WO2011100919A2 - 邻区优化的方法和服务器 - Google Patents

邻区优化的方法和服务器 Download PDF

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Publication number
WO2011100919A2
WO2011100919A2 PCT/CN2011/072735 CN2011072735W WO2011100919A2 WO 2011100919 A2 WO2011100919 A2 WO 2011100919A2 CN 2011072735 W CN2011072735 W CN 2011072735W WO 2011100919 A2 WO2011100919 A2 WO 2011100919A2
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Prior art keywords
cell
cell update
report
update
missing
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PCT/CN2011/072735
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English (en)
French (fr)
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WO2011100919A3 (zh
Inventor
梁燕萍
丁丁
邹向毅
高恺
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华为技术有限公司
中国移动通信集团公司
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Application filed by 华为技术有限公司, 中国移动通信集团公司 filed Critical 华为技术有限公司
Priority to PCT/CN2011/072735 priority Critical patent/WO2011100919A2/zh
Priority to CN2011800014757A priority patent/CN102835143A/zh
Publication of WO2011100919A2 publication Critical patent/WO2011100919A2/zh
Publication of WO2011100919A3 publication Critical patent/WO2011100919A3/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/005Discovery of network devices, e.g. terminals

Definitions

  • the present invention relates to the field of wireless networks, and in particular, to a method and server for optimizing a neighboring cell. Background technique
  • the prior art has implemented the leaky neighbor detection based on the measurement of the commercial terminal, and can implement the automatic analysis and the proposal for the optimization of the neighboring area.
  • the specific method includes: the back-end analysis tool obtains the configuration information of the neighbor relationship of the existing network through the network management system, According to the existing network neighboring area relationship and the geographical location and other information, the cell in which the handover relationship may occur in each cell is determined, and a set of the neighboring area to be tested is analyzed and generated, and the UE (User Equipment, User Equipment) is delivered through the measurement control message. The UE considers the neighboring area to be tested as a normal neighboring area to perform a normal neighboring area set, and performs normal neighboring area measurement.
  • the neighboring area measurement report is reported when the 1G/2A event or the 3A event is triggered.
  • the report contains the RSCP (Received Signal Code Power) of the neighboring area to be tested.
  • the back-end analysis tool analyzes and scores according to the number of measurement reports and the average value of RSCP, thus giving recommendations for missing neighbors.
  • the method in the prior art relies on configuring a redundant neighboring cell for the UE to detect, and can only detect the configured neighboring cell, but cannot satisfy the scenario such as an isolated cell.
  • Embodiments of the present invention provide a method and a server for optimizing a neighboring cell.
  • the technical solution is as follows:
  • a method of neighborhood optimization comprising:
  • a neighboring area optimization analysis server comprising:
  • a cell update report obtaining module configured to acquire a cell update report of the user equipment
  • the missing matching neighboring area analyzing module is configured to analyze the cell update report to obtain a missing neighboring area
  • the neighboring area optimization module is configured to perform neighboring area optimization by using the missing matching neighboring area.
  • a communication system comprising:
  • the measurement and statistics report collection device is configured to collect measurement statistics reports reported by the user equipment
  • a neighboring area optimization analysis server configured to obtain a cell update report of the user equipment according to the measurement statistics report collected by the measurement statistics report collection device, analyze the cell update report, and obtain a missing matching neighboring area; Perform neighborhood optimization.
  • the cell update report reported by the user equipment for cell update is obtained, and the cell update report is analyzed to obtain the missing neighboring cell, and the neighboring cell is optimized according to the obtained missing neighboring cell, thereby improving the mismatched neighboring cell analysis. Accuracy, improve the accuracy of neighborhood relationship optimization in isolated scenes, and improve network quality.
  • FIG. 1 is a flow chart of an embodiment of a neighboring cell optimization method provided by the present invention.
  • FIG. 2 is a flow chart of an embodiment of a neighboring cell optimization method provided by the present invention.
  • FIG. 3 is a schematic structural diagram of an embodiment of a neighboring area optimization analysis server provided by the present invention.
  • FIG. 4 is a schematic structural diagram of an embodiment of a neighboring area optimization analysis server provided by the present invention.
  • FIG. 5 is a schematic structural diagram of an embodiment of a neighboring area optimization analysis server provided by the present invention.
  • FIG. 6 is a schematic structural diagram of an embodiment of a neighboring area optimization analysis server provided by the present invention.
  • FIG. 7 is a schematic structural diagram of an embodiment of a neighboring area optimization analysis server provided by the present invention. detailed description
  • FIG. 1 is a flowchart of an embodiment of a neighboring cell optimization method according to the present invention.
  • an execution entity is a server located on a network management side. Referring to FIG. 1, the embodiment includes:
  • the cell update report is information that is reported when the user equipment performs the cell update, and the report includes: parameter information such as a cell update cause value, a cell pre-cell update cell identifier, and a cell identifier that receives the cell update. 102: analyzing the cell update report, and obtaining the missing neighboring area;
  • the server located on the network management side optimizes the neighboring cell according to the obtained missing neighboring cell.
  • the specific method is not described in this embodiment.
  • the method provided in this embodiment obtains a cell update report reported by the user equipment when performing cell update, and analyzes the cell update report to obtain a missing neighboring cell, and performs neighbor cell optimization according to the acquired missing neighboring cell.
  • the accuracy of the missing neighboring zone analysis improves the accuracy of the neighboring zone relationship optimization and improves the network quality.
  • FIG. 2 is a flowchart of an embodiment of a neighboring cell optimization method according to the present invention.
  • the interaction party includes a UE, a base station, a network side device, and a server located on the network management side, and the server may be a neighboring area optimization server.
  • the Nastar server is a network optimization server, and is mainly used for performing neighbor cell analysis according to statistical data.
  • the embodiment includes:
  • the UE reports a cell update report to the RNC.
  • the cell update report is included in the measurement statistics report of the UE.
  • a person skilled in the art may know that after the downlink physical link is out of synchronization, the cell performs a cell search again, and initiates a cell update to the C in the searched optimal cell.
  • the cell update report is sent by the user equipment in the communication process.
  • the serving base station reports it and reports it to the RNC by the serving base station.
  • RNC Radio Network Controller, Radio Network Controller
  • the network side device is preferably an RNC, which is used as a measurement and statistics report collection device, and is mainly used for collecting measurement statistics reports reported by the user equipment.
  • the cell update report is included in the measurement statistics report, and the report may be RNC timing.
  • the present invention is not limited by the embodiment of the present invention.
  • the report can be uploaded to the 0MC through the link of the RNC-0MC (Operations & Maintenance Center), and then uploaded to the Nastar server through the physical link of the 0MC and Nastar.
  • RNC-0MC Operations & Maintenance Center
  • the server may be a distributed architecture, and a part of the network is deployed in the RNC, and is mainly used for data collection and pre-processing.
  • the module may be a SAU (Service Aware Unit) board, and another part is in the network. Side, optimize the analysis server for the neighboring area. SAU and 0MC establish a connection directly.
  • SAU Service Aware Unit
  • a person skilled in the art may know that when the SAU receives the message, the message needs to be pre-processed, and the data is filtered. Since the pre-processing does not affect the information content required by the embodiment of the present invention, the present embodiment does not Processing is described in detail.
  • the server traverses the received cell update report, and determines whether the cell update cause value in the cell update report is a preset value. If yes, step 204 is performed; if not, the process ends.
  • the server receives the measurement statistics report, and searches for and obtains the cell update report from the measurement statistics report. The present invention does not involve the processing of other reports, and details are not described herein again.
  • Radio Link Fai l refers to the Cel lUpdate initiated by the UE after detecting that the wireless downlink fails or is out of synchronization.
  • the physical layer "out of sync" out-of-synchronization indication is received, indicating that the established DPCCH physical channel is out of synchronization (the TDD system is a time synchronization system, and the out-of-step is lost synchronization), and the correlation is exceeded. After the timer, the wireless link is considered to have failed.
  • the preset value is preferably Radio Link Fai l.
  • Step 204 Determine whether the cell identifier before the cell update in the cell update report is the same as the cell identifier of the received cell update, if no, step 205 is performed;
  • this step it is determined whether the cell identifier before the cell update and the cell identifier of the received cell update are the same in the cell update message, and the purpose is to determine whether the cell before the cell update and the cell that receives the cell update are the same, and the cell before the cell update is received.
  • the user equipment is considered to be handed over from the original serving cell to another cell.
  • step 205 Determine whether the cell identifier of the received cell update is in the neighboring cell configuration, and if not, the cell that receives the cell update is used as a missing neighboring cell, and step 206 is performed;
  • the cell identifier of the received cell update is in the neighboring cell configuration list, it indicates that the cell that receives the cell update is a known neighboring cell, and if not, the cell that receives the cell update is a potential mismatch. Neighborhood.
  • the missing neighboring cells are prioritized according to the obtained number of cell update reports of the missing neighboring cell and the missing neighboring cell.
  • a person skilled in the art may know that the more times the cell update report is received by the cell, the higher the value of the cell as the missed neighbor cell, and the cell update report according to the missing neighbor cell in the missing neighbor cell. Sorting the number of times from the most to the least, the missing matching neighboring area with the highest number of cell update reports is regarded as the most valuable missing matching neighboring area, and the missing matching neighboring area with the lowest priority of the cell update report is the smallest value missing matching.
  • the neighboring area is set to have the lowest priority, and each neighboring area is sorted according to the rule, and finally the priority of each cell as the missing neighboring area is determined.
  • the purpose of setting the priority is to preferentially recommend the missing matching neighboring area when the network is optimized. Further, the priority setting may be multiple, and the technician sets the server on the server. The invention is not specifically limited.
  • the server may further evaluate the value of the missing neighboring area obtained by the geographic information, specifically, It is judged in the map whether there is a possibility of handover in the missing neighboring cell. If yes, the network optimization can combine the conclusion to add the detected missing neighboring cell to the neighboring cell of the source cell, reduce the number of network cell update times, and improve the service experience. .
  • the existing network may perform RF optimization on the over-coveraged cell, adjust the cell coverage distance, antenna parameters, etc., to avoid cell update of the user and the remote coverage cell.
  • the neighboring area optimization includes: the network optimization server generates a neighboring area optimization adjustment suggestion according to the cell update report, and points out some missing access neighboring areas in the suggestion, and a GUI (Graphical User Interface) is recommended.
  • the interface is displayed, and the report (Excel) can also be exported.
  • the network optimization engineer can judge according to the suggestions given by the system, combined with the actual geographical environment and experience: If the system is given reasonable advice, modify the neighboring area configuration by modifying the network neighborhood configuration. If it is reasonable, it will not modify the network neighborhood relationship.
  • the method provided in this embodiment obtains a cell update report reported by the user equipment when performing cell update, and analyzes the cell update report to obtain a missing neighboring cell, and performs neighbor cell optimization according to the acquired missing neighboring cell.
  • the accuracy of the missing neighboring zone analysis improves the accuracy of the neighboring zone relationship optimization and improves the network quality.
  • FIG. 3 is a schematic structural diagram of an embodiment of a neighboring area optimization analysis server provided by the present invention.
  • the server includes:
  • a cell update report obtaining module 301 configured to acquire a cell update report of the user equipment
  • the missing matching neighboring area analyzing module 302 is configured to analyze the cell update report to obtain a missing neighboring area
  • the neighboring area optimization module 303 is configured to perform neighboring area optimization by using the missing matching neighboring area.
  • the missing matching neighboring area analysis module 302 includes:
  • the determining unit 3021 is configured to determine, according to the cell update cause value, the cell pre-update cell identifier, and the cell identifier of the received cell update in the cell update report, the cell that receives the cell update is determined;
  • the obtaining unit 3022 is configured to obtain a missing neighboring cell according to the judgment result.
  • the determining unit 3021 includes:
  • the first determining sub-unit 3021a is configured to traverse all the cell update reports, determine whether the cell update cause value in the cell update report is a preset value, and if yes, trigger to determine a cell pre-cell update cell in the cell update message. And determining, by the second determining subunit 3021b, whether the cell identifier of the cell update is the same, and if not, triggering a third determining subunit for determining whether the cell identifier of the received cell update is in the local neighboring area configuration 3021c, if no, the cell that receives the cell update is used as a missing neighboring cell.
  • the server also includes:
  • the sorting module 304 is configured to update the number of reports according to the obtained missing matching neighboring cell and the missing neighboring cell, and the leaking Match the neighboring area for prioritization.
  • the cell update report obtaining module 301 includes:
  • a receiving unit 3011 configured to receive a measurement statistics report
  • the obtaining unit 3012 is configured to search for and obtain the cell update report from the measurement statistics report.
  • the server provided in this embodiment may be a network optimization server, which is the same as the method embodiment.
  • the server may be a network optimization server, which is the same as the method embodiment.
  • An embodiment of the present invention provides a communication system, where the system includes:
  • the measurement and statistics report collection device is configured to collect measurement statistics reports reported by the user equipment
  • the neighboring area optimization analysis server is configured to obtain a cell update report of the user equipment according to the measurement statistics report collected by the measurement and statistics report collection device, analyze the cell update report, and obtain a missed neighboring area; use the missing matching neighboring area to perform a neighboring area optimization.
  • the communication system provided in this embodiment is the same as the method embodiment, and the specific implementation process is described in detail in the method embodiment, and details are not described herein again.
  • Embodiments of the invention may be implemented in software, and the corresponding software program may be stored in a readable storage medium, such as a hard disk, a cache, or an optical disk of a computer.
  • a readable storage medium such as a hard disk, a cache, or an optical disk of a computer.

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Description

邻区优化的方法和服务器 技术领域
本发明涉及无线网络领域, 特别涉及一种邻区优化的方法和服务器。 背景技术
在无线网络基础优化中, 除了 RF ( Radio Frequency, 射频) 优化外, 邻区优化是重要 工作之一。 在 TD-SCDMA ( Time Division-Synchronous Code Division Multiple Access , 时分同步码分多址) 网络邻区优化过程中, 现有的基于路测的网络优化手段费时耗力, 效 率低下, 且依赖道路, 准确度不高。
现有技术已经实现了基于商用终端测量的漏配邻区检测, 可以实现自动分析以及给出 邻区优化建议, 其具体方法包括: 后端分析工具通过网管获取现网的邻区关系配置信息, 并根据现网邻区关系结合地理位置等信息, 判断每一个小区可能发生切换关系的小区, 分 析生成一份待测漏配邻区集合, 通过测量控制消息下发 UE (User Equipment , 用户设备), UE将待测漏配邻区认为正常邻区进行正常的当前邻区集合,进行正常的邻区测量。在 1G/2A 事件或者 3A事件触发时上报邻区测量报告,报告中包含待测邻区的 RSCP ( Received Signal Code Power, 接收信号码功率)。 经过一定周期的数据采集, 后端分析工具根据测量报告次 数以及 RSCP平均值进行分析评分, 从而给出漏配邻区建议。
在对现有技术进行分析后, 发明人发现现有技术至少具有如下缺点:
现有技术中的方法依赖于配置冗余邻区供 UE进行检测, 且只能检测所配置的邻区, 而 并不能满足孤立小区等场景。 实际应用中, 不能对孤立小区等没有配置邻区场景的小区进 行测量, 漏配测量分析不够全面, 造成漏配等情况, 邻区优化不准确, 效率低。 发明内容
本发明实施例提供了一种邻区优化的方法和服务器。 所述技术方案如下:
一种邻区优化的方法, 包括:
获取用户设备的小区更新报告;
分析所述小区更新报告, 得到漏配邻区;
使用所述漏配邻区进行邻区优化。 一种邻区优化分析服务器, 包括:
小区更新报告获取模块, 用于获取用户设备的小区更新报告;
漏配邻区分析模块, 用于分析所述小区更新报告, 得到漏配邻区;
邻区优化模块, 用于使用所述漏配邻区进行邻区优化。
一种通信系统, 所述系统包括:
测量统计报告收集设备, 用于收集用户设备上报的测量统计报告;
邻区优化分析服务器, 用于根据所述测量统计报告收集设备收集的测量统计报告, 获 取用户设备的小区更新报告; 分析所述小区更新报告, 得到漏配邻区; 使用所述漏配邻区 进行邻区优化。
本发明实施例提供的技术方案的有益效果是:
通过获取用户设备进行小区更新时上报的小区更新报告, 并对小区更新报告进行分析, 以获取漏配邻区, 并根据获取的漏配邻区进行邻区优化, 提升了漏配邻区分析的准确度, 改善孤立场景邻区关系优化精度, 提升网络质量。 附图说明
图 1是本发明提供的邻区优化方法的一个实施例的流程图;
图 2是本发明提供的邻区优化方法的一个实施例的流程图;
图 3是本发明提供的邻区优化分析服务器的一个实施例的结构示意图;
图 4是本发明提供的邻区优化分析服务器的一个实施例的结构示意图;
图 5是本发明提供的邻区优化分析服务器的一个实施例的结构示意图;
图 6是本发明提供的邻区优化分析服务器的一个实施例的结构示意图;
图 7是本发明提供的邻区优化分析服务器的一个实施例的结构示意图。 具体实施方式
为使本发明的目的、 技术方案和优点更加清楚, 下面将结合附图对本发明实施方式作 进一步地详细描述。
图 1 为本发明提供的邻区优化方法的一个实施例的流程图, 该实施例中, 执行主体为 位于网管侧的服务器, 参见图 1, 该实施例包括:
101: 获取用户设备的小区更新报告;
其中, 小区更新报告是指用户设备进行小区更新时上报的信息, 该报告中包括: 小区 更新原因值、 小区更新前小区标识、 收到小区更新的小区标识等参数信息。 102: 分析小区更新报告, 得到漏配邻区;
具体地, 通过对小区更新报告进行统计、 分析, 并获取漏配邻区。
103: 使用该漏配邻区进行邻区优化。
本领域技术人员可以获知, 位于网管侧的服务器会根据获取的漏配邻区进行邻区优化, 其具体方法在本实施例中不做赘述。
本实施例提供的方法, 通过获取用户设备进行小区更新时上报的小区更新报告, 并对 小区更新报告进行分析, 以获取漏配邻区, 并根据获取的漏配邻区进行邻区优化, 提升了 漏配邻区分析的准确度, 改善孤立场景邻区关系优化精度, 提升网络质量。
图 2 为本发明提供的邻区优化方法的一个实施例的流程图, 该实施例中, 交互方包括 UE、 基站、 网络侧设备和位于网管侧的服务器, 该服务器具体可以为邻区优化服务器, 如 Nastar服务器, 该服务器为网优服务器, 主要用于根据统计数据进行邻区分析, 参见图 2, 该实施例包括:
201: UE向 RNC上报小区更新报告;
优选地, 该小区更新报告包含在 UE的测量统计报告中。
本领域技术人员可以获知, 当 UE发生下行物理链路失步后, 重新进行小区搜索, 并在 搜索到的最优小区下向 c发起小区更新; 该小区更新报告由用户设备在通信过程中向其 服务基站上报, 并由服务基站向 RNC上报的。
202: RNC ( Radio Network Control ler, 无线网络控制器) 将接收到 UE 的小区更新 报告上报给位于网管侧的服务器;
网络侧设备优选为 RNC, 其作为测量统计报告收集设备, 主要用于收集用户设备上报的 测量统计报告, 优选地, 小区更新报告是包含在测量统计报告中上报的, 该上报可以是有 RNC定时上报, 也可以时由服务器主动获取, 本发明实施例不做具体限定。
优选地, 该上报可以通过 RNC-0MC ( Operations & Maintenance Center, 操作维护中 心) 的链路上传到 0MC, 然后通过 0MC和 Nastar的物理链路上传到 Nastar服务器。
需要说明的是, 服务器可以为分布式架构, 一部分部署在 RNC, 主要用于数据采集和预 处理, 优选地, 该模块可以为 SAU ( Service Aware Unit , 业务感知单元) 单板, 另一部分 在网络侧, 为邻区优化分析服务器。 SAU和 0MC直接建立连接。 本领域技术人员可以获知, 当 SAU接收到消息时, 需对消息进行预处理, 对数据进行过滤, 由于该预处理并不影响本 发明实施例所需的信息内容, 所以本实施例中不对预处理进行赘述。
203: 服务器遍历接收到的小区更新报告, 判断小区更新报告中的小区更新原因值是否 为预设值, 如果是, 则执行步骤 204; 如果否, 则结束。 优选地, 服务器接收测量统计报告, 并从测量统计报告中查找并获取小区更新报告, 本发明不涉及对其他报告的处理, 在此不再赘述。
本领域技术人员可以获知, 网络中 Cel lUpdate常见两种原因值:
( 1 ) Radio Link Fai l , 指 UE 在检测到无线下行链路发生失败或失步后发起的 Cel lUpdate。 当在 cel l— DCH状态下, 收到物理层 "out of sync "失步指示, 表示已经建 立的 DPCCH物理信道失步 (TDD系统是一个时间同步系统, 失步也就是失去同步), 超过相 关定时器后, 则认为无线链路失败。
( 2 ) RLC Unrecoverable Error: 指 UE在上行发送 AM模式的 RLC数据时, 无法成功 发送, 最终判断链路失败, 因此发起 Cel lUpdate。
由于当小区更新原因值为 Radio Link Fai l时, 该用户设备发起 Cel lUpdate的原因通 常是由于邻区漏配, 所以, 在本实施例中, 预设值优选为 Radio Link Fai l。
204: 判断所述小区更新报告中小区更新前小区标识和收到小区更新的小区标识是否相 同, 如果否, 则执行步骤 205;
在该步骤中, 判断小区更新消息中小区更新前小区标识和收到小区更新的小区标识是 否相同的目的在于判断小区更新前小区和收到小区更新的小区是否相同, 在小区更新前小 区和收到小区更新的小区不同的情况下, 则认为该用户设备从原服务小区切换到了另一小 区。
205: 判断所述收到小区更新的小区标识是否在所述邻区配置中, 如果否, 则将所述收 到小区更新的小区作为漏配邻区, 执行步骤 206;
在本实施例中, 如果该收到小区更新的小区标识在邻区配置列表中, 则说明收到小区 更新的小区为已知的邻区, 如果不在 则收到小区更新的小区是潜在漏配邻区。
进一步地, 根据得到的所述漏配邻区和所述漏配邻区的小区更新报告次数, 对所述漏 配邻区进行优先级排序。 本领域技术人员可以获知, 当小区接收到的小区更新报告次数越 多, 说明该小区作为漏配邻区的价值越高, 按照得到的漏配邻区中每个漏配邻区的小区更 新报告次数从多到少排序, 将小区更新报告次数最多的漏配邻区作为最有价值的漏配邻区, 设置为优先级最高, 小区更新报告次数最少的漏配邻区作为价值最小的漏配邻区, 设置为 优先级最低, 其间的各个邻区按照该规则排序, 最终确定各个小区作为漏配邻区的优先级。 需要说明的是, 设置该优先级的目的在于进行网优时可以优先推荐优先级高的漏配邻区, 进一步地, 该优先级设置可以有多种, 由技术人员在服务器端进行设置, 本发明不做具体 限定。
进一步地, 服务器还可以根据地理信息获取的漏配邻区的价值进行评估, 具体地, 在 地图中判断, 漏配邻区是否存在切换可能性, 如果是, 则网优可结合该结论, 将检测到的 漏配邻区添加为源小区的邻区, 减少网络小区更新次数, 提升业务体验。 或者现网也可以 对过远覆盖小区进行 RF优化, 调整小区覆盖距离, 天线参数等, 避免用户和较远覆盖小区 发生小区更新。
206: 使用该漏配邻区进行邻区优化。
具体地, 邻区优化包括: 网优服务器根据小区更新的报告, 生成一份邻区优化调整建 议, 在建议中指出一些系统获取的漏配邻区, 建议有 GUI (Graphical User Interface, 图 形用户界面) 界面显示, 也可以导出报表 (Excel )。 然后, 网优工程师可以根据系统给出 的建议, 结合实际地理环境和经验, 进行判断: 如果认为系统给出建议合理, 则通过修改 网络邻区配置, 调整邻区关系如果认为系统给出建议不合理, 则不对网络邻区关系进行修 改。
本实施例提供的方法, 通过获取用户设备进行小区更新时上报的小区更新报告, 并对 小区更新报告进行分析, 以获取漏配邻区, 并根据获取的漏配邻区进行邻区优化, 提升了 漏配邻区分析的准确度, 改善孤立场景邻区关系优化精度, 提升网络质量。
图 3为本发明提供的邻区优化分析服务器的一个实施例的结构示意图, 参见图 3, 该服 务器包括:
小区更新报告获取模块 301, 用于获取用户设备的小区更新报告;
漏配邻区分析模块 302, 用于分析该小区更新报告, 得到漏配邻区;
邻区优化模块 303, 用于使用该漏配邻区进行邻区优化。
参见图 4, 漏配邻区分析模块 302包括:
判断单元 3021, 用于根据该小区更新报告中的小区更新原因值、 小区更新前小区标识 和收到小区更新的小区标识, 对该收到小区更新的小区进行判断;
获取单元 3022, 用于根据判断结果得到漏配邻区。
参见图 5, 该判断单元 3021包括:
第一判断子单元 3021a, 用于遍历全部该小区更新报告, 判断该小区更新报告中的小区 更新原因值是否为预设值, 如果是, 则触发用于判断该小区更新消息中小区更新前小区标 识和收到小区更新的小区标识是否相同的第二判断子单元 3021b, 如果否, 则触发用于判断 该收到小区更新的小区标识是否在该本地的邻区配置中的第三判断子单元 3021c, 如果否, 则将该收到小区更新的小区作为漏配邻区。
参见图 6, 该服务器还包括:
排序模块 304, 用于根据得到的该漏配邻区和该漏配邻区的小区更新报告次数, 对该漏 配邻区进行优先级排序。
参见图 7, 该小区更新报告获取模块 301包括:
接收单元 3011, 用于接收测量统计报告,
获取单元 3012, 用于从该测量统计报告中查找并获取包括该小区更新报告。
本实施例提供的服务器, 具体可以网络优化服务器, 与方法实施例属于同一构思, 其 具体实现过程详见方法实施例, 这里不再赘述。
本发明实施例提供了一种通信系统, 该系统包括:
测量统计报告收集设备, 用于收集用户设备上报的测量统计报告;
邻区优化分析服务器, 用于根据该测量统计报告收集设备收集的测量统计报告, 获取 用户设备的小区更新报告; 分析该小区更新报告, 得到漏配邻区; 使用该漏配邻区进行邻 区优化。
本实施例提供的通信系统, 与方法实施例属于同一构思, 其具体实现过程详见方法实 施例, 这里不再赘述。
本发明实施例可以利用软件实现, 相应的软件程序可以存储在可读取的存储介质中, 例如, 计算机的硬盘、 缓存或光盘中。
以上所述仅为本发明的较佳实施例, 并不用以限制本发明, 凡在本发明的精神和原则 之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的保护范围之内。

Claims

权 利 要 求 书
1、 一种邻区优化的方法, 其特征在于, 包括:
获取用户设备的小区更新报告;
分析所述小区更新报告, 得到漏配邻区;
使用所述漏配邻区进行邻区优化。
2、 根据权利要求 1所述的方法, 其特征在于, 分析所述小区更新报告, 得到漏配邻区, 具体包括:
根据所述小区更新报告中的小区更新原因值、 小区更新前小区标识和收到小区更新的小 区标识, 对所述收到小区更新的小区进行判断, 根据判断结果得到漏配邻区。
3、根据权利要求 2所述的方法, 其特征在于, 根据所述小区更新报告中的小区更新原因 值、 小区更新前小区标识和收到小区更新的小区标识,对所述收到小区更新的小区进行判断, 根据判断结果得到漏配邻区, 具体包括:
遍历全部所述小区更新报告,判断所述小区更新报告中的小区更新原因值是否为预设值, 如果是, 则判断所述小区更新消息中小区更新前小区标识和收到小区更新的小区标识是否相 同, 如果否, 则判断所述收到小区更新的小区标识是否在所述本地的邻区配置中, 如果否, 则将所述收到小区更新的小区作为漏配邻区。
4、根据权利要求 1所述的方法,其特征在于,获取用户设备的小区更新报告, 具体包括: 接收测量统计报告, 并从所述测量统计报告中查找并获取所述小区更新报告。
5、 根据权利要求 1所述的方法, 其特征在于, 使用所述漏配邻区进行邻区优化, 之前包 括:
根据得到的所述漏配邻区和所述漏配邻区的小区更新报告次数, 对所述漏配邻区进行优 先级排序。
6、 一种邻区优化分析服务器, 其特征在于, 包括:
小区更新报告获取模块, 用于获取用户设备的小区更新报告;
漏配邻区分析模块, 用于分析所述小区更新报告, 得到漏配邻区;
邻区优化模块, 用于使用所述漏配邻区进行邻区优化。
7、 根据权利要求 6所述的邻区优化分析服务器, 其特征在于, 漏配邻区获取模块包括: 判断单元, 用于根据所述小区更新报告中的小区更新原因值、 小区更新前小区标识和收 到小区更新的小区标识, 对所述收到小区更新的小区进行判断;
获取单元, 用于根据判断结果得到漏配邻区。
8、 根据权利要求 7所述的邻区优化分析服务器, 其特征在于, 所述判断单元包括: 第一判断子单元, 用于遍历全部所述小区更新报告, 判断所述小区更新报告中的小区更 新原因值是否为预设值, 如果是, 则触发用于判断所述小区更新消息中小区更新前小区标识 和收到小区更新的小区标识是否相同的第二判断子单元, 如果否, 则触发用于判断所述收到 小区更新的小区标识是否在所述本地的邻区配置中的第三判断子单元, 如果否, 则将所述收 到小区更新的小区作为漏配邻区。
9、根据权利要求 6所述的邻区优化分析服务器, 其特征在于, 所述小区更新报告获取模 块包括:
接收单元, 用于接收测量统计报告;
获取单元, 用于从所述测量统计报告中查找并获取包括所述小区更新报告。
10、 根据权利要求 6所述的邻区优化分析服务器, 其特征在于, 所述服务器还包括: 排序模块, 用于根据得到的所述漏配邻区和所述漏配邻区的小区更新报告次数, 对所述 漏配邻区进行优先级排序。
11、 一种通信系统, 其特征在于, 所述系统包括:
测量统计报告收集设备, 用于收集用户设备上报的测量统计报告;
邻区优化分析服务器, 用于根据所述测量统计报告收集设备收集的测量统计报告, 获取 用户设备的小区更新报告; 分析所述小区更新报告, 得到漏配邻区; 使用所述漏配邻区进行 邻区优化。
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