WO2021258973A1 - Measurement report positioning method, electronic device, and storage medium - Google Patents

Measurement report positioning method, electronic device, and storage medium Download PDF

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Publication number
WO2021258973A1
WO2021258973A1 PCT/CN2021/096193 CN2021096193W WO2021258973A1 WO 2021258973 A1 WO2021258973 A1 WO 2021258973A1 CN 2021096193 W CN2021096193 W CN 2021096193W WO 2021258973 A1 WO2021258973 A1 WO 2021258973A1
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measurement report
cell
location information
positioning method
measurement
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PCT/CN2021/096193
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French (fr)
Chinese (zh)
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李益刚
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中兴通讯股份有限公司
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Publication of WO2021258973A1 publication Critical patent/WO2021258973A1/en

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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
    • H04W64/00Locating users or terminals or network equipment for network management purposes, e.g. mobility management

Definitions

  • This application relates to the field of communication technology, and in particular to a method for positioning measurement reports, electronic equipment, and storage media.
  • the technology of locating measurement report (MR) data is widely used in the field of network planning and network optimization. Users can use the positioning results of the measurement report to evaluate and analyze network coverage, quality, interference, capacity, and abnormal events, and formulate network planning and network optimization plans based on the results of the evaluation and analysis.
  • the measurement report is the main means for the network side to obtain terminal wireless information in the mobile communication system, and it mainly includes two parts: uplink measurement information and downlink measurement information.
  • the downlink measurement information is measured and collected by the terminal and reported to the base station through the Measurement Report signaling of the air interface, and the uplink measurement information is measured and collected by the base station.
  • Measurement reports are divided into event type and periodic type. Periodic measurement reports are usually used to evaluate the coverage, interference, quality, performance, traffic volume and other indicators of the network. Based on the evaluation results, they are applied to wireless network planning and network optimization. Work.
  • 5G network planning and network optimization have also put forward higher requirements for the positioning accuracy of 5G cell measurement reports.
  • the New Radio (NR) protocol of the 3rd Generation Partnership Project (3rd Generation Partnership Project, 3GPP) has not yet supported the location information reported by the User Equipment (UE), so currently It is impossible to accurately locate the measurement report of the 5G cell.
  • An embodiment of the present application provides a measurement report positioning method, including: determining second position information of a measurement report of a second cell according to first position information of a measurement report of a first cell, wherein the first position information passes Obtained by the UE in the dual connection state, and the UE is respectively connected to the first cell and the second cell in the dual connection state.
  • An embodiment of the present application also provides an electronic device, including: at least one processor; and, a memory communicatively connected with the at least one processor; wherein the memory stores the memory that can be executed by the at least one processor; The instructions are executed by the at least one processor, so that the at least one processor can execute the measurement report positioning method described above.
  • the embodiment of the present application also provides a computer-readable storage medium, which stores a computer program, and when the computer program is executed by a processor, realizes the measurement report positioning method described above.
  • FIG. 1 is a schematic flowchart of a measurement report positioning method provided by the first embodiment of the present application
  • FIG. 2 is a schematic flowchart of a measurement report positioning method provided by a second embodiment of the present application.
  • FIG. 3 is an example diagram of identifying the dual connection identifier in the measurement report positioning method provided by the second embodiment of the present application.
  • FIG. 4 is an example diagram of determining second location information in the measurement report positioning method provided by the second embodiment of the present application.
  • FIG. 5 is a schematic flowchart of a measurement report positioning method provided by the third embodiment of the present application.
  • FIG. 6 is an example diagram of selecting a measurement report of the first cell according to the first preset time range in the measurement report positioning method provided by the third embodiment of the present application;
  • FIG. 7 is a schematic flowchart of a measurement report positioning method provided by a fourth embodiment of the present application.
  • FIG. 8 is an exemplary diagram of determining second location information in the measurement report positioning method provided by the fourth embodiment of the present application.
  • FIG. 9 is a schematic structural diagram of an electronic device provided by a fifth embodiment of the present application.
  • the purpose of the embodiments of the present application is to provide a measurement report positioning method, electronic equipment, and storage medium, so that accurate positioning of the measurement report of a 5G cell can be achieved.
  • the first embodiment of the present application relates to a measurement report positioning method.
  • the second position information of the measurement report of the second cell is determined according to the first position information of the measurement report of the first cell.
  • the UE Under the UE, the UE is connected to the first cell and the second cell respectively in the dual connection state. Since the measurement report of the first cell (4G cell) reported by the UE in the dual connectivity state and the measurement report of the second cell (5G cell) are at the same location, the 5G cell measurement can be determined according to the location information of the 4G cell measurement report The reported position information, so as to realize the precise positioning of the measurement report of the 5G cell.
  • the execution subject of the measurement report positioning method provided in the embodiments of the present application may be a server, where the server may be implemented by a single server or a server cluster composed of multiple servers.
  • the measurement report positioning method provided in this application can be applied to non-stand alone networking (Non-Stand Alone, NSA), where NSA refers to the deployment of 5G networks using existing 4G infrastructure
  • NSA refers to the deployment of 5G networks using existing 4G infrastructure
  • a kind of network architecture based on the NSA architecture 5G carrier only carries user data, and its control signaling is still transmitted through the 4G network.
  • the measurement report positioning method provided in the embodiment of the present application can also be applied to other similar network architectures.
  • FIG. 1 The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 1, and specifically includes the following steps.
  • S101 Acquire first location information of a measurement report of a first cell, where the first location information is acquired by a UE in a dual connection state, and the UE is connected to the first cell and the second cell respectively in the dual connection state.
  • the first cell is a 4G cell
  • the second cell is a 5G cell.
  • a cell is a wireless logical area where users provide services, and the CellID is usually used on the system side to identify a unique cell under the same base station.
  • the 5G base station has priority to access the 4G core network. Therefore, in the NSA mode, the UE uses 4G as the dual connection state.
  • the master node Master Node, MN
  • 5G is the secondary node (Secondary Node, SN).
  • MN Master Node
  • SN Secondary Node
  • the UE may use 5G as the primary node (MN) and 4G as the secondary node (SN) in the subsequent dual-connection state, which will not affect the specific implementation of the measurement report positioning method in the embodiment of the present application.
  • a base station (Base Station), a public mobile communication base station, is a form of radio station, which refers to a radio transceiver station that transmits information between a mobile communication switching center and a mobile phone terminal in a certain radio coverage area.
  • NodeBID is usually used to identify different base stations under the same Radio Network Controller (RNC).
  • RNC Radio Network Controller
  • EnodeBID is usually used to identify different base stations of the same local network.
  • the MN Master Node
  • SN secondary node
  • adopts 5G cell as the secondary node of the user plane in the NSA network, which is mainly used to transmit service data with the UE.
  • a 4G cell refers to a cell of a certain 4G network
  • a 5G cell refers to a cell of a certain 5G network.
  • the actual network mode of the first cell and the second cell is not limited. It only needs to meet the requirements of the UE in the dual connection state. The conditions are fine.
  • the first cell and the second cell are cells in different network modes.
  • the first location information may specifically be Global Navigation Satellite System (GNSS) location information reported by the UE, or may be the type of location information reported by the UE, which is not specifically limited here.
  • GNSS location information when the UE accesses the network, if the UECapabilityInformation message reported by the UE is identified as standaloneGNSS-Location-r10supported in the UE-BasedNetwPerfMeasParameters-r10 structure, it means that the UE supports GNSS location information reporting.
  • the base station can request the UE to carry the GNSS location information in the measurement report (MR) by sending the RRCConnectionReconfiguration message configured as includeLocationInfo-r10true in the measConfig.
  • MR measurement report
  • the method for the UE to report GNSS information is described in the 3GPP TS36.331 and 36.355 protocols.
  • S102 Determine the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell.
  • determining the second location information of the measurement report of the second cell based on the first location information of the measurement report of the first cell may be directly using the first location information as the second location information, or it may be based on the first location information. After a certain amount of position information is corrected, the second position information is obtained according to the corrected first position information.
  • the first cell with the same or similar generation time point may be selected within the time range when the UE is in the dual connectivity state.
  • the measurement report of the second cell and the measurement report of the second cell, and then the second location information of the measurement report of the second cell is determined according to the selected measurement report of the first cell.
  • the measurement report of the first cell that is the same as the timestamp or within a certain time range can be selected according to the time stamp of the measurement report of the second cell, and then determined according to the first location information of the measurement report of the selected first cell
  • the second location information of the measurement report of the second cell can be set according to actual needs, which is not specifically limited in the embodiment of the present application.
  • the measurement report positioning method obtaineds the first location information of the measurement report of the first cell, and determines the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell.
  • the first location information is obtained by the UE in the dual connection state, and the UE is connected to the first cell and the second cell respectively in the dual connection state.
  • the position information of the measurement report of the 5G cell can be determined according to the position information of the measurement report of the 4G cell, so as to achieve precise positioning of the measurement report of the 5G cell.
  • the second embodiment of the present application relates to a measurement report positioning method.
  • the second embodiment is roughly the same as the first embodiment.
  • the main difference is that: in the embodiment of the present application, the measurement report of the first cell Before the information determines the second location information of the measurement report of the second cell, it further includes: the dual connectivity identifier that identifies the measurement report of the first cell and the measurement report of the second cell the same; and the first cell based on the measurement report of the first cell
  • the location information determines the second location information of the measurement report of the second cell, which includes: filtering out the measurement report of the first cell whose dual connectivity identifier is the same as the measurement report of the second cell as the first measurement report.
  • the first location information determines the second location information of the measurement report of the second cell.
  • the measurement report of the first cell and the measurement report of the second cell By combining the measurement report of the first cell and the measurement report of the second cell with the same dual connectivity identifier, it is convenient to distinguish the measurement report of the first cell and the measurement report of the second cell reported by the UE in the dual connectivity state;
  • the measurement report of the first cell with the same dual connectivity identifier as the measurement report of the second cell, and the second location information of the second cell is determined based on the screened measurement report, then the measurement report and the second cell of the first cell at the same location can be determined The measurement report of the cell, thereby realizing the positioning of the measurement report of the second cell.
  • FIG. 2 The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 2, and specifically includes the following steps.
  • S201 A dual connection identifier with the same identifier of the measurement report of the first cell and the measurement report of the second cell.
  • FIG. 3 is an example diagram of identifying a dual-connection identifier in a measurement report positioning method provided in an embodiment of this application.
  • Figure 3 takes the first cell as a 4G cell and the second cell as a 5G cell as an example.
  • the UE is connected to the 4G network as the master node (MN) and connected to the 5G network as the secondary node (SN), and the reported 4G
  • the measurement report of the cell is LTE MR
  • the reported measurement report of the 5G cell is NR MR
  • the TimeStamp in MR is the timestamp of MR
  • the EN-DC ID is the dual-connection identification.
  • the MN cell where the UE is located recognizes the occurrence of the UE.
  • the MR set of the MN cell and the MR set of the SN cell corresponding to the dual connectivity instance of the UE are identified with the same dual connectivity identification number, as shown in Figure 3, respectively on the LTE MR and NR MR identifiers
  • the same dual connection identifier "EN-DC ID 1".
  • NR MR is identified through the X2 interface according to the dual-connection identification of LTE MR. In actual applications, only the measurement report of the first cell and the measurement report of the second cell have the same dual-connection identification. Limited to the way shown in Figure 3.
  • the first cell or the second cell that the UE is actually connected to may change during the movement, in order to ensure that the measurement reports of the cells connected to the UE in the current dual-connection state all have the same dual-connection identification , It is convenient to locate the measurement report according to the same dual-connection identifier.
  • the measurement report of the first cell and the measurement report of the second cell have the same dual-connection identifier, it also includes: When a cell or a second cell is handed over, the dual-connection identification is transferred to the measurement report of the handover cell.
  • the dual connectivity identifier of the measurement report of the cell before the handover is transferred to the measurement report of the cell after the handover. For example, if a handover occurs in the first cell, the dual connection identifier of the measurement report of the first cell before the handover is transferred to the measurement report of the first cell after the handover.
  • the dual-connected identity corresponding to each UE should have a global Uniqueness, where the preset time can be set according to actual needs, for example, 3 days or more.
  • S202 Screen the measurement report of the first cell with the same dual connectivity identifier as the measurement report of the second cell as the first measurement report.
  • S203 Determine the second location information of the measurement report of the second cell according to the first location information of the first measurement report.
  • FIG. 4 is an example diagram of determining the second location information in the measurement report positioning method provided by the embodiment of the application.
  • GNSS location information (GNSS Location) is acquired from the first measurement report (MN MR), and the acquired GNSS location information is filled in the measurement report (SN MR) of the second cell.
  • S202 may also be: screening the measurement report of the second cell with the same dual connectivity identifier as the measurement report of the first cell as the second measurement report; correspondingly, S203 may be: according to the measurement report of the first cell The measurement report determines the second location information of the second measurement report.
  • the measurement report of the first cell and the measurement report of the second cell are identified by the same dual connectivity identifier, so that it is convenient to distinguish the measurement report of the first cell reported by the UE in the dual connectivity state.
  • the measurement report of the second cell; and the measurement report of the first cell with the same dual connectivity identifier as the measurement report of the second cell is screened out, and the second location information of the second cell is determined based on the screened measurement report, then it can be determined that they are in the same Position the measurement report of the first cell and the measurement report of the second cell, thereby realizing the positioning of the measurement report of the second cell.
  • the third embodiment of the present application relates to a measurement report positioning method.
  • the third embodiment is roughly the same as the first embodiment.
  • the main difference is that: in the embodiment of the present application, the first location information of the measurement report of the first cell is Determining the second location information of the measurement report of the second cell may specifically be: determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell within the first preset time range, It may include: determining whether there is a measurement report of the first cell within the first preset time range, and if there is a measurement report of the first cell, determining the measurement report of the second cell according to the first location information of the measurement report of the first cell The second location information.
  • the location information of the measurement report of the second cell is determined according to the location information of the measurement report of the first cell within the first preset time range. By setting the first preset time range reasonably, the location information of the second cell to be determined can be selected.
  • FIG. 5 The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 5, which specifically includes the following steps.
  • S301 Determine whether there is a measurement report of the first cell within the first preset time range.
  • the first preset time range can be set according to actual needs.
  • the first preset time range is determined according to the measurement period of the measurement report of the second cell. For example, if the measurement period of the measurement report of the second cell is Psn, and the generation time of the measurement report of the second cell that needs to be located is Tsn, the first preset time range can be set to be between Tsn-1/2*Psn and Tsn. +1/2*Psn, an example diagram of selecting the measurement report of the first cell according to the first preset time range is shown in FIG. 6. In Fig.
  • the first location information of the measurement report in the range is determined to be in the second cell
  • the second location information of the measurement report whose generation time is Tsn.
  • one of the measurement reports of the first cell can be randomly selected to determine the second cell measurement report.
  • the measurement report whose generation time is closest to the generation time of the measurement report of the second cell can also be selected to determine the second location information of the measurement report of the second cell. For example, in the above example, if the generation time of the measurement report of the first cell is Tmn, the measurement report of the first cell with the smallest
  • the measurement report positioning method determines the position information of the measurement report of the second cell according to the position information of the measurement report of the first cell within the first preset time range, and sets the first preset time range reasonably .
  • the measurement report of the first cell that is the same or similar to the generation time of the measurement report of the second cell to be determined can be selected for positioning, so as to effectively realize the positioning of the measurement report of the second cell.
  • the fourth embodiment of the present application relates to a measurement report positioning method.
  • the fourth embodiment is roughly the same as the first embodiment.
  • the main difference is: in the embodiment of the present application, the first location information of the measurement report of the first cell is Determining the second location information of the measurement report of the second cell may specifically be: determining the second location information of the measurement report of the second cell within the second preset time range according to the first location information of the measurement report of the first cell, It may include: pushing the measurement report of the first cell to the second cell, and using the time when the second cell receives the pushed measurement report or the generation time of the pushed measurement report as the first time point, and from the first time point according to the first time point.
  • the third measurement report and the fourth measurement report are determined in the measurement report generated by the second cell.
  • the third measurement report is regarded as the second measurement report.
  • the measurement report of the cell within the second preset time range, and the second location information of the third measurement report is determined according to the first location information; if the time difference between the generation time of the fourth measurement report and the generation time of the pushed measurement report is less than the preset time If the duration is set, the fourth measurement report is used as the measurement report of the second cell within the second preset time range, and the second location information of the fourth measurement report is determined according to the first location information.
  • the measurement report of the second cell that is closest to the generation time of the pushed measurement report can be determined, and the first location information of the pushed measurement report can be determined.
  • the second location information of the measurement report of the second cell is determined to realize the positioning of the measurement report of the second cell.
  • the specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 7, and specifically includes the following steps.
  • S401 Push the measurement report of the first cell to the second cell, and use the time when the second cell receives the pushed measurement report or the generation time of the pushed measurement report as the first time point.
  • pushing the measurement report of the first cell to the second cell is to push one of the measurement reports of the first cell to the second cell.
  • the specific generation time of the pushed measurement report is not limited, and it may be the latest generation.
  • the measurement report can also be a measurement report generated at any point in time.
  • the time when the second cell receives the pushed measurement report is different from the generation time of the pushed measurement report.
  • S402 Determine a third measurement report and a fourth measurement report from the measurement report generated by the second cell according to the first time point, where the third measurement report is generated by the second cell in a period before the first time point.
  • the latest measurement report, the fourth report is the first measurement report generated by the second cell in the period after the first time point.
  • the preset duration can be set according to actual needs, and there is no specific limitation here.
  • the preset duration is half of the measurement period of the measurement report of the second cell. It is understandable that whether the third measurement report is a measurement report within the second preset time range is determined by the preset duration, which means that the second preset time range is determined according to the preset duration. Therefore, the second preset The time range can also be determined according to the measurement period of the measurement report of the second cell. By reasonably setting the second preset time range, the measurement reports of the second cell that are at the same or similar time as the pushed measurement report can be determined, so that these measurement reports can be located according to the location information of the pushed measurement report.
  • the generation time for example, a timestamp
  • the generation time of the pushed measurement report is between the generation time of the third measurement report and the generation time of the fourth measurement report.
  • the preset time length that the measurement report of the second cell in the second preset time range is essentially judged whether the generation time of the pushed measurement report is closer to the generation time of the third measurement report, or the generation of the pushed measurement report The time is closer to the generation time of the fourth measurement report, so the pushed measurement report determines the measurement report of the second cell whose generation time is closer.
  • the judgment logic is basically the same as the above.
  • the difference is that due to the network delay, the third measurement report and the fourth measurement report may appear.
  • the time difference between the report generation time and the pushed measurement report does not satisfy the condition of being less than or equal to the preset duration. At this time, for example, the positioning operation of the measurement report of the second cell may not be performed.
  • the third measurement report and/or the fourth measurement report can be selected as the second cell in the For the measurement report within the second preset time range, the second position information of the third measurement report and/or the fourth measurement report is determined according to the first position information of the pushed measurement report.
  • the generation time of the third measurement report is Tcurrent
  • the generation time of the fourth measurement report is Tnew
  • the generation time of the pushed measurement report is Tmn
  • Positioning as shown in Figure 8. In one embodiment, if Tmn-Tcurrent and Tnew-Tmn are both greater than 1/2*Psn, indicating that the pushed measurement report has expired, the positioning of the measurement report of the second cell is not performed.
  • the measurement report positioning method provided by the embodiment of the present application, by comparing the time difference between the third measurement report, the fourth measurement report and the pushed measurement report, the measurement report of the second cell that is closest to the generation time of the pushed measurement report can be determined. Therefore, the second location information of the measurement report of the second cell is determined according to the first location information of the pushed measurement report, and the positioning of the measurement report of the second cell is realized.
  • the fifth embodiment of the present application relates to an electronic device. As shown in FIG. 9, it includes: at least one processor 501; and a memory 502 communicatively connected with the at least one processor 501; An instruction executed by one processor 501 is executed by at least one processor 501, so that the at least one processor 501 can execute the foregoing measurement report positioning method.
  • the memory and the processor are connected in a bus mode
  • the bus may include any number of interconnected buses and bridges, and the bus connects one or more processors and various circuits of the memory together.
  • the bus can also connect various other circuits such as peripheral devices, voltage regulators, power management circuits, etc., which are all known in the art, and therefore, will not be further described herein.
  • the bus interface provides an interface between the bus and the transceiver.
  • the transceiver may be one element or multiple elements, such as multiple receivers and transmitters, providing a unit for communicating with various other devices on the transmission medium.
  • the data processed by the processor is transmitted on the wireless medium through the antenna, and further, the antenna also receives the data and transmits the data to the processor.
  • the processor is responsible for managing the bus and general processing, and can also provide various functions, including timing, peripheral interfaces, voltage regulation, power management, and other control functions.
  • the memory can be used to store data used by the processor when performing operations.
  • the sixth embodiment of the present application relates to a computer-readable storage medium, which stores a computer program.
  • the computer program is executed by the processor, the above method embodiment is realized.
  • the program is stored in a storage medium and includes several instructions to enable a device ( It may be a single-chip microcomputer, a chip, etc.) or a processor (processor) that executes all or part of the steps of the methods described in the embodiments of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other media that can store program code .

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Abstract

The embodiments of the present application relate to the technical field of communications. Disclosed is a measurement report positioning method. The method comprises: determining second location information of a measurement report of a second cell according to first location information of a measurement report of a first cell, wherein the first location information is acquired by a UE in a dual-connectivity state, and the UE is respectively connected to the first cell and the second cell in the dual-connectivity state.

Description

测量报告定位方法、电子设备及存储介质Measurement report positioning method, electronic equipment and storage medium
交叉引用cross reference
本申请基于申请号为“202010590810.2”、申请日为2020年06月24日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此以引入方式并入本申请。This application is filed based on the Chinese patent application with the application number "202010590810.2" and the application date on June 24, 2020, and claims the priority of the Chinese patent application. The entire content of the Chinese patent application is hereby incorporated into this by way of introduction. Apply.
技术领域Technical field
本申请涉及通信技术领域,特别涉及一种测量报告定位方法、电子设备及存储介质。This application relates to the field of communication technology, and in particular to a method for positioning measurement reports, electronic equipment, and storage media.
背景技术Background technique
在移动通信网络中,对测量报告(Measurement Report,MR)数据进行定位的技术,广泛运用于网络规划和网络优化领域。用户可以利用测量报告的定位结果进行网络覆盖、质量、干扰、容量、异常事件的评估和分析,并根据评估和分析的结果制定网络规划和网络优化方案。其中,测量报告是在移动通信系统中网络侧获得终端无线信息的主要手段,主要包含两个部分:上行测量信息以及下行测量信息。其中下行测量信息由终端测量采集并通过空口的Measurement Report信令上报给基站,上行测量信息由基站测量并采集。测量报告又分为事件型和周期型,其中周期型测量报告通常用于评估网络的覆盖、干扰、质量、性能、业务量等指标,并以评估结果为基础,应用于无线网络规划和网络优化工作。In mobile communication networks, the technology of locating measurement report (MR) data is widely used in the field of network planning and network optimization. Users can use the positioning results of the measurement report to evaluate and analyze network coverage, quality, interference, capacity, and abnormal events, and formulate network planning and network optimization plans based on the results of the evaluation and analysis. Among them, the measurement report is the main means for the network side to obtain terminal wireless information in the mobile communication system, and it mainly includes two parts: uplink measurement information and downlink measurement information. The downlink measurement information is measured and collected by the terminal and reported to the base station through the Measurement Report signaling of the air interface, and the uplink measurement information is measured and collected by the base station. Measurement reports are divided into event type and periodic type. Periodic measurement reports are usually used to evaluate the coverage, interference, quality, performance, traffic volume and other indicators of the network. Based on the evaluation results, they are applied to wireless network planning and network optimization. Work.
随着5G网络的大规模建设,5G网络规划和网络优化领域对5G小区的测量报告的定位精度也提出了更高的要求。With the large-scale construction of 5G networks, 5G network planning and network optimization have also put forward higher requirements for the positioning accuracy of 5G cell measurement reports.
然而,在当前网络环境下,由于第三代合作伙伴计划(3rd Generation Partnership Project,3GPP)的新空口(New Radio,NR)协议尚未支持用户设 备(User Equipment,UE)上报的位置信息,因此目前无法实现对5G小区的测量报告进行精确的定位。However, in the current network environment, the New Radio (NR) protocol of the 3rd Generation Partnership Project (3rd Generation Partnership Project, 3GPP) has not yet supported the location information reported by the User Equipment (UE), so currently It is impossible to accurately locate the measurement report of the 5G cell.
发明内容Summary of the invention
本申请的实施例提供了一种测量报告定位方法,包括:根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,其中,所述第一位置信息通过双连接状态下的UE获取,所述UE在所述双连接状态下分别连接所述第一小区和所述第二小区。An embodiment of the present application provides a measurement report positioning method, including: determining second position information of a measurement report of a second cell according to first position information of a measurement report of a first cell, wherein the first position information passes Obtained by the UE in the dual connection state, and the UE is respectively connected to the first cell and the second cell in the dual connection state.
本申请的实施例还提供了一种电子设备,包括:至少一个处理器;以及,与所述至少一个处理器通信连接的存储器;其中,所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行上述的测量报告定位方法。An embodiment of the present application also provides an electronic device, including: at least one processor; and, a memory communicatively connected with the at least one processor; wherein the memory stores the memory that can be executed by the at least one processor; The instructions are executed by the at least one processor, so that the at least one processor can execute the measurement report positioning method described above.
本申请的实施例还提供了一种计算机可读存储介质,存储有计算机程序,所述计算机程序被处理器执行时实现上述的测量报告定位方法。The embodiment of the present application also provides a computer-readable storage medium, which stores a computer program, and when the computer program is executed by a processor, realizes the measurement report positioning method described above.
附图说明Description of the drawings
一个或多个实施例通过与之对应的附图中的图片进行示例性说明,这些示例性说明并不构成对实施例的限定。One or more embodiments are exemplified by the pictures in the corresponding drawings, and these exemplified descriptions do not constitute a limitation on the embodiments.
图1是本申请第一实施例提供的测量报告定位方法的流程示意图;FIG. 1 is a schematic flowchart of a measurement report positioning method provided by the first embodiment of the present application;
图2是本申请第二实施例提供的测量报告定位方法的流程示意图;2 is a schematic flowchart of a measurement report positioning method provided by a second embodiment of the present application;
图3是本申请第二实施例提供的测量报告定位方法中标识双连接标识的示例图;FIG. 3 is an example diagram of identifying the dual connection identifier in the measurement report positioning method provided by the second embodiment of the present application; FIG.
图4是本申请第二实施例提供的测量报告定位方法中确定第二位置信息的示例图;4 is an example diagram of determining second location information in the measurement report positioning method provided by the second embodiment of the present application;
图5是本申请第三实施例提供的测量报告定位方法的流程示意图;5 is a schematic flowchart of a measurement report positioning method provided by the third embodiment of the present application;
图6是本申请第三实施例提供的测量报告定位方法中根据第一预设时间范围选取第一小区的测量报告的示例图;6 is an example diagram of selecting a measurement report of the first cell according to the first preset time range in the measurement report positioning method provided by the third embodiment of the present application;
图7是本申请第四实施例提供的测量报告定位方法的流程示意图;FIG. 7 is a schematic flowchart of a measurement report positioning method provided by a fourth embodiment of the present application;
图8是本申请第四实施例提供的测量报告定位方法中确定第二位置信息的 示例图;FIG. 8 is an exemplary diagram of determining second location information in the measurement report positioning method provided by the fourth embodiment of the present application; FIG.
图9是本申请第五实施例提供的电子设备的结构示意图。FIG. 9 is a schematic structural diagram of an electronic device provided by a fifth embodiment of the present application.
具体实施方式detailed description
为使本申请实施例的目的、技术方案和优点更加清楚,下面将结合附图对本申请的各实施例进行详细的阐述。然而,本领域的普通技术人员可以理解,在本申请各实施例中,为了使读者更好地理解本申请而提出了许多技术细节。但是,即使没有这些技术细节和基于以下各实施例的种种变化和修改,也可以实现本申请所要求保护的技术方案。以下各个实施例的划分是为了描述方便,不应对本申请的具体实现方式构成任何限定,各个实施例在不矛盾的前提下可以相互结合相互引用。In order to make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the various embodiments of the present application will be described in detail below in conjunction with the accompanying drawings. However, a person of ordinary skill in the art can understand that in each embodiment of the present application, many technical details are proposed for the reader to better understand the present application. However, even without these technical details and various changes and modifications based on the following embodiments, the technical solution claimed in this application can be realized. The following division of the various embodiments is for convenience of description, and should not constitute any limitation on the specific implementation manner of the present application, and the various embodiments may be combined with each other without contradiction.
本申请实施例的目的在于提供一种测量报告定位方法、电子设备及存储介质,使得可以实现对5G小区的测量报告进行精确的定位。The purpose of the embodiments of the present application is to provide a measurement report positioning method, electronic equipment, and storage medium, so that accurate positioning of the measurement report of a 5G cell can be achieved.
本申请的第一实施例涉及一种测量报告定位方法,根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,其中,第一位置信息通过双连接状态下的UE获取,UE在双连接状态下分别连接第一小区和第二小区。由于在双连接状态下的UE上报的第一小区(4G小区)的测量报告与第二小区(5G小区)的测量报告处于同一位置,因此,可以根据4G小区测量报告的位置信息确定5G小区测量报告的位置信息,从而实现对5G小区的测量报告的精确定位。The first embodiment of the present application relates to a measurement report positioning method. The second position information of the measurement report of the second cell is determined according to the first position information of the measurement report of the first cell. Under the UE, the UE is connected to the first cell and the second cell respectively in the dual connection state. Since the measurement report of the first cell (4G cell) reported by the UE in the dual connectivity state and the measurement report of the second cell (5G cell) are at the same location, the 5G cell measurement can be determined according to the location information of the 4G cell measurement report The reported position information, so as to realize the precise positioning of the measurement report of the 5G cell.
应当说明的是,本申请实施例提供的测量报告定位方法的执行主体可以为服务端,其中,服务端可由单独的服务器或多个服务器组成的服务器集群来实现。在一个实施例中,本申请提供的测量报告定位方法可以应用于非独立组网(Non-Stand Alone,NSA)中,其中,NSA指的是使用现有的4G基础设施,进行5G网络的部署的一种网络架构,基于NSA架构的5G载波仅承载用户数据,其控制信令仍通过4G网络传输。当然,本申请实施例提供的测量报告定位方法还可以应用于其它类似的网络架构中。It should be noted that the execution subject of the measurement report positioning method provided in the embodiments of the present application may be a server, where the server may be implemented by a single server or a server cluster composed of multiple servers. In one embodiment, the measurement report positioning method provided in this application can be applied to non-stand alone networking (Non-Stand Alone, NSA), where NSA refers to the deployment of 5G networks using existing 4G infrastructure A kind of network architecture, based on the NSA architecture 5G carrier only carries user data, and its control signaling is still transmitted through the 4G network. Of course, the measurement report positioning method provided in the embodiment of the present application can also be applied to other similar network architectures.
本申请实施例提供的测量报告定位方法的具体流程如图1所示,具体包括以下步骤。The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 1, and specifically includes the following steps.
S101:获取第一小区的测量报告的第一位置信息,其中,第一位置信息通过双连接状态下的UE获取,UE在双连接状态下分别连接第一小区和第二小区。S101: Acquire first location information of a measurement report of a first cell, where the first location information is acquired by a UE in a dual connection state, and the UE is connected to the first cell and the second cell respectively in the dual connection state.
在一个具体的例子中,第一小区为4G小区,第二小区为5G小区。其中,小区(Cell)为用户提供服务的无线逻辑区域,在系统侧通常用CellID标识同一基站下的唯一小区。In a specific example, the first cell is a 4G cell, and the second cell is a 5G cell. Among them, a cell (Cell) is a wireless logical area where users provide services, and the CellID is usually used on the system side to identify a unique cell under the same base station.
在一些NSA组网模式下,由于5G核心网的成本较高和成熟度不如4G的问题,5G基站优先接入4G核心网,因此,在NSA模式下,UE在双连接状态下是以4G为主节点(Master Node,MN),5G为辅节点(Secondary Node,SN)。当然,随着网络的发展,UE后续在双连接状态下可能以5G为主节点(MN),4G为辅节点(SN),这些不会影响本申请实施例的测量报告定位方法的具体实现。其中,基站(Base Station)即公用移动通信基站是无线电台站的一种形式,是指在一定的无线电覆盖区中,通过移动通信交换中心与移动电话终端之间进行信息传递的无线电收发信电台。在宽带码分多址(Wideband Code Division Multiple Access,WCDMA)网络中,通常用NodeBID标识相同无线网络控制器(Radio Network Controller,RNC)下的不同基站,在长期演进(Long Time Evolution,LTE)网络中,通常用EnodeBID标识相同本地网的不同基站。MN(主节点)在NSA网络中采用4G小区作为控制面的锚点,主要用于和UE进行信令的交互。SN(辅节点)在NSA网络中采用5G小区作为用户面的辅节点,主要用于和UE进行业务数据的传输。In some NSA networking modes, due to the high cost and maturity of the 5G core network, the 5G base station has priority to access the 4G core network. Therefore, in the NSA mode, the UE uses 4G as the dual connection state. The master node (Master Node, MN), 5G is the secondary node (Secondary Node, SN). Of course, with the development of the network, the UE may use 5G as the primary node (MN) and 4G as the secondary node (SN) in the subsequent dual-connection state, which will not affect the specific implementation of the measurement report positioning method in the embodiment of the present application. Among them, a base station (Base Station), a public mobile communication base station, is a form of radio station, which refers to a radio transceiver station that transmits information between a mobile communication switching center and a mobile phone terminal in a certain radio coverage area. . In Wideband Code Division Multiple Access (WCDMA) networks, NodeBID is usually used to identify different base stations under the same Radio Network Controller (RNC). In the Long Time Evolution (LTE) network , Usually use EnodeBID to identify different base stations of the same local network. The MN (Master Node) uses a 4G cell as the anchor point of the control plane in the NSA network, which is mainly used for signaling interaction with the UE. SN (secondary node) adopts 5G cell as the secondary node of the user plane in the NSA network, which is mainly used to transmit service data with the UE.
可以理解的是,4G小区是指某个4G网络的小区,而5G小区是指某个5G网络的小区。另外,由于第一小区和第二小区为UE在双连接状态下连接的小区,因此第一小区和第二小区的实际网络模式并不限定,只需要满足由UE在双连接状态下分别连接的条件即可。在目前的网络架构中,第一小区和第二小区为不同网络模式下的小区。It is understandable that a 4G cell refers to a cell of a certain 4G network, and a 5G cell refers to a cell of a certain 5G network. In addition, since the first cell and the second cell are the cells connected by the UE in the dual connection state, the actual network mode of the first cell and the second cell is not limited. It only needs to meet the requirements of the UE in the dual connection state. The conditions are fine. In the current network architecture, the first cell and the second cell are cells in different network modes.
在一个实施例中,第一位置信息具体可以为UE上报的全球导航卫星系统(Global Navigation Satellite System,GNSS)位置信息,亦可以为UE上报种类的位置信息,此处不做具体限制。以GNSS位置信息为例,当UE接入网络时,若UE上报的UECapabilityInformation消息中,在UE-BasedNetwPerfMeasParameters-r10结构体中标识为 standaloneGNSS-Location-r10supported,则说明UE支持GNSS位置信息上报。基站可以通过下发measConfig中配置为:includeLocationInfo-r10true的RRCConnectionReconfiguration消息来要求UE在测量报告(MR)中携带GNSS位置信息。其中,UE上报GNSS信息的方法在3GPP TS36.331、36.355协议中进行了描述。In an embodiment, the first location information may specifically be Global Navigation Satellite System (GNSS) location information reported by the UE, or may be the type of location information reported by the UE, which is not specifically limited here. Taking GNSS location information as an example, when the UE accesses the network, if the UECapabilityInformation message reported by the UE is identified as standaloneGNSS-Location-r10supported in the UE-BasedNetwPerfMeasParameters-r10 structure, it means that the UE supports GNSS location information reporting. The base station can request the UE to carry the GNSS location information in the measurement report (MR) by sending the RRCConnectionReconfiguration message configured as includeLocationInfo-r10true in the measConfig. Among them, the method for the UE to report GNSS information is described in the 3GPP TS36.331 and 36.355 protocols.
S102:根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。S102: Determine the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell.
在一个实施例中,根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,可以是将第一位置信息直接作为第二位置信息,亦可以是根据第一位置信息进行一定的修正后,再根据修正后的第一位置信息得到第二位置信息。In an embodiment, determining the second location information of the measurement report of the second cell based on the first location information of the measurement report of the first cell may be directly using the first location information as the second location information, or it may be based on the first location information. After a certain amount of position information is corrected, the second position information is obtained according to the corrected first position information.
可以理解的是,第一小区的测量报告和第二小区的测量报告可以是多个,例如测量报告是按周期生成的情况下。在根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息时,可以是在UE处于双连接状态的时间范围内选取生成时间点相同或相近的第一小区的测量报告和第二小区的测量报告,再根据选取的第一小区的测量报告确定第二小区的测量报告的第二位置信息。例如,可以根据第二小区的测量报告的时间戳选取与该时间戳相同或在一定的时间范围内的第一小区的测量报告,再根据选取的第一小区的测量报告的第一位置信息确定该第二小区的测量报告的第二位置信息。具体确定的方式可以根据实际需要进行设置,本申请实施例对此不做具体限制。It is understandable that there may be multiple measurement reports for the first cell and measurement reports for the second cell, for example, when the measurement reports are generated periodically. When determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell, the first cell with the same or similar generation time point may be selected within the time range when the UE is in the dual connectivity state. The measurement report of the second cell and the measurement report of the second cell, and then the second location information of the measurement report of the second cell is determined according to the selected measurement report of the first cell. For example, the measurement report of the first cell that is the same as the timestamp or within a certain time range can be selected according to the time stamp of the measurement report of the second cell, and then determined according to the first location information of the measurement report of the selected first cell The second location information of the measurement report of the second cell. The specific determination method can be set according to actual needs, which is not specifically limited in the embodiment of the present application.
本申请实施例提供的测量报告定位方法,通过获取第一小区的测量报告的第一位置信息,根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,其中,第一位置信息通过双连接状态下的UE获取,UE在双连接状态下分别连接第一小区和第二小区。由于在双连接状态下的UE会上报4G小区(第一小区)的测量报告和5G小区(第二小区)的测量报告,而上报的4G小区的测量报告的位置与5G小区的测量报告的位置相同,因此可以根据4G小区的测量报告的位置信息确定5G小区的测量报告的位置信息,从而实现对5G小区的测量报告的精确定位。The measurement report positioning method provided by the embodiment of the present application obtains the first location information of the measurement report of the first cell, and determines the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell. Wherein, the first location information is obtained by the UE in the dual connection state, and the UE is connected to the first cell and the second cell respectively in the dual connection state. Because the UE in the dual connectivity state will report the measurement report of the 4G cell (first cell) and the measurement report of the 5G cell (second cell), and the reported position of the measurement report of the 4G cell and the position of the measurement report of the 5G cell The same, therefore, the position information of the measurement report of the 5G cell can be determined according to the position information of the measurement report of the 4G cell, so as to achieve precise positioning of the measurement report of the 5G cell.
本申请的第二实施例涉及一种测量报告定位方法,第二实施例与第一实施 例大致相同,主要区别在于:在本申请实施例中,在根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息之前,还包括:将第一小区的测量报告和第二小区的测量报告标识相同的双连接标识;而根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,则包括:筛选出双连接标识与第二小区的测量报告相同的第一小区的测量报告作为第一测量报告,根据第一测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。通过将第一小区的测量报告和第二小区的测量报告标识相同的双连接标识,可以方便区分处于双连接状态下UE上报的第一小区的测量报告和第二小区的测量报告;而筛选出双连接标识与第二小区的测量报告相同的第一小区的测量报告,根据筛选的测量报告确定第二小区的第二位置信息,则可以确定处于相同位置的第一小区的测量报告和第二小区的测量报告,从而实现对第二小区的测量报告的定位。The second embodiment of the present application relates to a measurement report positioning method. The second embodiment is roughly the same as the first embodiment. The main difference is that: in the embodiment of the present application, the measurement report of the first cell Before the information determines the second location information of the measurement report of the second cell, it further includes: the dual connectivity identifier that identifies the measurement report of the first cell and the measurement report of the second cell the same; and the first cell based on the measurement report of the first cell The location information determines the second location information of the measurement report of the second cell, which includes: filtering out the measurement report of the first cell whose dual connectivity identifier is the same as the measurement report of the second cell as the first measurement report. The first location information determines the second location information of the measurement report of the second cell. By combining the measurement report of the first cell and the measurement report of the second cell with the same dual connectivity identifier, it is convenient to distinguish the measurement report of the first cell and the measurement report of the second cell reported by the UE in the dual connectivity state; The measurement report of the first cell with the same dual connectivity identifier as the measurement report of the second cell, and the second location information of the second cell is determined based on the screened measurement report, then the measurement report and the second cell of the first cell at the same location can be determined The measurement report of the cell, thereby realizing the positioning of the measurement report of the second cell.
本申请实施例提供的测量报告定位方法的具体流程如图2所示,具体包括以下步骤。The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 2, and specifically includes the following steps.
S201:将第一小区的测量报告和第二小区的测量报告标识相同的双连接标识。S201: A dual connection identifier with the same identifier of the measurement report of the first cell and the measurement report of the second cell.
请参考图3,其为本申请实施例提供的测量报告定位方法中标识双连接标识的示例图。图3以第一小区为4G小区、第二小区为5G小区为例,其中,UE在双连接状态下连接4G网络为主节点(MN),连接5G网络为辅节点(SN),上报的4G小区的测量报告为LTE MR,上报的5G小区的测量报告为NR MR,MR中的TimeStamp为MR的时间戳,EN-DC ID为双连接标识,具体可以是UE所在的MN小区识别到UE发生了SN添加事件后,将UE该双连接实例对应的MN小区的MR集合和SN小区的MR集合都标识为相同的双连接识别号,如图3所示,分别为LTE MR和NR MR标识上相同的双连接标识“EN-DC ID=1”。Please refer to FIG. 3, which is an example diagram of identifying a dual-connection identifier in a measurement report positioning method provided in an embodiment of this application. Figure 3 takes the first cell as a 4G cell and the second cell as a 5G cell as an example. In the dual-connection state, the UE is connected to the 4G network as the master node (MN) and connected to the 5G network as the secondary node (SN), and the reported 4G The measurement report of the cell is LTE MR, the reported measurement report of the 5G cell is NR MR, the TimeStamp in MR is the timestamp of MR, and the EN-DC ID is the dual-connection identification. Specifically, the MN cell where the UE is located recognizes the occurrence of the UE. After the SN addition event, the MR set of the MN cell and the MR set of the SN cell corresponding to the dual connectivity instance of the UE are identified with the same dual connectivity identification number, as shown in Figure 3, respectively on the LTE MR and NR MR identifiers The same dual connection identifier "EN-DC ID = 1".
可以理解的是,图3所示的双连接标识仅为示例,实际应用中可以设置为其它的内容或形式,此处不做具体限制。另外,图3中是根据LTE MR的双连接标识通过X2接口标识NR MR,实际应用中只要将第一小区的测量报告和第二小区的测量报告标识上相同的双连接标识即可,并不限于图3所示的方式。It can be understood that the dual connection identification shown in FIG. 3 is only an example, and can be set to other content or form in actual applications, and there is no specific limitation here. In addition, in Figure 3, NR MR is identified through the X2 interface according to the dual-connection identification of LTE MR. In actual applications, only the measurement report of the first cell and the measurement report of the second cell have the same dual-connection identification. Limited to the way shown in Figure 3.
由于UE可能发生移动,而在移动过程中可能导致UE实际连接的第一小区或第二小区发生变化,为了保证UE在当次双连接状态下连接的小区的测量报告均具有相同的双连接标识,便于后续根据相同的双连接标识对测量报告进行定位,在一个具体的例子中,在将第一小区的测量报告和第二小区的测量报告标识相同的双连接标识之后,还包括:若第一小区或第二小区发生切换,则将双连接标识传递至切换后的小区的测量报告。Since the UE may move, the first cell or the second cell that the UE is actually connected to may change during the movement, in order to ensure that the measurement reports of the cells connected to the UE in the current dual-connection state all have the same dual-connection identification , It is convenient to locate the measurement report according to the same dual-connection identifier. In a specific example, after the measurement report of the first cell and the measurement report of the second cell have the same dual-connection identifier, it also includes: When a cell or a second cell is handed over, the dual-connection identification is transferred to the measurement report of the handover cell.
在一个实施例中,在第一小区或第二小区发生切换时,是将切换前的小区的测量报告的双连接标识传递至切换后的小区的测量报告。例如,若第一小区发生切换,则将切换前的第一小区的测量报告的双连接标识传递至切换后的第一小区的测量报告。In one embodiment, when a handover occurs in the first cell or the second cell, the dual connectivity identifier of the measurement report of the cell before the handover is transferred to the measurement report of the cell after the handover. For example, if a handover occurs in the first cell, the dual connection identifier of the measurement report of the first cell before the handover is transferred to the measurement report of the first cell after the handover.
由于在同一个公共陆地移动网络(Public Land Mobile Network,PLMN)中有多个处于双连接状态下的UE,为了区分不同UE,每个UE对应的双连接标识应在一预设时间内具有全局唯一性,其中,预设时间可以根据实际需要进行设置,例如是3天或以上。Since there are multiple dual-connected UEs in the same public land mobile network (Public Land Mobile Network, PLMN), in order to distinguish between different UEs, the dual-connected identity corresponding to each UE should have a global Uniqueness, where the preset time can be set according to actual needs, for example, 3 days or more.
S202:筛选出双连接标识与第二小区的测量报告相同的第一小区的测量报告作为第一测量报告。S202: Screen the measurement report of the first cell with the same dual connectivity identifier as the measurement report of the second cell as the first measurement report.
S203:根据第一测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。S203: Determine the second location information of the measurement report of the second cell according to the first location information of the first measurement report.
请参考图4,其为本申请实施例提供的测量报告定位方法中确定第二位置信息的示例图。具体地,从第一测量报告(MN MR)中获取GNSS位置信息(GNSS Location),并获取的GNSS位置信息填入至第二小区的测量报告(SN MR)中。Please refer to FIG. 4, which is an example diagram of determining the second location information in the measurement report positioning method provided by the embodiment of the application. Specifically, GNSS location information (GNSS Location) is acquired from the first measurement report (MN MR), and the acquired GNSS location information is filled in the measurement report (SN MR) of the second cell.
在一个具体的例子中,S202还可以是:筛选出双连接标识与第一小区的测量报告相同的第二小区的测量报告作为第二测量报告;相应地,S203可以是:根据第一小区的测量报告确定第二测量报告的第二位置信息。In a specific example, S202 may also be: screening the measurement report of the second cell with the same dual connectivity identifier as the measurement report of the first cell as the second measurement report; correspondingly, S203 may be: according to the measurement report of the first cell The measurement report determines the second location information of the second measurement report.
本申请实施例提供的测量报告定位方法,通过将第一小区的测量报告和第二小区的测量报告标识相同的双连接标识,可以方便区分处于双连接状态下UE上报的第一小区的测量报告和第二小区的测量报告;而筛选出双连接标识与第二小区的测量报告相同的第一小区的测量报告,根据筛选的测量报告确定第二 小区的第二位置信息,则可以确定处于相同位置的第一小区的测量报告和第二小区的测量报告,从而实现对第二小区的测量报告的定位。In the measurement report positioning method provided by the embodiments of the present application, the measurement report of the first cell and the measurement report of the second cell are identified by the same dual connectivity identifier, so that it is convenient to distinguish the measurement report of the first cell reported by the UE in the dual connectivity state. And the measurement report of the second cell; and the measurement report of the first cell with the same dual connectivity identifier as the measurement report of the second cell is screened out, and the second location information of the second cell is determined based on the screened measurement report, then it can be determined that they are in the same Position the measurement report of the first cell and the measurement report of the second cell, thereby realizing the positioning of the measurement report of the second cell.
本申请的第三实施例涉及一种测量报告定位方法,第三实施例与第一实施例大致相同,主要区别在于:在本申请实施例中,根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,具体可以为:根据第一小区在第一预设时间范围内的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,可以包括:判断在第一预设时间范围内是否存在第一小区的测量报告,若存在第一小区的测量报告,则根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。根据第一小区在第一预设时间范围内的测量报告的位置信息来确定第二小区的测量报告的位置信息,通过合理设置第一预设时间范围,可以选取与待确定的第二小区的测量报告的生成时间相同或相近的第一小区的测量报告,从而有效地实现对第二小区的测量报告的定位。The third embodiment of the present application relates to a measurement report positioning method. The third embodiment is roughly the same as the first embodiment. The main difference is that: in the embodiment of the present application, the first location information of the measurement report of the first cell is Determining the second location information of the measurement report of the second cell may specifically be: determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell within the first preset time range, It may include: determining whether there is a measurement report of the first cell within the first preset time range, and if there is a measurement report of the first cell, determining the measurement report of the second cell according to the first location information of the measurement report of the first cell The second location information. The location information of the measurement report of the second cell is determined according to the location information of the measurement report of the first cell within the first preset time range. By setting the first preset time range reasonably, the location information of the second cell to be determined can be selected. The measurement report of the first cell whose generation time of the measurement report is the same or similar, thereby effectively realizing the positioning of the measurement report of the second cell.
本申请实施例提供的测量报告定位方法的具体流程如图5所示,具体包括以下步骤。The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 5, which specifically includes the following steps.
S301:判断在第一预设时间范围内是否存在第一小区的测量报告。S301: Determine whether there is a measurement report of the first cell within the first preset time range.
S302:若存在第一小区的测量报告,则根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。S302: If there is a measurement report of the first cell, determine the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell.
其中,第一预设时间范围可以根据实际需要进行设置,在一个实施例中,第一预设时间范围根据第二小区的测量报告的测量周期确定。例如,若第二小区的测量报告的测量周期为Psn,需要定位的第二小区的测量报告的生成时间为Tsn,则第一预设时间范围可以设置为在Tsn-1/2*Psn至Tsn+1/2*Psn,根据第一预设时间范围选取第一小区的测量报告的示例图如图6所示。在图6中,若在Tsn-1/2*Psn至Tsn+1/2*Psn范围内存在第一小区的测量报告,则根据该范围内的测量报告的第一位置信息确定第二小区中生成时间为Tsn的测量报告的第二位置信息。The first preset time range can be set according to actual needs. In one embodiment, the first preset time range is determined according to the measurement period of the measurement report of the second cell. For example, if the measurement period of the measurement report of the second cell is Psn, and the generation time of the measurement report of the second cell that needs to be located is Tsn, the first preset time range can be set to be between Tsn-1/2*Psn and Tsn. +1/2*Psn, an example diagram of selecting the measurement report of the first cell according to the first preset time range is shown in FIG. 6. In Fig. 6, if there is a measurement report of the first cell in the range of Tsn-1/2*Psn to Tsn+1/2*Psn, the first location information of the measurement report in the range is determined to be in the second cell The second location information of the measurement report whose generation time is Tsn.
在一个实施例中,若在第一预设时间范围内存在两个或以上的第一小区的测量报告时,可以随机选取其中一个第一小区的测量报告来确定第二小区的测量报告的第二位置信息,也可以选取生成时间与第二小区的测量报告的生成时 间最接近的测量报告来确定第二小区的测量报告的第二位置信息。例如,在上述例子,若第一小区的测量报告的生成时间为Tmn,则可以选取|Tmn-Tsn|最小的第一小区的测量报告。在一个实施例中,若在第一预设时间范围内不存在第一小区的测量报告时,则不执行对第二小区的测量报告的定位操作。In an embodiment, if there are two or more measurement reports of the first cell within the first preset time range, one of the measurement reports of the first cell can be randomly selected to determine the second cell measurement report. Second, location information. The measurement report whose generation time is closest to the generation time of the measurement report of the second cell can also be selected to determine the second location information of the measurement report of the second cell. For example, in the above example, if the generation time of the measurement report of the first cell is Tmn, the measurement report of the first cell with the smallest |Tmn-Tsn| can be selected. In an embodiment, if there is no measurement report of the first cell within the first preset time range, the positioning operation of the measurement report of the second cell is not performed.
本申请实施例提供的测量报告定位方法,根据第一小区在第一预设时间范围内的测量报告的位置信息来确定第二小区的测量报告的位置信息,通过合理设置第一预设时间范围,可以选取与待确定的第二小区的测量报告的生成时间相同或相近的第一小区的测量报告来进行定位,从而有效地实现对第二小区的测量报告的定位。The measurement report positioning method provided by the embodiment of the present application determines the position information of the measurement report of the second cell according to the position information of the measurement report of the first cell within the first preset time range, and sets the first preset time range reasonably , The measurement report of the first cell that is the same or similar to the generation time of the measurement report of the second cell to be determined can be selected for positioning, so as to effectively realize the positioning of the measurement report of the second cell.
本申请的第四实施例涉及一种测量报告定位方法,第四实施例与第一实施例大致相同,主要区别在于:在本申请实施例中,根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,具体可以为:根据第一小区的测量报告的第一位置信息确定第二小区在第二预设时间范围内的测量报告的第二位置信息,可以包括:将第一小区的测量报告推送至第二小区,并将第二小区接收到推送的测量报告的时间或推送的测量报告的生成时间作为第一时间点,根据第一时间点从第二小区生成的测量报告中确定第三测量报告和第四测量报告,若第三测量报告的生成时间与推送的测量报告的生成时间的时间差小于预设时长,则将第三测量报告作为第二小区在第二预设时间范围内的测量报告,并根据第一位置信息确定第三测量报告的第二位置信息;若第四测量报告的生成时间与推送的测量报告的生成时间的时间差小于预设时长,则将第四测量报告作为第二小区在第二预设时间范围内的测量报告,并根据第一位置信息确定第四测量报告的第二位置信息。通过比较第三测量报告、第四测量报告与推送的测量报告的时间差,可以确定与推送的测量报告的生成时间最接近的第二小区的测量报告,从而根据推送的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,实现对第二小区的测量报告的定位。The fourth embodiment of the present application relates to a measurement report positioning method. The fourth embodiment is roughly the same as the first embodiment. The main difference is: in the embodiment of the present application, the first location information of the measurement report of the first cell is Determining the second location information of the measurement report of the second cell may specifically be: determining the second location information of the measurement report of the second cell within the second preset time range according to the first location information of the measurement report of the first cell, It may include: pushing the measurement report of the first cell to the second cell, and using the time when the second cell receives the pushed measurement report or the generation time of the pushed measurement report as the first time point, and from the first time point according to the first time point The third measurement report and the fourth measurement report are determined in the measurement report generated by the second cell. If the time difference between the generation time of the third measurement report and the generation time of the pushed measurement report is less than the preset duration, the third measurement report is regarded as the second measurement report. The measurement report of the cell within the second preset time range, and the second location information of the third measurement report is determined according to the first location information; if the time difference between the generation time of the fourth measurement report and the generation time of the pushed measurement report is less than the preset time If the duration is set, the fourth measurement report is used as the measurement report of the second cell within the second preset time range, and the second location information of the fourth measurement report is determined according to the first location information. By comparing the time difference between the third measurement report, the fourth measurement report, and the pushed measurement report, the measurement report of the second cell that is closest to the generation time of the pushed measurement report can be determined, and the first location information of the pushed measurement report can be determined. The second location information of the measurement report of the second cell is determined to realize the positioning of the measurement report of the second cell.
本申请实施例提供的测量报告定位方法的具体流程如图7所示,具体包括以下步骤。The specific process of the measurement report positioning method provided by the embodiment of the present application is shown in FIG. 7, and specifically includes the following steps.
S401:将第一小区的测量报告推送至第二小区,并将第二小区接收到推送的测量报告的时间或推送的测量报告的生成时间作为第一时间点。S401: Push the measurement report of the first cell to the second cell, and use the time when the second cell receives the pushed measurement report or the generation time of the pushed measurement report as the first time point.
在一个实施例中,将第一小区的测量报告推送至第二小区,是将第一小区的其中一个测量报告推送至第二小区,推送的测量报告的具体生成时间不限,可以是最新生成的测量报告,也可以是任一时间点生成的测量报告。In one embodiment, pushing the measurement report of the first cell to the second cell is to push one of the measurement reports of the first cell to the second cell. The specific generation time of the pushed measurement report is not limited, and it may be the latest generation. The measurement report can also be a measurement report generated at any point in time.
可以理解的是,在存在网络时延的情况下,第二小区接收到推送的测量报告的时间与推送的测量报告的生成时间不同。It is understandable that in the case of network delay, the time when the second cell receives the pushed measurement report is different from the generation time of the pushed measurement report.
S402:根据第一时间点从第二小区生成的测量报告中确定第三测量报告和第四测量报告,其中,第三测量报告为第二小区在第一时间点之前的时段内所生成的、最新的测量报告,第四报告为第二小区在第一时间点之后的时段内所生成的首条测量报告。S402: Determine a third measurement report and a fourth measurement report from the measurement report generated by the second cell according to the first time point, where the third measurement report is generated by the second cell in a period before the first time point. The latest measurement report, the fourth report is the first measurement report generated by the second cell in the period after the first time point.
S403:若第三测量报告的生成时间与推送的测量报告的生成时间的时间差小于或等于预设时长,则将第三测量报告作为第二小区在第二预设时间范围内的测量报告,并根据第一位置信息确定第三测量报告的第二位置信息。S403: If the time difference between the generation time of the third measurement report and the generation time of the pushed measurement report is less than or equal to the preset duration, use the third measurement report as the measurement report of the second cell within the second preset time range, and Determine the second location information of the third measurement report according to the first location information.
其中,预设时长可以根据实际需要进行设置,此处不做具体限制。在一个实施例中,预设时长为第二小区的测量报告的测量周期的一半。可以理解的是,通过预设时长来判断第三测量报告是否为第二预设时间范围内的测量报告,表示第二预设时间范围是根据预设时长来决定的,因此,第二预设时间范围亦可以根据第二小区的测量报告的测量周期确定。通过合理设置第二预设时间范围,可以确定与推送的测量报告处于相同或相近时间的第二小区的测量报告,从而根据推送的测量报告的位置信息对这些测量报告进行定位。Among them, the preset duration can be set according to actual needs, and there is no specific limitation here. In an embodiment, the preset duration is half of the measurement period of the measurement report of the second cell. It is understandable that whether the third measurement report is a measurement report within the second preset time range is determined by the preset duration, which means that the second preset time range is determined according to the preset duration. Therefore, the second preset The time range can also be determined according to the measurement period of the measurement report of the second cell. By reasonably setting the second preset time range, the measurement reports of the second cell that are at the same or similar time as the pushed measurement report can be determined, so that these measurement reports can be located according to the location information of the pushed measurement report.
S404:若第四测量报告的生成时间与推送的测量报告的生成时间的时间差小于或等于预设时长,则将第四测量报告作为第二小区在第二预设时间范围内的测量报告,并根据第一位置信息确定第四测量报告的第二位置信息。S404: If the time difference between the generation time of the fourth measurement report and the generation time of the pushed measurement report is less than or equal to the preset duration, use the fourth measurement report as the measurement report of the second cell within the second preset time range, and Determine the second location information of the fourth measurement report according to the first location information.
可以理解的是,当以推送的测量报告的生成时间(例如时间戳)作为第一时间点时,推送的测量报告的生成时间在第三测量报告的生成时间与第四测量报告的生成时间之间,通过预设时长来判断第二小区在第二预设时间范围的测量报告的实质上判断推送的测量报告的生成时间与第三测量报告的生成时间更接近、还是推送的测量报告的生成时间与第四测量报告的生成时间更接近,从而推送的测量报告确定生成时间更为接近的第二小区的测量报告。而当以第二小区接收到推送的测量报告的时间作为第一时间点时,判断的逻辑与上述的基 本一致,区别在于,由于网络时延的存在,可能出现第三测量报告、第四测量报告的生成时间与推送的测量报告的时间差均不满足小于或等于预设时长的条件,此时,例如,可以不执行第二小区的测量报告的定位操作。It is understandable that when the generation time (for example, a timestamp) of the pushed measurement report is taken as the first time point, the generation time of the pushed measurement report is between the generation time of the third measurement report and the generation time of the fourth measurement report. At the same time, it is judged by the preset time length that the measurement report of the second cell in the second preset time range is essentially judged whether the generation time of the pushed measurement report is closer to the generation time of the third measurement report, or the generation of the pushed measurement report The time is closer to the generation time of the fourth measurement report, so the pushed measurement report determines the measurement report of the second cell whose generation time is closer. When the second cell receives the pushed measurement report as the first time point, the judgment logic is basically the same as the above. The difference is that due to the network delay, the third measurement report and the fourth measurement report may appear. The time difference between the report generation time and the pushed measurement report does not satisfy the condition of being less than or equal to the preset duration. At this time, for example, the positioning operation of the measurement report of the second cell may not be performed.
在一个实施例中,若第三测量报告或第四测量报告的生成时间与推送的测量报告的生成时间等于预设时长,可以选取第三测量报告和/或第四测量报告作为第二小区在第二预设时间范围内的测量报告,再根据推送的测量报告的第一位置信息确定第三测量报告和/或第四测量报告的第二位置信息。In one embodiment, if the generation time of the third measurement report or the fourth measurement report and the generation time of the pushed measurement report are equal to the preset duration, the third measurement report and/or the fourth measurement report can be selected as the second cell in the For the measurement report within the second preset time range, the second position information of the third measurement report and/or the fourth measurement report is determined according to the first position information of the pushed measurement report.
以预设时长为第二小区的测量报告的测量周期(Psn)的一半为例(即1/2*Psn),若第三测量报告的生成时间为Tcurrent,第四测量报告的生成时间为Tnew,推送的测量报告的生成时间为Tmn,则可以先判断Tmn-Tcurrent是否小于或等于1/2*Psn,若是,则将第三测量报告作为第二小区在第二预设时间范围内待定位的测量报告进行定位;若否,则判断Tnew-Tmn是否小于或等于1/2*Psn,若是,则将第四测量报告作为第二小区在第二预设时间范围内待定位的测量报告进行定位,如图8所示。在一个实施例中,若Tmn-Tcurrent和Tnew-Tmn均大于1/2*Psn,表明推送的测量报告已过期,则不执行第二小区的测量报告的定位。Taking the preset duration as half of the measurement period (Psn) of the measurement report of the second cell as an example (ie 1/2*Psn), if the generation time of the third measurement report is Tcurrent, the generation time of the fourth measurement report is Tnew , The generation time of the pushed measurement report is Tmn, you can first determine whether Tmn-Tcurrent is less than or equal to 1/2*Psn, if so, use the third measurement report as the second cell to be located within the second preset time range If not, determine whether Tnew-Tmn is less than or equal to 1/2*Psn, if yes, use the fourth measurement report as the measurement report for the second cell to be located within the second preset time range. Positioning, as shown in Figure 8. In one embodiment, if Tmn-Tcurrent and Tnew-Tmn are both greater than 1/2*Psn, indicating that the pushed measurement report has expired, the positioning of the measurement report of the second cell is not performed.
本申请实施例提供的测量报告定位方法,通过比较第三测量报告、第四测量报告与推送的测量报告的时间差,可以确定与推送的测量报告的生成时间最接近的第二小区的测量报告,从而根据推送的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,实现对第二小区的测量报告的定位。In the measurement report positioning method provided by the embodiment of the present application, by comparing the time difference between the third measurement report, the fourth measurement report and the pushed measurement report, the measurement report of the second cell that is closest to the generation time of the pushed measurement report can be determined. Therefore, the second location information of the measurement report of the second cell is determined according to the first location information of the pushed measurement report, and the positioning of the measurement report of the second cell is realized.
此外,本领域技术人员可以理解,上面各种方法的步骤划分,只是为了描述清楚,实现时可以合并为一个步骤或者对某些步骤进行拆分,分解为多个步骤,只要包括相同的逻辑关系,都在本专利的保护范围内;对算法中或者流程中添加无关紧要的修改或者引入无关紧要的设计,但不改变其算法和流程的核心设计都在该专利的保护范围内。In addition, those skilled in the art can understand that the division of steps in the various methods above is only for clarity of description, and can be combined into one step or some steps can be split into multiple steps in implementation, as long as the same logical relationship is included. , Are all within the scope of protection of this patent; adding insignificant modifications to the algorithm or process or introducing insignificant designs, but not changing the core design of the algorithm and process, are all within the scope of protection of the patent.
本申请的第五实施例涉及一种电子设备,如图9所示,包括:至少一个处理器501;以及,与至少一个处理器501通信连接的存储器502;其中,存储器502存储有可被至少一个处理器501执行的指令,指令被至少一个处理器501执行,以使至少一个处理器501能够执行上述的测量报告定位方法。The fifth embodiment of the present application relates to an electronic device. As shown in FIG. 9, it includes: at least one processor 501; and a memory 502 communicatively connected with the at least one processor 501; An instruction executed by one processor 501 is executed by at least one processor 501, so that the at least one processor 501 can execute the foregoing measurement report positioning method.
其中,存储器和处理器采用总线方式连接,总线可以包括任意数量的互联的总线和桥,总线将一个或多个处理器和存储器的各种电路连接在一起。总线还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路连接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口在总线和收发机之间提供接口。收发机可以是一个元件,也可以是多个元件,比如多个接收器和发送器,提供用于在传输介质上与各种其他装置通信的单元。经处理器处理的数据通过天线在无线介质上进行传输,进一步,天线还接收数据并将数据传送给处理器。Among them, the memory and the processor are connected in a bus mode, and the bus may include any number of interconnected buses and bridges, and the bus connects one or more processors and various circuits of the memory together. The bus can also connect various other circuits such as peripheral devices, voltage regulators, power management circuits, etc., which are all known in the art, and therefore, will not be further described herein. The bus interface provides an interface between the bus and the transceiver. The transceiver may be one element or multiple elements, such as multiple receivers and transmitters, providing a unit for communicating with various other devices on the transmission medium. The data processed by the processor is transmitted on the wireless medium through the antenna, and further, the antenna also receives the data and transmits the data to the processor.
处理器负责管理总线和通常的处理,还可以提供各种功能,包括定时,外围接口,电压调节、电源管理以及其他控制功能。而存储器可以被用于存储处理器在执行操作时所使用的数据。The processor is responsible for managing the bus and general processing, and can also provide various functions, including timing, peripheral interfaces, voltage regulation, power management, and other control functions. The memory can be used to store data used by the processor when performing operations.
本申请第六实施例涉及一种计算机可读存储介质,存储有计算机程序。计算机程序被处理器执行时实现上述方法实施例。The sixth embodiment of the present application relates to a computer-readable storage medium, which stores a computer program. When the computer program is executed by the processor, the above method embodiment is realized.
即,本领域技术人员可以理解,实现上述实施例方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序存储在一个存储介质中,包括若干指令用以使得一个设备(可以是单片机,芯片等)或处理器(processor)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。That is, those skilled in the art can understand that all or part of the steps in the method of the foregoing embodiments can be implemented by instructing relevant hardware through a program. The program is stored in a storage medium and includes several instructions to enable a device ( It may be a single-chip microcomputer, a chip, etc.) or a processor (processor) that executes all or part of the steps of the methods described in the embodiments of the present application. The aforementioned storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other media that can store program code .
本领域的普通技术人员可以理解,上述各实施例是实现本申请的具体实施例,而在实际应用中,可以在形式上和细节上对其作各种改变,而不偏离本申请的精神和范围。Those of ordinary skill in the art can understand that the above-mentioned embodiments are specific embodiments for realizing the present application, and in actual applications, various changes can be made in form and details without departing from the spirit and spirit of the present application. Scope.

Claims (13)

  1. 一种测量报告定位方法,包括:A measurement report positioning method, including:
    根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,其中,所述第一位置信息通过双连接状态下的用户设备UE获取,所述UE在所述双连接状态下分别连接所述第一小区和所述第二小区。Determine the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell. The first cell and the second cell are respectively connected in a dual connection state.
  2. 根据权利要求1所述的测量报告定位方法,其中,在根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息之前,还包括:The measurement report positioning method according to claim 1, wherein before determining the second position information of the measurement report of the second cell according to the first position information of the measurement report of the first cell, the method further comprises:
    将所述第一小区的测量报告和所述第二小区的测量报告标识相同的双连接标识。A dual-connection identifier with the same identifier of the measurement report of the first cell and the measurement report of the second cell.
  3. 根据权利要求2所述的测量报告定位方法,其中,所述根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,包括:The measurement report positioning method according to claim 2, wherein the determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell comprises:
    筛选出双连接标识与所述第二小区的测量报告相同的所述第一小区的测量报告作为第一测量报告;Screening out the measurement report of the first cell whose dual connectivity identifier is the same as the measurement report of the second cell as the first measurement report;
    根据所述第一测量报告的第一位置信息确定所述第二小区的测量报告的第二位置信息。Determine the second location information of the measurement report of the second cell according to the first location information of the first measurement report.
  4. 根据权利要求2所述的测量报告定位方法,其中,所述根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,包括:The measurement report positioning method according to claim 2, wherein the determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell comprises:
    筛选出双连接标识与所述第一小区的测量报告相同的所述第二小区的测量报告作为第二测量报告;Screening out the measurement report of the second cell whose dual connectivity identifier is the same as the measurement report of the first cell as the second measurement report;
    根据所述第一小区的测量报告确定所述第二测量报告的第二位置信息。Determine the second location information of the second measurement report according to the measurement report of the first cell.
  5. 根据权利要求2所述的测量报告定位方法,其中,还包括:The measurement report positioning method according to claim 2, further comprising:
    若所述第一小区或所述第二小区发生切换,则将所述双连接标识传递至切换后的小区的测量报告。If a handover occurs in the first cell or the second cell, the dual connectivity identifier is transferred to the measurement report of the cell after the handover.
  6. 根据权利要求1所述的测量报告定位方法,其中,所述根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,具体为:The measurement report positioning method according to claim 1, wherein the determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell is specifically:
    根据第一小区在第一预设时间范围内的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。Determine the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell within the first preset time range.
  7. 根据权利要求6所述的测量报告定位方法,其中,所述根据第一小区在第一预设时间范围内的测量报告的第一位置信息确定第二小区的测量报告的第 二位置信息,包括:The measurement report positioning method according to claim 6, wherein the determining the second position information of the measurement report of the second cell according to the first position information of the measurement report of the first cell within the first preset time range comprises :
    判断在所述第一预设时间范围内是否存在所述第一小区的测量报告;Determine whether there is a measurement report of the first cell within the first preset time range;
    若存在所述第一小区的测量报告,则根据所述第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息。If the measurement report of the first cell exists, the second position information of the measurement report of the second cell is determined according to the first position information of the measurement report of the first cell.
  8. 根据权利要求1所述的测量报告定位方法,其中,所述根据第一小区的测量报告的第一位置信息确定第二小区的测量报告的第二位置信息,具体为:The measurement report positioning method according to claim 1, wherein the determining the second location information of the measurement report of the second cell according to the first location information of the measurement report of the first cell is specifically:
    根据第一小区的测量报告的第一位置信息确定第二小区在第二预设时间范围内的测量报告的第二位置信息。Determine the second location information of the measurement report of the second cell within the second preset time range according to the first location information of the measurement report of the first cell.
  9. 根据权利要求8所述的测量报告定位方法,其中,所述根据第一小区的测量报告的第一位置信息确定第二小区在第二预设时间范围内的测量报告的第二位置信息,包括:The measurement report positioning method according to claim 8, wherein the determining the second position information of the measurement report of the second cell within the second preset time range according to the first position information of the measurement report of the first cell comprises :
    将所述第一小区的测量报告推送至所述第二小区,并将所述第二小区接收到所述推送的测量报告的时间或所述推送测量报告的生成时间作为第一时间点;Push the measurement report of the first cell to the second cell, and use the time when the second cell receives the pushed measurement report or the time when the push measurement report is generated as the first time point;
    根据所述第一时间点从所述第二小区生成的测量报告中确定第三测量报告和第四测量报告,其中,所述第三测量报告为所述第二小区在所述第一时间点之前的时段内所生成的、最新的测量报告,所述第四报告为所述第二小区在所述第一时间点之后的时段内所生成的首条测量报告;A third measurement report and a fourth measurement report are determined from the measurement report generated by the second cell according to the first time point, where the third measurement report is that the second cell is at the first time point The latest measurement report generated in a previous time period, where the fourth report is the first measurement report generated by the second cell in a time period after the first time point;
    若所述第三测量报告的生成时间与所述推送的测量报告的生成时间的时间差小于或等于预设时长,则将所述第三测量报告作为所述第二小区在所述第二预设时间范围内的测量报告,并根据所述第一位置信息确定所述第三测量报告的第二位置信息;If the time difference between the generation time of the third measurement report and the generation time of the pushed measurement report is less than or equal to the preset duration, the third measurement report is regarded as the second cell in the second preset A measurement report within a time range, and determining the second location information of the third measurement report according to the first location information;
    若所述第四测量报告的生成时间与所述推送的测量报告的生成时间的时间差小于或等于所述预设时长,则将所述第四测量报告作为所述第二小区在所述第二预设时间范围内的测量报告,并根据所述第一位置信息确定所述第四测量报告的第二位置信息。If the time difference between the generation time of the fourth measurement report and the generation time of the pushed measurement report is less than or equal to the preset duration, the fourth measurement report is regarded as the second cell in the second cell. Preset measurement reports within a preset time range, and determine the second location information of the fourth measurement report according to the first location information.
  10. 根据权利要求6或8所述的测量报告定位方法,其中,所述第一预设时间范围或所述第二预设时间范围根据所述第二小区的测量报告的测量周期确定。The measurement report positioning method according to claim 6 or 8, wherein the first preset time range or the second preset time range is determined according to the measurement period of the measurement report of the second cell.
  11. 根据权利要求1所述的测量报告定位方法,其中,所述第一小区为4G 小区,所述第二小区为5G小区。The measurement report positioning method according to claim 1, wherein the first cell is a 4G cell and the second cell is a 5G cell.
  12. 一种电子设备,包括:An electronic device including:
    至少一个处理器;以及,At least one processor; and,
    与所述至少一个处理器通信连接的存储器;其中,A memory communicatively connected with the at least one processor; wherein,
    所述存储器存储有可被所述至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行如权利要求1至11中任一项所述的测量报告定位方法。The memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor, so that the at least one processor can execute any one of claims 1 to 11 The measurement report positioning method described above.
  13. 一种计算机可读存储介质,存储有计算机程序,所述计算机程序被处理器执行时实现如权利要求1至11中任一项所述的测量报告定位方法。A computer-readable storage medium storing a computer program, which, when executed by a processor, implements the measurement report positioning method according to any one of claims 1 to 11.
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