained by the UE based on the measurement configuration (for example, measurement quantity configuration) of the network device.
  • the above measurement quantity configuration may be used to indicate at least one of the following measurement quantities: reference signal receiving power (RSRP), reference signal receiving quality (RSRQ) And signal to interference plus noise ratio (SINR), etc.
  • RSRP reference signal receiving power
  • RSS reference signal receiving quality
  • SINR signal to interference plus noise ratio
  • the actual measurement quantity of the UE may be the measurement result (ie RSRP value) obtained after the UE measures the received power of the reference signal, and/or the measurement result obtained after the UE measures the received quality of the reference signal (ie RSRQ value), And/or, the measurement result (that is, the SINR value) obtained after the UE measures the strength of the received signal and the strength of the interference signal.
  • the measurement result ie RSRP value
  • the measurement result obtained after the UE measures the received quality of the reference signal ie RSRQ value
  • the measurement result that is, the SINR value
  • the measurement volume of the UE may be the measurement volume of the cell or the measurement volume of the beam, and the cell may include the current cell and/or neighboring cells.
  • the above measurement report includes a measurement result
  • the measurement result includes a beam measurement result and/or a cell measurement result.
  • the beam measurement results include: synchronization signal block (synchronization signal block, SSB), channel state information reference signal (channel state information-reference signal, CSI-RS), demodulation reference signal (demodulation reference signal, DMRS) or other Refer to the measurement result of the reference signal.
  • the UE when the measurement configuration includes the first measurement height configuration, the UE may determine whether to report the measurement report according to whether the height information of the UE meets the first measurement height configuration; and/or, in the measurement In the case that the configuration includes the first measurement location configuration, the UE may determine whether to report the measurement report according to whether the location information of the UE meets the first measurement location configuration; and/or, in the case that the measurement configuration includes the first measurement speed configuration, the UE It may be determined whether to report a measurement report according to whether the speed information of the UE satisfies the first measurement speed configuration.
  • the embodiments of this application can be applied to unmanned aerial vehicles (UAV) or unmanned aircraft systems (UAS), such as unmanned aircraft, unmanned aerial vehicles, unmanned aerial vehicles, and unmanned combat operations. Airplanes, bees, etc.
  • UAV unmanned aerial vehicles
  • UAS unmanned aircraft systems
  • the UE in the embodiment of the present application can implement at least one of the following functions: aviation terminal authentication, altitude information reporting, interference detection based on measurement reporting, flight path information reporting, horizontal and vertical information reporting, and so on.
  • the embodiment of the present application provides a measurement report configuration method.
  • the UE can determine whether to report the measurement report according to the measurement configuration configured by the network device (the measurement configuration is used to indicate the reporting condition of the UE's measurement report). Since the UE can determine whether the report conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration configured by the network device, so as to determine whether to perform the measurement report.
  • the measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • the network device when the network device performs the handover instruction, it can determine more accurate and comprehensive information according to the measurement report reported by the UE, so that the flexibility of the handover process can be improved.
  • the above step 203 may be specifically implemented by the following step 203a.
  • Step 203a The UE determines whether to report a measurement report according to whether the actual measurement amount of the UE reaches the first value.
  • the above-mentioned first value is the sum of the first measurement value threshold value and the first measurement value change value.
  • step 203a may be specifically implemented by any of the following steps 203a10 to 203a17.
  • Step 203a10 If the actual measurement amount of the UE is greater than or equal to the first value, the UE determines to report a measurement report.
  • Step 203a11 If the actual measurement amount of the UE is less than the first value, the UE determines not to report a measurement report.
  • Step 203a12 If the actual measurement amount of the UE is greater than the first value, the UE determines to report a measurement report.
  • Step 203a13 If the actual measurement amount of the UE is less than or equal to the first value, the UE determines not to report a measurement report.
  • Step 203a14 If the actual measurement amount of the UE is less than the first value, the UE determines to report a measurement report.
  • Step 203a15 If the actual measurement amount of the UE is greater than or equal to the first value, the UE determines not to report a measurement report.
  • Step 203a16 If the actual measurement amount of the UE is less than or equal to the first value, the UE determines to report a measurement report.
  • Step 203a17 If the actual measurement amount of the UE is greater than the first value, the UE determines not to report a measurement report.
  • the UE reports a measurement report when the actual measurement volume of the UE is greater than (or equal to) the first value, or reports a measurement report when the actual measurement volume of the UE is less than (or equal to) the first value, which can be a protocol Arranged or configured by network equipment.
  • the above step 203 may specifically pass the following steps 203b implementation.
  • Step 203b The UE determines whether to report a measurement report according to whether the height value of the UE reaches the first height threshold.
  • step 203b may be specifically implemented by any of the following steps 203b20 to 203b27.
  • Step 203b20 If the height value of the UE is greater than or equal to the first height threshold, the UE determines to report a measurement report.
  • Step 203b21 If the height value of the UE is less than the first height threshold, the UE determines not to report a measurement report.
  • Step 203b22 If the height value of the UE is greater than the first height threshold, the UE determines to report a measurement report.
  • Step 203b23 If the height value of the UE is less than or equal to the first height threshold, the UE determines not to report a measurement report.
  • Step 203b24 If the height value of the UE is less than the first height threshold, the UE determines to report a measurement report.
  • Step 203b25 If the height value of the UE is greater than or equal to the first height threshold, the UE determines not to report a measurement report.
  • Step 203b26 If the height value of the UE is less than or equal to the first height threshold, the UE determines to report a measurement report.
  • Step 203b27 If the height value of the UE is greater than the first height threshold, the UE determines not to report a measurement report.
  • the UE reports a measurement report when the height value of the UE is greater than (or equal to) the first height threshold value, or reports a measurement report when the height value of the UE is less than (or equal to) the first height threshold value , It can be agreed by the protocol or configured by the network device.
  • the above step 203 may specifically pass the following steps 203c implementation.
  • Step 203c The UE determines whether to report a measurement report according to whether the second height offset value of the UE in the first preset time period reaches the first height offset value.
  • the foregoing second height offset value may be understood as the amount of change in the height of the UE within the first preset time period.
  • step 203c may be specifically implemented by any of the following steps 203c30 to 203c37.
  • Step 203c30 If the second height offset value is greater than or equal to the first height offset value, the UE determines to report a measurement report.
  • Step 203c31 If the second height offset value is less than the first height offset value, the UE determines not to report a measurement report.
  • Step 203c32 If the second height offset value is greater than the first height offset value, the UE determines to report a measurement report.
  • Step 203c33 If the second height offset value is less than or equal to the first height offset value, the UE determines not to report the measurement report.
  • Step 203c34 If the second height offset value is less than the first height offset value, the UE determines to report a measurement report.
  • Step 203c35 If the second height offset value is greater than or equal to the first height offset value, the UE determines not to report the measurement report.
  • Step 203c36 If the second height offset value is less than or equal to the first height offset value, the UE determines to report a measurement report.
  • Step 203c37 If the second height offset value is greater than the first height offset value, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the second height offset value is greater than (or equal to) the first height offset value, or whether the second height offset value is less than (or equal to) the first height offset value
  • the measurement report is reported at the time, which can be agreed by the protocol or configured by the network device.
  • the above-mentioned measurement event configuration includes a second measurement location configuration
  • the second measurement location configuration includes a first location value
  • the first location value indicates a first geographic location range
  • Step 203d The UE determines whether to report a measurement report according to whether the geographical location value of the UE is within the first geographical location range.
  • step 203d may be specifically implemented by any of the following steps 203d40 to 203d43.
  • Step 203d40 If the geographic location value of the UE is within the range of the first geographic location, the UE determines to report a measurement report.
  • Step 203d41 If the geographic location value of the UE is outside the range of the first geographic location, the UE determines not to report a measurement report.
  • Step 203d42 If the geographic location value of the UE is outside the range of the first geographic location, the UE determines to report a measurement report.
  • Step 203d43 If the geographic location value of the UE is within the range of the first geographic location, the UE determines not to report a measurement report.
  • the UE reports a measurement report when the UE's geographic location value is within the first geographic location range, or when the UE's geographic location value is outside the first geographic location range may be agreed upon by agreement. Or network equipment configuration.
  • the above-mentioned measurement event configuration includes a second measurement location configuration
  • the second measurement location configuration includes a first location value
  • the first location value indicates a first area identifier
  • Step 203e The UE determines whether to report a measurement report according to whether the second area identifier of the area where the UE is located is the same as the first area identifier.
  • step 203e may be specifically implemented by any of the following steps 203e50 to 203e53.
  • Step 203e50 If the second area identifier is the same as the first area identifier, the UE determines to report a measurement report.
  • Step 203e51 If the second area identifier is different from the first area identifier, the UE determines not to report a measurement report.
  • Step 203e52 If the second area identifier is different from the first area identifier, the UE determines to report a measurement report.
  • Step 203e53 If the second area identifier is the same as the first area identifier, the UE determines not to report the measurement report.
  • the UE reports the measurement report when the second area identifier is the same as the first area identifier, or reports the measurement report when the second area identifier is different from the first area identifier may be agreed upon by the protocol or configured by the network device of.
  • the above-mentioned measurement event configuration includes a second measurement location configuration
  • the second measurement location configuration includes a first location value
  • the first location value indicates a first cell identity
  • Step 203f The UE determines whether to report a measurement report according to whether the second cell identity of the cell where the UE is located is the same as the first cell identity.
  • step 203f may be specifically implemented by any of the following steps 203f60 to 203f63.
  • Step 203f60 If the second cell identifier is the same as the first cell identifier (that is, the UE is in the coverage area corresponding to the first cell), the UE determines to report a measurement report.
  • Step 203f61 If the second cell identifier is different from the first cell identifier (that is, the UE is outside the coverage area corresponding to the first cell), the UE determines not to report a measurement report.
  • Step 203f62 If the second cell identity is different from the first cell identity, the UE determines to report a measurement report.
  • Step 203f63 If the second cell identity is the same as the first cell identity, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the second cell identity is the same as the first cell identity, or reports the measurement report when the second cell identity is different from the first cell identity may be agreed upon by the protocol or configured by the network device of.
  • the above-mentioned measurement event configuration includes a second measurement location configuration
  • the second measurement location configuration includes a first location value
  • the first location value indicates the first RNA information
  • Step 203g The UE determines whether to report a measurement report according to whether the second RNA information of the RNA corresponding to the UE is the same as the first RNA information.
  • step 203g may be specifically implemented by any of the following steps 203g70 to 203g73.
  • Step 203g70 If the second RNA information is the same as the first RNA information (that is, the UE is in the coverage area corresponding to the first RNA), the UE determines to report the measurement report.
  • Step 203g71 If the second RNA information is different from the first RNA information (that is, the UE is outside the coverage area corresponding to the first RNA), the UE determines not to report the measurement report.
  • Step 203g72 If the second RNA information is different from the first RNA information, the UE determines to report a measurement report.
  • Step 203g73 If the second RNA information is the same as the first RNA information, the UE determines not to report the measurement report.
  • the UE reports the measurement report when the second RNA information is the same as the first RNA information, or reports the measurement report when the second RNA information is different from the first RNA information can be agreed upon by the protocol or configured by the network device of.
  • the above-mentioned measurement event configuration includes a second measurement position configuration
  • the second measurement position configuration includes a first position value
  • the first position value indicates a first TA identifier
  • Step 203h The UE determines whether to report a measurement report according to whether the second TA identifier of the TA corresponding to the UE is the same as the first TA identifier.
  • step 203h may be specifically implemented by any of the following steps 203h80 to step 203h83.
  • Step 203h80 If the second TA identifier is the same as the first TA identifier (that is, the UE is in the coverage area corresponding to the first TA), the UE determines to report a measurement report.
  • Step 203h81 If the second TA identifier is different from the first TA identifier (that is, the UE is outside the coverage area corresponding to the first TA), the UE determines not to report the measurement report.
  • Step 203h82 If the second TA identifier is different from the first TA identifier, the UE determines to report a measurement report.
  • Step 203h83 If the second TA identifier is the same as the first TA identifier, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the second TA identifier is the same as the first TA identifier, or reports the measurement report when the second TA identifier is different from the first TA identifier may be agreed upon by the protocol or configured by the network device of.
  • the above step 203 may specifically pass the following steps 203i implementation.
  • Step 203i The UE determines whether to report a measurement report according to whether the first moving distance of the UE in the second preset time period reaches the first position offset value.
  • step 203i may be specifically implemented by any of the following steps 203i90 to 203i97.
  • Step 203i90 If the first moving distance is greater than or equal to the first position offset value, the UE determines to report a measurement report.
  • Step 203i91 If the first moving distance is less than the first position offset value, the UE determines not to report a measurement report.
  • Step 203i92 If the first moving distance is greater than the first position offset value, the UE determines to report a measurement report.
  • Step 203i93 If the first moving distance is less than or equal to the first position offset value, the UE determines not to report the measurement report.
  • Step 203i94 If the first moving distance is less than the first position offset value, the UE determines to report a measurement report.
  • Step 203i95 If the first moving distance is greater than or equal to the first position offset value, the UE determines not to report the measurement report.
  • Step 203i96 If the first moving distance is less than or equal to the first position offset value, the UE determines to report a measurement report.
  • Step 203i97 If the first moving distance is greater than the first position offset value, the UE determines not to report the measurement report.
  • the UE reports the measurement report when the first movement distance is greater than (or equal to) the first position offset value, or reports the measurement report when the first movement distance is less than (or equal to) the first position offset value , It can be agreed by the protocol or configured by the network device.
  • the above-mentioned step 203 may be specifically implemented by the following step 203j.
  • Step 203j The UE determines whether to report a measurement report according to whether the speed value of the UE reaches the second measurement speed configuration.
  • step 203j may be specifically implemented by any of the following steps 203j100 to 203j107.
  • Step 203j100 If the speed value of the UE is greater than or equal to the second measurement speed configuration, the UE determines to report a measurement report.
  • Step 203j101 If the speed value of the UE is less than the second measurement speed configuration, the UE determines not to report a measurement report.
  • Step 203j102 If the speed value of the UE is greater than the second measurement speed configuration, the UE determines to report a measurement report.
  • Step 203j103 If the speed value of the UE is less than or equal to the second measurement speed configuration, the UE determines not to report a measurement report.
  • Step 203j104 If the speed value of the UE is less than the second measurement speed configuration, the UE determines to report a measurement report.
  • Step 203j105 If the speed value of the UE is greater than or equal to the second measurement speed configuration, the UE determines not to report a measurement report.
  • Step 203j106 If the speed value of the UE is less than or equal to the second measurement speed configuration, the UE determines to report a measurement report.
  • Step 203j107 If the speed value of the UE is greater than the second measurement speed configuration, the UE determines not to report a measurement report.
  • the UE reports a measurement report when the speed value of the UE is greater than (or equal to) the second measurement speed configuration, or whether the UE reports a measurement report when the speed value of the UE is less than (or equal to) the second measurement speed configuration. It is agreed upon by the protocol or configured by the network device.
  • Example 1 Assume that the measurement configuration includes the measurement event configuration (that is, the event ID 1 and the event configuration corresponding to the event ID 1), and the measurement event configuration includes the altitude threshold X and the measurement threshold Y; when the UE’s When the height value is greater than or less than X, and the actual measurement amount of the UE is greater than or less than Y, it can be determined that the event corresponding to the event identifier 1 is satisfied, and the UE can report the measurement report.
  • the measurement event configuration that is, the event ID 1 and the event configuration corresponding to the event ID 1
  • the measurement event configuration includes the altitude threshold X and the measurement threshold Y
  • Example 2 Assume that the measurement configuration includes the measurement event configuration (ie, event ID 1 and the event configuration corresponding to the event ID 1), and the measurement event configuration includes altitude threshold X, measurement threshold Y, and measurement change Value Z (Z can be positive, 0, or negative); when the height of the UE is greater than or less than X, then if the actual measured quantity of the UE is greater than or less than the sum of the measured quantity threshold Y and the measured quantity change value Z, Then the UE can report the measurement report.
  • the measurement event configuration ie, event ID 1 and the event configuration corresponding to the event ID 1
  • the measurement event configuration includes altitude threshold X, measurement threshold Y, and measurement change Value Z (Z can be positive, 0, or negative)
  • Z can be positive, 0, or negative
  • Example 3 Assume that the measurement configuration includes the measurement event configuration (that is, the event ID 1 and the event configuration corresponding to the event ID 1), and the measurement event configuration includes the height offset value W and the measurement threshold value Y; when the UE’s When the height change value is greater than or less than W within a certain period of time, and the actual measurement amount of the UE is greater than or less than Y, the UE can report a measurement report.
  • the measurement event configuration that is, the event ID 1 and the event configuration corresponding to the event ID 1
  • the measurement event configuration includes the height offset value W and the measurement threshold value Y
  • the UE can report a measurement report.
  • Example 4 Assuming that the measurement configuration includes the measurement event configuration (ie, event ID 1 and the event configuration corresponding to the event ID 1), and the measurement event configuration includes the height offset value W, the measurement threshold Y, and the measurement change Value Z: When the height change value of the UE is greater than or less than W within a certain period of time, then if the actual measurement quantity of the UE is greater than or less than the sum of the measurement quantity threshold Y and the measurement quantity change value Z, the UE can report a measurement report.
  • the measurement event configuration ie, event ID 1 and the event configuration corresponding to the event ID 1
  • the measurement event configuration includes the height offset value W, the measurement threshold Y, and the measurement change Value Z:
  • the UE may determine whether to report a measurement report based on different measurement quantity configurations.
  • the measurement event configuration that is, the event ID 1 and the event configuration corresponding to the event ID 1
  • the measurement event configuration includes the position value A (which can refer to a specific latitude and longitude position or range, a certain Area identification or a certain cell
  • Example 6 Assume that the measurement configuration includes the measurement event configuration (that is, the event ID 1 and the event configuration corresponding to the event ID 1), and the measurement event configuration includes the position offset value B (which can refer to the moving distance of the UE in the horizontal direction , The moving distance in the vertical direction or the moving distance in any direction) and the measurement threshold Y; when the UE moving distance in the horizontal direction, the moving distance in the vertical direction, or the moving distance in any direction is greater than or less than B , And when the actual measurement amount of the UE is greater than or less than Y, it can be determined that the event corresponding to the event identifier 1 is satisfied, and the UE can report the measurement report.
  • B which can refer to the moving distance of the UE in the horizontal direction , The moving distance in the vertical direction or the moving distance in any direction
  • the measurement threshold Y when the UE moving distance in the horizontal direction, the moving distance in the vertical direction, or the moving distance in any direction is greater than or less than B , And when the actual measurement amount of the UE
  • Example 7 Assume that the measurement configuration includes the measurement event configuration (that is, the event ID 1 and the event configuration corresponding to the event ID 1), and the measurement event configuration includes the position offset value B; when the UE moves in the horizontal direction, The moving distance in the vertical direction or the moving distance in any direction is greater than or less than B, it can be determined that the event corresponding to the event identifier 1 is satisfied, and the UE can report the measurement report.
  • the measurement event configuration includes the measurement event configuration (that is, the event ID 1 and the event configuration corresponding to the event ID 1)
  • the measurement event configuration includes the position offset value B
  • the UE may determine whether to report a measurement report based on different measurement quantity configurations.
  • Example 8 The network device sends the measurement configuration to the UE through dedicated signaling.
  • the measurement configuration includes at least one of the following: measurement target, measurement report configuration, measurement identifier, measurement quantity configuration, and measurement gap, and the measurement report configuration includes At least one of the following: measurement event configuration (ie, event ID 1 and the event configuration corresponding to this event ID 1), reference signal type, reporting interval and reporting times, and one or more position values C; when certain measurement conditions are met,
  • the UE can perform measurements according to the measurement configuration, and the measurement results obtained by the measurement include beam measurement results and/or cell measurement results; the UE continues to evaluate the measurement report, if the measurement report trigger condition is met (for example, the event configuration corresponding to event ID 1 is met, and The location of the UE is/not C), the UE can send the measurement report to the network device.
  • the network device sends the measurement configuration to the UE through dedicated signaling.
  • the measurement configuration includes at least one of the following: measurement target, measurement report configuration, measurement identifier, measurement quantity configuration, and measurement gap, and the measurement report configuration includes At least one of the following: measurement event configuration (ie, event ID 1 and the event configuration corresponding to the event ID 1, event ID 2 and the event configuration corresponding to the event ID 2), reference signal type, reporting interval and reporting times, height threshold Value X and height threshold value D; when certain measurement conditions are met, the UE can perform measurement according to the measurement configuration, and the measurement results obtained by the measurement include beam measurement results and/or cell measurement results; the UE continues to evaluate the measurement report, if If the measurement report trigger condition is met (for example, the height of the UE is X and the event configuration corresponding to event ID 1 is met, and/or the height of the UE is D and the event configuration corresponding to event ID 2 is met), the UE can measure The report is sent to the network device.
  • measurement event configuration ie, event ID 1
  • the UE may determine whether to report a measurement report based on different event configurations.
  • the above-mentioned Step 203 can be specifically implemented by the following step 203k.
  • Step 203k The UE determines whether to report a measurement report according to whether the height value of the UE reaches the second height threshold.
  • step 203k may be specifically implemented by any of the following steps 203k10 to 203k17.
  • Step 203k10 If the height value of the UE is greater than or equal to the second height threshold, the UE determines to report a measurement report.
  • Step 203k11 If the height value of the UE is less than the second height threshold, the UE determines not to report a measurement report.
  • Step 203k12 If the height value of the UE is greater than the second height threshold, the UE determines to report a measurement report.
  • Step 203k13 If the height value of the UE is less than or equal to the second height threshold, the UE determines not to report a measurement report.
  • Step 203k14 If the height value of the UE is less than the second height threshold, the UE determines to report a measurement report.
  • Step 203k15 If the height value of the UE is greater than or equal to the second height threshold, the UE determines not to report a measurement report.
  • Step 203k16 If the height value of the UE is less than or equal to the second height threshold, the UE determines to report a measurement report.
  • Step 203k17 If the height value of the UE is greater than the second height threshold, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the UE's height value is greater than (or equal to) the second height threshold, or reports the measurement report when the UE's height value is less than (or equal to) the second height threshold , It can be agreed by the protocol or configured by the network device.
  • the above step 203 may specifically pass the following step 203m achieve.
  • Step 203m The UE determines whether to report a measurement report according to whether the fourth height offset value of the UE in the third preset time period reaches the third height offset value.
  • the foregoing fourth height offset value may be understood as the amount of change in the height of the UE in the third preset time period.
  • step 203m may be specifically implemented by any of the following steps 203m20 to 203m27.
  • Step 203m20 If the fourth height offset value is greater than or equal to the third height offset value, the UE determines to report a measurement report.
  • Step 203m21 If the fourth height offset value is less than the third height offset value, the UE determines not to report a measurement report.
  • Step 203m22 If the fourth height offset value is greater than the third height offset value, the UE determines to report a measurement report.
  • Step 203m23 If the fourth height offset value is less than or equal to the third height offset value, the UE determines not to report a measurement report.
  • Step 203m24 If the fourth height offset value is less than the third height offset value, the UE determines to report a measurement report.
  • Step 203m25 If the fourth height offset value is greater than or equal to the third height offset value, the UE determines not to report a measurement report.
  • Step 203m26 If the fourth height offset value is less than or equal to the third height offset value, the UE determines to report a measurement report.
  • Step 203m27 If the fourth height offset value is greater than the third height offset value, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the fourth height offset value is greater than (or equal to) the third height offset value, or whether the fourth height offset value is less than (or equal to) the third height offset value
  • the measurement report is reported at the time, which can be agreed by the protocol or configured by the network device.
  • step 203 in the case where the foregoing measurement configuration includes a first measurement location configuration, and the first measurement location configuration includes a second location value, and the second location value indicates a second geographic location range,
  • the above step 203 can be specifically implemented by the following step 203n.
  • Step 203n The UE determines whether to report a measurement report according to whether the geographic location value of the UE is within the second geographic location range.
  • step 203n may be specifically implemented by any of the following steps 203n30 to 203n33.
  • Step 203n30 If the geographic location value of the UE is within the second geographic location range, the UE determines to report a measurement report.
  • Step 203n31 If the geographic location value of the UE is outside the second geographic location range, the UE determines not to report a measurement report.
  • Step 203n32 If the geographic location value of the UE is outside the second geographic location range, the UE determines to report a measurement report.
  • Step 203n33 If the geographic location value of the UE is within the second geographic location range, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the UE's geographic location value is within the second geographic location range, or when the UE's geographic location value is outside the second geographic location range may be agreed upon by agreement. Or network equipment configuration.
  • the above Step 203 can be specifically implemented by the following step 203o.
  • Step 203o The UE determines whether to report a measurement report according to whether the fourth area identifier of the area where the UE is located is the same as the third area identifier.
  • step 203o may be specifically implemented by any of the following steps 203o40 to 203o43.
  • Step 203o40 If the fourth area identifier is the same as the third area identifier, the UE determines to report a measurement report.
  • Step 203o41 If the fourth area identifier is different from the third area identifier, the UE determines not to report a measurement report.
  • Step 203o42 If the fourth area identifier is different from the third area identifier, the UE determines to report a measurement report.
  • Step 203o43 If the fourth area identifier is the same as the third area identifier, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the fourth area identifier is the same as the third area identifier, or reports the measurement report when the fourth area identifier is different from the third area identifier may be agreed upon by the protocol or configured by the network device of.
  • the foregoing Step 203 can be specifically implemented by the following step 203p.
  • Step 203p The UE determines whether to report a measurement report according to whether the fourth cell identity of the cell where the UE is located is the same as the third cell identity.
  • step 203p may be specifically implemented by any of the following steps 203p50 to 203p53.
  • Step 203p50 If the fourth cell identifier is the same as the third cell identifier, the UE determines to report a measurement report.
  • Step 203p51 If the fourth cell identity is different from the third cell identity, the UE determines not to report a measurement report.
  • Step 203p52 If the fourth cell identity is different from the third cell identity, the UE determines to report a measurement report.
  • Step 203p53 If the fourth cell identity is the same as the third cell identity, the UE determines not to report a measurement report.
  • the UE reports the measurement report when the fourth cell identity is the same as the third cell identity, or reports the measurement report when the fourth cell identity is different from the third cell identity can be agreed upon by the protocol or configured by the network device of.
  • the above Step 203 can be specifically implemented by the following step 203q.
  • Step 203q The UE determines whether to report a measurement report according to whether the fourth RNA information of the RNA corresponding to the UE is the same as the third RNA information.
  • step 203q may be specifically implemented by any of the following steps 203q60 to 203q63.
  • Step 203q60 If the fourth RNA information is the same as the third RNA information, the UE determines to report a measurement report.
  • Step 203q61 If the fourth RNA information is different from the third RNA information, the UE determines not to report the measurement report.
  • Step 203q62 If the fourth RNA information is different from the third RNA information, the UE determines to report a measurement report.
  • Step 203q63 If the fourth RNA information is the same as the third RNA information, the UE determines not to report the measurement report.
  • UE reports the measurement report when the fourth RNA information is the same as the third RNA information, or reports the measurement report when the fourth RNA information is different from the third RNA information can be agreed upon by the protocol or configured by the network device of.
  • the above Step 203 can be specifically implemented by the following step 203r.
  • Step 203r The UE determines whether to report a measurement report according to whether the fourth TA identifier of the TA corresponding to the UE is the same as the third TA identifier.
  • step 203r may be specifically implemented by any of the following steps 203r70 to 203r73.
  • Step 203r70 If the fourth TA identifier is the same as the third TA identifier, the UE determines to report a measurement report.
  • Step 203r71 If the fourth TA identifier is different from the third TA identifier, the UE determines not to report a measurement report.
  • Step 203-72 If the fourth TA identifier is different from the third TA identifier, the UE determines to report a measurement report.
  • Step 203-73 If the fourth TA identifier is the same as the third TA identifier, the UE determines not to report the measurement report.
  • the UE reports the measurement report when the fourth TA identifier is the same as the third TA identifier, or reports the measurement report when the fourth TA identifier is different from the third TA identifier may be agreed upon by the protocol or configured by the network device of.
  • the above step 203 may specifically pass the following step 203s achieve.
  • Step 203s The UE determines whether to report a measurement report according to whether the second movement distance of the UE in the fourth preset time period reaches the second position offset value.
  • step 203s may be specifically implemented by any of the following steps 203s80 to 203s87.
  • Step 203s80 If the second moving distance is greater than or equal to the second position offset value, the UE determines to report a measurement report.
  • Step 203s81 If the second moving distance is less than the second position offset value, the UE determines not to report the measurement report.
  • Step 203s82 If the second moving distance is greater than the second position offset value, the UE determines to report a measurement report.
  • Step 203s83 If the second moving distance is less than or equal to the second position offset value, the UE determines not to report the measurement report.
  • Step 203s84 If the second moving distance is less than the second position offset value, the UE determines to report a measurement report.
  • Step 203s85 If the second moving distance is greater than or equal to the second position offset value, the UE determines not to report the measurement report.
  • Step 203s86 If the second moving distance is less than or equal to the second position offset value, the UE determines to report a measurement report.
  • Step 203s87 If the second moving distance is greater than the second position offset value, the UE determines not to report the measurement report.
  • the UE reports the measurement report when the second movement distance is greater than (or equal to) the second position offset value, or reports the measurement report when the second movement distance is less than (or equal to) the second position offset value , It can be agreed by the protocol or configured by the network device.
  • the above-mentioned step 203 may be specifically implemented by the following step 203t.
  • Step 203t The UE determines whether to report a measurement report according to whether the speed value of the UE reaches the first measurement speed configuration.
  • step 203t may be specifically implemented by any of the following steps 203t90 to 203t97.
  • Step 203t90 If the speed value of the UE is greater than or equal to the first measurement speed configuration, the UE determines to report a measurement report.
  • Step 203t91 If the speed value of the UE is less than the first measurement speed configuration, the UE determines not to report a measurement report.
  • Step 203t92 If the speed value of the UE is greater than the first measurement speed configuration, the UE determines to report a measurement report.
  • Step 203t93 If the speed value of the UE is less than or equal to the first measurement speed configuration, the UE determines not to report a measurement report.
  • Step 203t94 If the speed value of the UE is less than the first measurement speed configuration, the UE determines to report a measurement report.
  • Step 203t95 If the speed value of the UE is greater than or equal to the first measurement speed configuration, the UE determines not to report a measurement report.
  • Step 203t96 If the speed value of the UE is less than or equal to the first measurement speed configuration, the UE determines to report a measurement report.
  • Step 203t97 If the speed value of the UE is greater than the first measurement speed configuration, the UE determines not to report a measurement report.
  • the UE reports a measurement report when the speed value of the UE is greater than (or equal to) the first measurement speed configuration, or whether the UE reports a measurement report when the speed value of the UE is less than (or equal to) the first measurement speed configuration. It is agreed upon by the protocol or configured by the network device.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 204 and step 205.
  • Step 204 The network device sends the first configuration to the UE.
  • Step 205 The UE receives the first configuration sent by the network device.
  • the above-mentioned first configuration is used to instruct the UE to perform measurement measurement conditions, and the first configuration includes at least one of the following configurations for the measurement conditions: a third measurement height configuration, a third measurement location configuration, and a third configuration. Measurement speed configuration.
  • the foregoing third measurement height configuration includes a third height threshold value and/or a fifth height offset value
  • the third measurement position configuration includes a third position value and/or a third position offset value. Shift value.
  • the fifth height offset value is the change threshold of the height of the UE in the fifth preset time period;
  • the third position value is used to indicate at least one of the following: the third geographic location range, the fifth area identifier , The fifth cell identifier, the fifth RNA information, and the fifth TA identifier; the above-mentioned third position offset value is used by the UE to determine whether the position of the UE changes within the sixth preset time period and/or the change value of the position of the UE .
  • the above-mentioned fifth cell identifier may be used to indicate the coverage area corresponding to the fifth cell;
  • the above-mentioned fifth RNA information may be used to indicate the coverage area corresponding to the fifth RNA;
  • the above-mentioned fifth TA identifier may be used to indicate the fifth cell Coverage range corresponding to TA;
  • the third altitude threshold may include one or more altitude thresholds, the fifth altitude offset may include one or more altitude offsets, and the third position value may include one Or multiple position values, and the aforementioned third position offset value may include one or more position offset values.
  • the foregoing third measurement height configuration, third measurement position configuration, and third measurement speed configuration are agreed upon by a protocol or configured by a network device.
  • step 204 may be performed first, and then step 201 may be performed, that is, the network device may send the first configuration first, and then the measurement configuration; or, in another possible implementation manner, it may be performed first Step 201, then perform step 204, that is, the network device can send the measurement configuration first, and then send the first configuration; or, in another possible implementation manner, step 201 and step 204 can be performed at the same time, that is, the network device can send at the same time Measurement configuration and first configuration.
  • the UE may determine whether to perform the measurement according to whether the height information of the UE meets the third measurement height configuration And/or, in the case where the first configuration includes the third measurement location configuration, the UE may determine whether to perform measurement according to whether the location information of the UE meets the third measurement location configuration; and/or, the first configuration includes In the case of the third measurement speed configuration, the UE may determine whether to perform measurement according to whether the speed information of the UE meets the third measurement speed configuration.
  • the threshold that triggers the UE to perform measurement may be different, and the mapping relationship between the specific threshold and the current state of the UE may be configured by the network device or agreed upon by agreement.
  • the embodiment of the present application in the case where the foregoing first configuration includes a third measurement height configuration, and the third measurement altitude configuration includes a third altitude threshold, before the foregoing step 203, the embodiment of the present application
  • the provided measurement report configuration method may further include the following step 301.
  • Step 301 The UE determines whether to perform measurement according to whether the height value of the UE reaches the third height threshold.
  • step 301 may be specifically implemented through the following steps 301a1 to 301a8.
  • Step 301a If the height of the UE is greater than or equal to the third height threshold, the UE determines to perform measurement.
  • Step 301a2 if the height value of the UE is less than the third height threshold, the UE determines not to perform measurement.
  • Step 301a3 If the height value of the UE is greater than the third height threshold, the UE determines to perform the measurement.
  • Step 301a4 If the height value of the UE is less than or equal to the third height threshold, the UE determines not to perform measurement.
  • Step 301a5 If the height value of the UE is less than the third height threshold, the UE determines to perform the measurement.
  • Step 301a6 If the height value of the UE is greater than or equal to the third height threshold, the UE determines not to perform measurement.
  • Step 301a7 If the height value of the UE is less than or equal to the third height threshold, the UE determines to perform the measurement.
  • Step 301a8 If the height value of the UE is greater than the third height threshold, the UE determines not to perform measurement.
  • the UE reports a measurement report when the UE's altitude value is greater than (or equal to) the third altitude threshold, or when the UE's altitude value is less than (or equal to) the third altitude threshold , It can be agreed by the protocol or configured by the network device.
  • the embodiment of the present application in the case where the foregoing first configuration includes a third measurement height configuration, and the third measurement altitude configuration includes a fifth height offset value, before the foregoing step 203, the embodiment of the present application
  • the provided measurement report configuration method may further include the following step 302.
  • Step 302 The UE determines whether to perform measurement according to whether the sixth height offset value of the UE in the fifth preset time period reaches the fifth height offset value.
  • the above-mentioned sixth height offset value may be understood as the amount of change in the height of the UE in the fifth preset time period.
  • step 302 may be specifically implemented through the following steps 302b1 to 302b8.
  • Step 302b1 If the sixth height offset value is greater than or equal to the fifth height offset value, the UE determines to perform the measurement.
  • Step 302b2 If the sixth height offset value is less than the fifth height offset value, the UE determines not to perform measurement.
  • Step 302b3 If the sixth height offset value is greater than the fifth height offset value, the UE determines to perform the measurement.
  • Step 302b4 If the sixth height offset value is less than or equal to the fifth height offset value, the UE determines not to perform measurement.
  • Step 302b5 If the sixth height offset value is less than the fifth height offset value, the UE determines to perform the measurement.
  • Step 302b6 If the sixth height offset value is greater than or equal to the fifth height offset value, the UE determines not to perform measurement.
  • Step 302b7 If the sixth height offset value is less than or equal to the fifth height offset value, the UE determines to perform the measurement.
  • Step 302b8 If the sixth height offset value is greater than the fifth height offset value, the UE determines not to perform measurement.
  • the UE reports the measurement report when the sixth height offset value is greater than (or equal to) the fifth height offset value, or whether the sixth height offset value is less than (or equal to) the fifth height offset value
  • the measurement report is reported at the time, which can be agreed by the protocol or configured by the network device.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 303.
  • Step 303 The UE determines whether to perform measurement according to whether the geographic location value of the UE is within the third geographic location range.
  • step 303 may be specifically implemented through the following steps 303c1 to 303c4.
  • Step 303c1 If the geographic location value of the UE is within the third geographic location range, the UE determines to perform measurement.
  • Step 303c2 If the geographic location value of the UE is outside the third geographic location range, the UE determines not to perform measurement.
  • Step 303c3 If the geographic location value of the UE is outside the third geographic location range, the UE determines to perform measurement.
  • Step 303c4 If the geographic location value of the UE is within the third geographic location range, the UE determines not to perform measurement.
  • the UE reports a measurement report when the UE's geographic location value is within the third geographic location, or when the UE's geographic location value is outside the third geographic location may be agreed upon by agreement. Or network equipment configuration.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 304.
  • Step 304 The UE determines whether to perform measurement according to whether the sixth area identifier of the area where the UE is located is the same as the fifth area identifier.
  • step 304 may be specifically implemented through the following steps 304d1 to 304d4.
  • Step 304d1 If the sixth area identifier is the same as the fifth area identifier, the UE determines to perform measurement.
  • Step 304d3 If the sixth area identifier is different from the fifth area identifier, the UE determines to perform measurement.
  • Step 304d4 If the sixth area identifier is the same as the fifth area identifier, the UE determines not to perform measurement.
  • the UE reports the measurement report when the sixth area identifier is the same as the fifth area identifier, or reports the measurement report when the sixth area identifier and the fifth area identifier are different may be agreed upon by the protocol or configured by the network device of.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 305.
  • Step 305 The UE determines whether to perform measurement according to whether the sixth cell identity of the cell where the UE is located is the same as the fifth cell identity.
  • the foregoing step 305 may be specifically implemented through the following steps 305e1 to 305e4.
  • Step 305e1 if the sixth cell identifier is the same as the fifth cell identifier, the UE determines to perform measurement.
  • Step 305e2 if the sixth cell identity is different from the fifth cell identity, the UE determines not to perform measurement.
  • Step 305e3 If the sixth cell identity is different from the fifth cell identity, the UE determines to perform measurement.
  • Step 305e4 If the sixth cell identity is the same as the fifth cell identity, the UE determines not to perform measurement.
  • the UE reports the measurement report when the sixth cell identity is the same as the fifth cell identity, or reports the measurement report when the sixth cell identity and the fifth cell identity are different may be agreed upon by the protocol or configured by the network device of.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 306.
  • Step 306 The UE determines whether to perform measurement according to whether the sixth RNA information of the RNA corresponding to the UE is the same as the fifth RNA information.
  • step 306 may be specifically implemented through the following steps 306f1 to 306f4.
  • Step 306f If the sixth RNA information is the same as the fifth RNA information, the UE determines to perform the measurement.
  • Step 306f2 if the sixth RNA information is different from the fifth RNA information, the UE determines not to perform measurement.
  • Step 306f3 If the sixth RNA information is different from the fifth RNA information, the UE determines to perform the measurement.
  • Step 306f4 If the sixth RNA information is the same as the fifth RNA information, the UE determines not to perform measurement.
  • UE reports the measurement report when the sixth RNA information is the same as the fifth RNA information, or reports the measurement report when the sixth RNA information and the fifth RNA information are different may be agreed upon by the protocol or configured by the network device of.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 307.
  • Step 307 The UE determines whether to perform measurement according to whether the sixth TA identifier of the TA corresponding to the UE is the same as the fifth TA identifier.
  • step 307 may be specifically implemented through the following steps 307g1 to 307g4.
  • Step 307g1 If the sixth TA identifier is the same as the fifth TA identifier, the UE determines to perform measurement.
  • Step 307g2 if the sixth TA identifier is different from the fifth TA identifier, the UE determines not to perform measurement.
  • Step 307g3 If the sixth TA identifier is different from the fifth TA identifier, the UE determines to perform measurement.
  • Step 307g4 If the sixth TA identifier is the same as the fifth TA identifier, the UE determines not to perform measurement.
  • the UE reports the measurement report when the sixth TA identifier is the same as the fifth TA identifier, or reports the measurement report when the sixth TA identifier and the fifth TA identifier are different may be agreed upon by the protocol or configured by the network device of.
  • the embodiment of the present application in the case where the above-mentioned first configuration includes the third measurement position configuration and the third measurement position configuration includes the third position offset value, before the above step 203, the embodiment of the present application
  • the provided measurement report configuration method may further include the following step 308.
  • Step 308 The UE determines whether to perform measurement according to whether the third movement distance of the UE in the sixth preset time period reaches the third position offset value.
  • step 308 may be specifically implemented through the following steps 308h1 to 308h8.
  • Step 308h1 If the third moving distance is greater than or equal to the third position offset value, it is determined to perform the measurement.
  • Step 308h2 if the third moving distance is less than the third position offset value, the UE determines not to perform measurement.
  • Step 308h3 If the third moving distance is greater than the third position offset value, the UE determines to perform measurement.
  • Step 308h4 If the third moving distance is less than or equal to the third position offset value, the UE determines not to perform measurement.
  • Step 308h5 If the third moving distance is less than the third position offset value, the UE determines to perform measurement.
  • Step 308h6 If the third moving distance is greater than or equal to the third position offset value, the UE determines not to perform measurement.
  • Step 308h7 If the third moving distance is less than or equal to the third position offset value, the UE determines to perform measurement.
  • Step 308h8 If the third moving distance is greater than the third position offset value, the UE determines not to perform measurement.
  • the UE reports the measurement report when the third movement distance is greater than (or equal to) the third position offset value, or reports the measurement report when the third movement distance is less than (or equal to) the third position offset value , It can be agreed by the protocol or configured by the network device.
  • the measurement report configuration method provided in the embodiment of the present application may further include the following step 309.
  • Step 309 The UE determines whether to perform measurement according to whether the speed value of the UE reaches the third measurement speed configuration.
  • step 309 may be specifically implemented through the following steps 309i1 to 309i8.
  • Step 309i1 If the speed value of the UE is greater than or equal to the third measurement speed configuration, the UE determines to perform the measurement.
  • Step 309i2 if the speed value of the UE is less than the third measurement speed configuration, the UE determines not to perform measurement.
  • Step 309i3 If the speed value of the UE is greater than the third measurement speed configuration, the UE determines to perform the measurement.
  • Step 309i4 If the speed value of the UE is less than or equal to the third measurement speed configuration, the UE determines not to perform measurement.
  • Step 309i5 If the speed value of the UE is less than the third measurement speed configuration, the UE determines to perform the measurement.
  • Step 309i6 If the speed value of the UE is greater than or equal to the third measurement speed configuration, the UE determines not to perform measurement.
  • Step 309i7 If the speed value of the UE is less than or equal to the third measurement speed configuration, the UE determines to perform the measurement.
  • Step 309i8 If the speed value of the UE is greater than the third measurement speed configuration, the UE determines not to perform measurement.
  • the UE reports a measurement report when the UE's speed value is greater than (or equal to) the third measurement speed configuration, or when the UE's speed value is less than (or equal to) the third measurement speed configuration, you can It is agreed upon by the protocol or configured by the network device.
  • first preset time period second preset time period
  • third preset time period fourth preset time period
  • fifth preset time period fifth preset time period
  • sixth preset time period may be the same or different.
  • the UE may determine whether to report a measurement report according to the measurement configuration.
  • Example 10 The network device sends the measurement configuration to the UE through dedicated signaling.
  • the measurement configuration includes at least one of the following: measurement target, measurement report configuration, measurement identifier, measurement quantity configuration, and measurement gap; when certain measurement conditions are met
  • the measurement results obtained after the measurement include beam measurement results and/or cell measurement results; the UE continues to evaluate the measurement report, and if the measurement report trigger condition is met, the UE can send the measurement report to the network equipment.
  • the above measurement conditions may be: when the serving cell satisfies Srxlev>SIntraSearchP and Squal>SIntraSearchQ, and the height value of the UE is between XD, the UE may not perform measurement on neighboring cells with the same frequency.
  • the UE performs the measurement of the same-frequency neighboring cells; when the height value of the UE is X, if the serving cell satisfies Srxlev>SIntraSearchP1 and Squal>SIntraSearchQ1, the UE may not perform the measurement of the same-frequency neighboring cells, otherwise the UE performs the same-frequency neighboring cells.
  • the height value of the UE is D, if the serving cell satisfies Srxlev>SIntraSearchP2 and Squal>SIntraSearchQ2, the UE may not perform the measurement of the same-frequency neighboring cells, otherwise the UE performs the measurement of the same-frequency neighboring cells.
  • the above measurement conditions may be: when the priority of the adjacent frequency point is equal to or lower than the serving frequency point and RAT, if the serving cell satisfies Srxlev>SnonIntraSearchP and Squal>SnonIntraSearchQ, and the height of the UE If the value is between XD, the UE may not perform the measurement of the neighboring cell, otherwise the UE will perform the measurement of the neighboring cell; when the height of the UE is X, if the priority of the neighboring frequency is equal to or lower than the serving frequency and RAT, If the serving cell satisfies Srxlev>SnonIntraSearchP1 and Squal>SnonIntraSearchQ1, the UE may not perform the measurement of the neighboring cell, otherwise the UE performs the measurement of the neighboring cell; when the height of the UE is D, if the priority of the neighboring frequency is equal to or lower than this Serving frequency and RAT, if the serving cell
  • the UE may determine whether to perform measurement.
  • FIG. 5 shows a schematic diagram of a possible structure of a UE involved in an embodiment of the present application.
  • the UE 50 provided in the embodiment of the present application may include: a receiving module 51 and a determining module 52.
  • the receiving module 51 is configured to receive a measurement configuration sent by a network device; wherein, the measurement configuration is used to indicate the reporting condition of the measurement report of the UE, and the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration , The first measurement height configuration, the first measurement position configuration, and the first measurement speed configuration.
  • the determining module 52 is configured to determine whether to report a measurement report according to the measurement configuration received by the receiving module 51.
  • the measurement event configuration includes at least one of the following configurations for the corresponding measurement event: measurement quantity configuration, second measurement height configuration, second The measurement position configuration and the second measurement speed configuration.
  • the aforementioned measurement quantity configuration includes a first measurement quantity change value and a first measurement quantity threshold value
  • the second measurement height configuration includes a first height threshold value and/or a first height offset value.
  • the second measurement position configuration includes the first position value and/or the first position offset value; wherein the first height offset value is the change threshold of the height of the UE in the first preset time period; the first position The value is used to indicate at least one of the following: the first geographic location range, the first area identifier, the first cell identifier, the first RNA information, and the first TA identifier; the first position offset value is used by the UE to determine the Whether the location of the UE changes during the time period and/or the change value of the location of the UE.
  • the determination module 52 is specifically configured to determine whether to report the measurement report according to whether the actual measurement quantity of the UE reaches the first value; wherein, The first value is the sum of the first measured quantity threshold value and the first measured quantity change value.
  • the determination module 52 is specifically configured to determine the height of the UE according to the height of the UE. Whether the value reaches the first altitude threshold value, it is determined whether to report the measurement report.
  • the above determination module 52 is specifically configured to determine whether the UE is in the first Whether the second height offset value in a preset time period reaches the first height offset value is determined whether to report the measurement report.
  • the determination is The module 52 is specifically configured to determine whether to report a measurement report according to whether the geographical position value of the UE is within the first geographical position range.
  • the determination module 52 in a case where the measurement event configuration includes a second measurement location configuration, and the second measurement location configuration includes a first location value, and the first location value indicates a first area identifier, the determination module 52. Specifically used to determine whether to report a measurement report according to whether the second area identifier of the area where the UE is located is the same as the first area identifier.
  • the above determination module 52 which is specifically used to determine whether to report a measurement report according to whether the second cell identity of the cell where the UE is located is the same as the first cell identity.
  • the above determination module 52 Specifically used to determine whether to report the measurement report according to whether the second RNA information of the RNA corresponding to the UE is the same as the first RNA information.
  • the above determination module 52 Specifically used to determine whether to report the measurement report according to whether the second TA identifier of the TA corresponding to the UE is the same as the first TA identifier.
  • the above determination module 52 is specifically configured to determine whether the UE is in the second Whether the first moving distance in the preset time period reaches the first position offset value, it is determined whether to report the measurement report.
  • the above determination module 52 is specifically configured to determine whether to report the measurement report according to whether the speed value of the UE reaches the second measurement speed configuration.
  • the above-mentioned first measurement height configuration includes a second height threshold value and/or a third height offset value
  • the first measurement position configuration includes a second position value and/or a second position offset value.
  • Value where the third height offset value is the change threshold of the height of the UE in the third preset time period; the second position value is used to indicate at least one of the following: the second geographic location range, the third area identifier , The third cell identifier, the third RNA information, and the third TA identifier; the second location offset value is used by the UE to determine whether the location of the UE changes within the fourth preset time period and/or the change value of the location of the UE.
  • the above-mentioned determining module 52 is specifically configured to perform according to the height value of the UE. Whether the second altitude threshold is reached, determine whether to report the measurement report.
  • the above-mentioned determining module 52 is specifically configured to determine whether the UE is in the third Whether the fourth height offset value in the preset time period reaches the third height offset value, it is determined whether to report the measurement report.
  • the above determination module 52 in a case where the above-mentioned measurement configuration includes a first measurement position configuration, and the first measurement position configuration includes a second position value, and the second position value indicates a second geographic location range, the above determination module 52. Specifically used to determine whether to report a measurement report according to whether the geographic location value of the UE is within the second geographic location range.
  • the above determination module 52 Specifically used to determine whether to report a measurement report according to whether the fourth area identifier of the area where the UE is located is the same as the third area identifier.
  • the above determination module 52 which is specifically used to determine whether to report a measurement report according to whether the fourth cell identity of the cell where the UE is located is the same as the third cell identity.
  • the above determination module 52 It is specifically used to determine whether to report the measurement report according to whether the fourth RNA information of the RNA corresponding to the UE is the same as the third RNA information.
  • the above-mentioned determining module 52 Specifically used to determine whether to report a measurement report according to whether the fourth TA identifier of the TA corresponding to the UE is the same as the third TA identifier.
  • the above-mentioned determining module 52 is specifically configured to determine whether the UE is in the fourth Whether the second moving distance in the preset time period reaches the second position offset value, it is determined whether to report the measurement report.
  • the determination module 52 is specifically configured to determine whether to report the measurement report according to whether the speed value of the UE reaches the first measurement speed configuration.
  • the above-mentioned receiving module 51 is further configured to receive a first configuration sent by a network device.
  • the first configuration is used to indicate a measurement condition for the UE to perform a measurement.
  • the first configuration includes a measurement condition for the measurement condition. At least one of the following configurations: a third measurement height configuration, a third measurement position configuration, and a third measurement speed configuration.
  • the above-mentioned third measurement height configuration includes a third height threshold value and/or a fifth height offset value
  • the third measurement position configuration includes a third position value and/or a third position offset value.
  • the fifth height offset value is the change threshold of the height of the UE in the fifth preset time period
  • the third position value is used to indicate at least one of the following: the third geographic location range, the fifth area identifier , The fifth cell identifier, the fifth RNA information, and the fifth TA identifier
  • the third position offset value is used for the UE to determine whether the position of the UE changes and/or the change value of the position of the UE within the sixth preset time period.
  • the above-mentioned determining module 52 is further configured to , Before determining whether to report the measurement report, determine whether to perform the measurement according to whether the height value of the UE reaches the third height threshold.
  • the determination module 52 is further configured to , Before determining whether to report the measurement report, determine whether to perform the measurement according to whether the sixth height offset value of the UE in the fifth preset time period reaches the fifth height offset value.
  • the above determination The module 52 is further configured to determine whether to perform measurement according to whether the geographic location value of the UE is within the third geographic location range before determining whether to report the measurement report according to the measurement configuration.
  • the determination module 52 Before determining whether to report a measurement report according to the measurement configuration, determine whether to perform measurement according to whether the sixth area identifier of the area where the UE is located is the same as the fifth area identifier.
  • the determination module 52 Before determining whether to report a measurement report according to the measurement configuration, determine whether to perform measurement according to whether the sixth cell identity of the cell where the UE is located is the same as the fifth cell identity.
  • the determination module 52 Before determining whether to report a measurement report according to the measurement configuration, determine whether to perform measurement according to whether the sixth RNA information of the RNA corresponding to the UE is the same as the fifth RNA information.
  • the determination module 52 Before determining whether to report a measurement report according to the measurement configuration, determine whether to perform measurement according to whether the sixth TA identifier of the TA corresponding to the UE is the same as the fifth TA identifier.
  • the above-mentioned determining module 52 is further configured to , Before determining whether to report the measurement report, determine whether to perform the measurement according to whether the third movement distance of the UE in the sixth preset time period reaches the third position offset value.
  • the above-mentioned determining module 52 is further configured to determine whether to report a measurement report according to the measurement configuration, according to whether the speed value of the UE is The third measurement speed configuration is reached, and it is determined whether to perform a measurement.
  • the foregoing measurement report may include at least one of the following: actual measurement amount of the UE, height information of the UE, location information of the UE, and speed information of the UE.
  • the UE provided in the embodiments of the present application can implement the various processes implemented by the UE in the foregoing method embodiments. To avoid repetition, the specific description will not be repeated here.
  • An embodiment of the present application provides a UE, and the UE can determine whether to report a measurement report according to a measurement configuration configured by a network device (the measurement configuration is used to indicate a reporting condition of a measurement report of the UE). Since the UE can determine whether the report conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration configured by the network device, so as to determine whether to perform the measurement report. The measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • FIG. 6 shows a schematic diagram of a possible structure of a network device involved in an embodiment of the present application.
  • the network device 60 provided in the embodiment of the present application may include: a sending module 61.
  • the sending module 61 is configured to send a measurement configuration to the UE; where the measurement configuration is used to indicate the reporting condition of the UE's measurement report, and the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, first A measurement height configuration, a first measurement position configuration, and a first measurement speed configuration.
  • the measurement event configuration includes at least one of the following configurations for the corresponding measurement event: measurement quantity configuration, second measurement height configuration, second The measurement position configuration and the second measurement speed configuration.
  • the aforementioned measurement quantity configuration includes a first measurement quantity change value and a first measurement quantity threshold value
  • the second measurement height configuration includes a first height threshold value and/or a first height offset value.
  • the second measurement position configuration includes the first position value and/or the first position offset value; wherein the first height offset value is the change threshold of the height of the UE in the first preset time period; the first position The value is used to indicate at least one of the following: the first geographic location range, the first area identifier, the first cell identifier, the RNA information of the first access network notification area, and the first tracking area TA identifier; the first position offset value is used for The UE determines whether the location of the UE changes and/or the change value of the location of the UE within the second preset time period.
  • the above-mentioned first measurement height configuration includes a second height threshold value and/or a third height offset value
  • the first measurement position configuration includes a second position value and/or a second position offset value.
  • Value where the third height offset value is the change threshold of the height of the UE in the third preset time period; the second position value is used to indicate at least one of the following: the second geographic location range, the third area identifier , The third cell identifier, the third RNA information, and the third TA identifier; the second location offset value is used by the UE to determine whether the location of the UE changes within the fourth preset time period and/or the change value of the location of the UE.
  • the above-mentioned sending module 61 is further configured to send a first configuration to the UE, the first configuration is used to instruct the UE to perform measurement measurement conditions, and the first configuration includes at least the following for the measurement conditions: One configuration: the third measurement altitude configuration, the third measurement location configuration, and the third measurement speed configuration.
  • the above-mentioned third measurement height configuration includes a third height threshold value and/or a fifth height offset value
  • the third measurement position configuration includes a third position value and/or a third position offset value.
  • the fifth height offset value is the change threshold of the height of the UE in the fifth preset time period
  • the third position value is used to indicate at least one of the following: the third geographic location range, the fifth area identifier , The fifth cell identifier, the fifth RNA information, and the fifth TA identifier
  • the third position offset value is used for the UE to determine whether the position of the UE changes and/or the change value of the position of the UE within the sixth preset time period.
  • the network device provided by the embodiment of the present application can implement each process implemented by the network device in the foregoing method embodiment. To avoid repetition, the specific description will not be repeated here.
  • the embodiments of the present application provide a network device that can send a measurement configuration (the measurement configuration is used to indicate the reporting condition of the UE's measurement report) to the UE, so that the UE can determine whether to report the measurement report according to the measurement configuration. Since the UE can determine whether the reporting conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration sent by the network device, and thereby determine whether to perform the measurement report, rather than The measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • a measurement configuration the measurement configuration is used to indicate the reporting condition of the UE's measurement report
  • Fig. 7 shows a hardware schematic diagram of a UE provided by an embodiment of the present application.
  • the UE 110 includes but is not limited to: a radio frequency unit 111, a network module 112, an audio output unit 113, an input unit 114, a sensor 115, a display unit 116, a user input unit 117, an interface unit 118, a memory 119, The processor 120, and the power supply 121 and other components.
  • the structure of the UE shown in FIG. 7 does not constitute a limitation on the UE, and the UE may include more or less components than those shown in FIG. 7, or some components may be combined. Or different component arrangements.
  • the UE includes, but is not limited to, a mobile phone, a tablet computer, a notebook computer, a palmtop computer, a vehicle-mounted terminal, a wearable device, and a pedometer.
  • the radio frequency unit 111 is configured to receive a measurement configuration sent by a network device; wherein, the measurement configuration is used to indicate the reporting condition of the UE's measurement report, and the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration , The first measurement height configuration, the first measurement position configuration, and the first measurement speed configuration.
  • the processor 120 is configured to determine whether to report a measurement report according to the measurement configuration received by the radio frequency unit 111.
  • An embodiment of the present application provides a UE, and the UE can determine whether to report a measurement report according to a measurement configuration configured by a network device (the measurement configuration is used to indicate a reporting condition of a measurement report of the UE). Since the UE can determine whether the report conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration configured by the network device, so as to determine whether to perform the measurement report. The measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • the radio frequency unit 111 can be used for receiving and sending signals in the process of sending and receiving information or talking. Specifically, the downlink data from the base station is received and processed by the processor 120; in addition, Uplink data is sent to the base station.
  • the radio frequency unit 111 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the radio frequency unit 111 can also communicate with the network and other devices through a wireless communication system.
  • the UE provides users with wireless broadband Internet access through the network module 112, such as helping users to send and receive emails, browse web pages, and access streaming media.
  • the audio output unit 113 may convert the audio data received by the radio frequency unit 111 or the network module 112 or stored in the memory 119 into an audio signal and output it as sound. Moreover, the audio output unit 113 may also provide audio output related to a specific function performed by the UE 110 (for example, call signal reception sound, message reception sound, etc.).
  • the audio output unit 113 includes a speaker, a buzzer, a receiver, and the like.
  • the input unit 114 is used to receive audio or video signals.
  • the input unit 114 may include a graphics processing unit (GPU) 1141 and a microphone 1142.
  • the graphics processing unit 1141 is configured to monitor still pictures or video images obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode.
  • the data is processed.
  • the processed image frame can be displayed on the display unit 116.
  • the image frame processed by the graphics processor 1141 may be stored in the memory 119 (or other storage medium) or sent via the radio frequency unit 111 or the network module 112.
  • the microphone 1142 can receive sound, and can process such sound into audio data.
  • the processed audio data can be converted into a format that can be sent to the mobile communication base station via the radio frequency unit 111 for output in the case of a telephone call mode.
  • the UE 110 also includes at least one sensor 115, such as a light sensor, a motion sensor, and other sensors.
  • the light sensor includes an ambient light sensor and a proximity sensor.
  • the ambient light sensor can adjust the brightness of the display panel 1161 according to the brightness of the ambient light.
  • the proximity sensor can close the display panel 1161 and/or when the UE 110 moves to the ear. Or backlight.
  • the accelerometer sensor can detect the magnitude of acceleration in various directions (usually three-axis), and can detect the magnitude and direction of gravity when stationary, and can be used to identify UE posture (such as horizontal and vertical screen switching, related games, Magnetometer attitude calibration), vibration recognition related functions (such as pedometer, tap), etc.; sensor 115 can also include fingerprint sensors, pressure sensors, iris sensors, molecular sensors, gyroscopes, barometers, hygrometers, thermometers, infrared Sensors, etc., will not be repeated here.
  • the display unit 116 is used to display information input by the user or information provided to the user.
  • the display unit 116 may include a display panel 1161, and the display panel 1161 may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.
  • LCD liquid crystal display
  • OLED organic light-emitting diode
  • the user input unit 117 may be used to receive inputted numeric or character information, and generate key signal input related to user settings and function control of the UE.
  • the user input unit 117 includes a touch panel 1171 and other input devices 1172.
  • the touch panel 1171 also called a touch screen, can collect user touch operations on or near it (for example, the user uses any suitable objects or accessories such as fingers, stylus, etc.) on the touch panel 1171 or near the touch panel 1171. operating).
  • the touch panel 1171 may include two parts: a touch detection device and a touch controller.
  • the touch detection device detects the user's touch position, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into contact coordinates, and then sends it To the processor 120, the command sent by the processor 120 is received and executed.
  • the touch panel 1171 can be implemented in multiple types such as resistive, capacitive, infrared, and surface acoustic wave.
  • the user input unit 117 may also include other input devices 1172.
  • other input devices 1172 may include, but are not limited to, a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackball, mouse, and joystick, which will not be repeated here.
  • the touch panel 1171 can be overlaid on the display panel 1161.
  • the touch panel 1171 detects a touch operation on or near it, it transmits it to the processor 120 to determine the type of the touch event, and then the processor 120 responds to the touch
  • the type of event provides corresponding visual output on the display panel 1161.
  • the touch panel 1171 and the display panel 1161 are used as two independent components to implement the input and output functions of the UE, in some embodiments, the touch panel 1171 and the display panel 1161 can be integrated. Realize the input and output functions of the UE, which are not specifically limited here.
  • the interface unit 118 is an interface for connecting an external device with the UE 110.
  • the external device may include a wired or wireless headset port, an external power source (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, audio input/output (I/O) port, video I/O port, headphone port, etc.
  • the interface unit 118 can be used to receive input (for example, data information, power, etc.) from an external device and transmit the received input to one or more elements in the UE 110 or can be used to communicate between the UE 110 and the external device. Transfer data between.
  • the memory 119 can be used to store software programs and various data.
  • the memory 119 may mainly include a program storage area and a data storage area.
  • the program storage area may store an operating system, an application program required by at least one function (such as a sound playback function, an image playback function, etc.), etc.; Data created by the use of mobile phones (such as audio data, phone book, etc.), etc.
  • the memory 119 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.
  • the processor 120 is the control center of the UE. It uses various interfaces and lines to connect various parts of the entire UE. It executes by running or executing software programs and/or modules stored in the memory 119 and calling data stored in the memory 119. Various functions and processing data of the UE, so as to monitor the UE as a whole.
  • the processor 120 may include one or more processing units; optionally, the processor 120 may integrate an application processor and a modem processor, where the application processor mainly processes the operating system, user interface, and application programs, etc.
  • the adjustment processor mainly deals with wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 120.
  • the UE 110 may also include a power source 121 (such as a battery) for supplying power to various components.
  • a power source 121 such as a battery
  • the power source 121 may be logically connected to the processor 120 through a power management system, so as to manage charging, discharging, and power consumption management through the power management system. And other functions.
  • the UE 110 includes some functional modules that are not shown, which will not be repeated here.
  • an embodiment of the present application further provides a UE, including a processor 120 as shown in FIG. 7, a memory 119, a computer program stored in the memory 119 and running on the processor 120, the computer program When executed by the processor 120, each process of the foregoing method embodiment is realized, and the same technical effect can be achieved. To avoid repetition, details are not described herein again.
  • the embodiment of the present application also provides a computer-readable storage medium, the computer-readable storage medium stores a computer program, and when the computer program is executed by the processor 120 as shown in FIG. 7, each process of the foregoing method embodiment is implemented, And can achieve the same technical effect, in order to avoid repetition, I will not repeat them here.
  • the computer-readable storage medium such as read-only memory (ROM), random access memory (RAM), magnetic disk or optical disk, etc.
  • FIG. 8 shows a schematic diagram of hardware of a network device provided by an embodiment of the present application.
  • the network device 130 includes a processor 131, a transceiver 132, a memory 133, a user interface 134, and a bus interface 135.
  • the transceiver 132 is configured to send a measurement configuration to the UE; wherein the measurement configuration is used to indicate the reporting condition of the measurement report of the UE, and the measurement configuration includes at least one of the following configurations for the measurement report: measurement event configuration, first measurement Height configuration, first measurement position configuration, and first measurement speed configuration.
  • the embodiments of the present application provide a network device that can send a measurement configuration (the measurement configuration is used to indicate the reporting condition of the UE's measurement report) to the UE, so that the UE can determine whether to report the measurement report according to the measurement configuration. Since the UE can determine whether the reporting conditions of the measurement report are met according to the measurement event configuration, the first measurement height configuration, the first measurement location configuration, and/or the first measurement speed configuration sent by the network device, and thereby determine whether to perform the measurement report, rather than The measurement result obtained by the measurement is directly sent to the network device, so that the flexibility of the UE for measurement reporting can be improved.
  • a measurement configuration the measurement configuration is used to indicate the reporting condition of the UE's measurement report
  • the processor 131 may be responsible for managing the bus architecture and general processing, and the processor 131 may be used to read and execute programs in the memory 133 to implement processing functions and control the network device 130.
  • the memory 133 may store data used by the processor 131 when performing operations.
  • the processor 131 and the memory 133 may be integrated, or may be independently provided.
  • the network device 130 may further include: a computer program stored in the memory 133 and running on the processor 131, and when the computer program is executed by the processor 131, the steps of the method provided in the embodiment of the present application are implemented.
  • the bus architecture may include any number of interconnected buses and bridges. Specifically, one or more processors represented by the processor 131 and various circuits of the memory represented by the memory 133 are linked together.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, power management circuits, etc., which are all known in the art. Therefore, the embodiments of the present application will not further describe them.
  • the bus interface 135 provides an interface.
  • the transceiver 132 may be a plurality of elements, that is, including a transmitter and a receiver, and provide a unit for communicating with various other devices on the transmission medium.
  • the user interface 134 may also be an interface capable of connecting externally and internally with required equipment.
  • the connected equipment includes but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the embodiment of the present application also provides a computer-readable storage medium on which a computer program is stored, and when the computer program is executed by the processor 131 as shown in FIG. 8, each process of the foregoing method embodiment is implemented, And can achieve the same technical effect, in order to avoid repetition, I will not repeat them here.
  • the computer-readable storage medium such as ROM, RAM, magnetic disk or optical disk, etc.
  • the technical solution of this application essentially or the part that contributes to the related technology can be embodied in the form of a software product, and the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, optical disk) )
  • a storage medium such as ROM/RAM, magnetic disk, optical disk
  • a terminal which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.

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

Abstract

La présente invention concerne un procédé, un dispositif et un système de configuration de rapport de mesures. Le procédé comprend : la réception d'une configuration de mesure envoyée par un dispositif de réseau, la configuration de mesure étant utilisée pour indiquer une condition d'un rapport de mesures d'un UE, et la configuration de mesure comprenant au moins les configurations suivantes faites pour le rapport de mesures : une configuration d'un événement de mesure, une configuration d'une première hauteur de mesure, une configuration d'une première position de mesure et une configuration d'une première vitesse de mesure ; et le fait de déterminer, selon la configuration de mesure, s'il faut rapporter le rapport de mesures.
PCT/CN2020/120156 2019-10-11 2020-10-10 Procédé, dispositif et système de configuration de rapport de mesures WO2021068930A1 (fr)

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