WO2024036956A1 - 基站配置参数更新方法、设备及存储介质 - Google Patents

基站配置参数更新方法、设备及存储介质 Download PDF

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Publication number
WO2024036956A1
WO2024036956A1 PCT/CN2023/083174 CN2023083174W WO2024036956A1 WO 2024036956 A1 WO2024036956 A1 WO 2024036956A1 CN 2023083174 W CN2023083174 W CN 2023083174W WO 2024036956 A1 WO2024036956 A1 WO 2024036956A1
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Prior art keywords
base station
fault
data
configuration parameters
parameter
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PCT/CN2023/083174
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English (en)
French (fr)
Inventor
智亚丹
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中兴通讯股份有限公司
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Publication of WO2024036956A1 publication Critical patent/WO2024036956A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0823Configuration setting characterised by the purposes of a change of settings, e.g. optimising configuration for enhancing reliability
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/085Retrieval of network configuration; Tracking network configuration history
    • H04L41/0853Retrieval of network configuration; Tracking network configuration history by actively collecting configuration information or by backing up configuration information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/18Network planning tools
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/04Arrangements for maintaining operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present disclosure relates to the field of communication technology, and in particular, to a base station configuration parameter updating method, device and storage medium.
  • communication base stations are used as wireless propagation communication equipment, such as the Second Generation Mobile Communication Partnership Project (2G) base station, the Third Generation Mobile Communication Partnership Project (Third Generation Partnership Project) Project, 3G) base stations, the 4th generation mobile communication technology (4G) and the 5th-Generation Mobile Communication Technology (5G) base stations and other types of base stations, with the development of communication technology With rapid development, the number of operator networks and their coexistence are becoming more and more complex. Base stations are prone to various problems, such as internal hardware damage and system failures in the base station, as well as external power interruptions and natural disasters, resulting in poor communication quality.
  • 2G Second Generation Mobile Communication Partnership Project
  • 3G Third Generation Mobile Communication Partnership Project
  • 4G 4th generation mobile communication technology
  • 5G 5th-Generation Mobile Communication Technology
  • base station maintenance involves obtaining massive log information such as alarms, configurations, performance, and operation logs of the base station through base station management software, and performing base station fault query and maintenance based on the massive log information.
  • massive log information such as alarms, configurations, performance, and operation logs of the base station
  • the related base station maintenance methods have inefficiency in locating problems, and certain When a base station fails, it cannot automatically identify and adjust the parameters of other nearby base stations, and cannot eliminate problems such as coverage holes caused by the faulty site. Therefore, how to timely update the configuration parameters of base stations in a single-domain network to improve the stability and service capabilities of the base stations is an issue that needs to be solved urgently.
  • Embodiments of the present disclosure provide a base station configuration parameter updating method, device, and storage medium.
  • embodiments of the present disclosure provide a method for updating base station configuration parameters, including: obtaining fault service data sent by at least one base station in a preset area, and generating a fault cause report based on the fault service data; and based on the fault service data.
  • the fault cause report optimizes the configuration parameters of the base station, and sends the optimized configuration parameters to each base station in the preset area, so that each base station updates the configuration parameters according to the optimized configuration parameters.
  • embodiments of the present disclosure further provide a computer device, which includes a processor, a memory, a computer program stored on the memory and executable by the processor, and a computer program for implementing the processing.
  • a data bus for connection and communication between the processor and the memory.
  • embodiments of the present disclosure also provide a storage medium for computer-readable storage.
  • the storage medium stores one or more programs.
  • the one or more programs can be processed by one or more processors. Execute to implement any base station configuration parameter updating method as provided in this disclosure.
  • Figure 1 is a schematic flow chart of a base station configuration parameter updating method provided by an embodiment of the present disclosure
  • Figure 2 is a schematic flow chart of another base station configuration parameter updating method provided by an embodiment of the present disclosure.
  • Figure 3 is a schematic flow chart of another base station configuration parameter updating method provided by an embodiment of the present disclosure.
  • Figure 4 is a schematic diagram of a scenario of a base station configuration parameter updating method provided by an embodiment of the present disclosure.
  • FIG. 5 is a schematic structural block diagram of a computer device provided by an embodiment of the present disclosure.
  • Embodiments of the present disclosure provide a base station configuration parameter updating method, device, and storage medium.
  • the base station configuration parameter updating method can be applied to computer equipment.
  • the computer equipment can be servers and terminal equipment.
  • the terminal equipment can be desktop computers, notebook computers, tablet computers and other equipment.
  • the server obtains the fault service data sent by at least one base station in the preset area, and generates a fault cause report based on the fault service data; optimizes the configuration parameters of the base station based on the fault cause report, and sends the optimized
  • the configuration parameters are sent to each base station in the preset area, so that each base station updates the configuration parameters according to the optimized configuration parameters.
  • FIG. 1 is a schematic flowchart of a base station configuration parameter updating method provided by an embodiment of the present disclosure.
  • the base station configuration parameter updating method may include steps S101 to S102.
  • Step S101 Obtain fault service data sent by at least one base station in the preset area, and generate a fault cause report based on the fault service data.
  • the preset area is an area divided according to geographical location or business type.
  • the preset area can be divided according to actual conditions.
  • the embodiments of the present disclosure do not specifically limit this.
  • a certain area can be divided according to geographical location. All base stations in a city are divided into a preset area; for example, the division of service types may be to divide base stations whose service type is a call service type into a preset area.
  • steps S103 to S104 may also be included before step S101.
  • Step S103 When it is determined that a communication connection is established with at least one base station in the preset area, a data collection task is generated.
  • the computer device generates a communication connection request and sends the communication connection request to each base station in the preset area.
  • Each base station in the preset area determines whether to establish a communication connection with the computer device based on the communication connection request.
  • Communication connection if the base station agrees to establish a communication connection with the computer device, then sends a communication connection response instruction to the computer device, so that the computer device determines to establish a communication connection with the base station according to the communication connection response instruction.
  • collection parameter information is obtained.
  • the collection parameter information is used to indicate various indicators for collecting base station business data.
  • Generate data collection tasks By generating data collection tasks, the efficiency and accuracy of collecting base station fault service data can be improved.
  • the collection parameter information includes at least one of collection basic information, base station list information, collection item information, and collection scene information; obtaining at least one of collection basic information, base station list information, collection item information, and collection scene information
  • a data collection task is generated based on basic collection information, base station list information, collection item information, and collection scene information.
  • the collection basic information, base station list information, collection item information, and collection scene information can be set according to actual conditions, and the embodiments of the present disclosure do not specifically limit this.
  • various collection indicators for generating data collection tasks can be accurately known, which greatly improves the efficiency and accuracy of base station fault service data. .
  • the collection basic information includes collection level, task execution time and reporting method.
  • the collection level includes cell level and base station level.
  • the task execution time includes immediate execution and execution according to a preset time period.
  • the reporting method includes base station Active reporting and user operation reporting.
  • the base station list information is used to indicate the base station that collects faulty service data.
  • the base station list information includes all base stations in city A.
  • the collection item information includes base station performance indicators, alarm information, configuration data, system logs, etc. item.
  • the collection items include current alarms, historical alarms, base station operating version, base station configuration data, automated Log collection, UPAPCAP, BBULOGCONFIG, BBPHY, AAUSNIFFER and BITFPGA.
  • the current alarm is to collect the latest alarm of the base station
  • the historical alarm is to collect the historical alarm of the base station
  • the base station running version is to collect the version information of the base station running in the network
  • the base station configuration data is to collect the configuration data information related to the base station
  • the automatic log collection is to collect
  • Base station abnormal log reports triggered by abnormal events include: paging problems, intra-site handover failure and re-establishment failure and other log information.
  • UPAPCAP collects user plane packet capture information
  • BBULOGCONFIG collects base station information including: control plane log (CpaLog ), user plane log (UpaLog), DTS log (UdtLog), SonLog, SpaLog, PhyLog and other information.
  • BBPHY collects PHY capture log information
  • AAUSNIFFER collects AAU capture log information
  • BITFPGA collects LDPC capture log information.
  • the collection scenario information includes access type, call drop type, handover type, baseband processing unit (Building Base Band Unit, BBU) board abnormality type fault, automatic answering unit (Automatic Answering Unit) , AAU) or radio frequency remote radio unit (Remote Radio Unit, RRU) alarm faults, optical port fiber faults, AAU noise floor abnormality faults, voice faults, base station upgrade faults and transmission faults.
  • the collection item information of this access type includes alarm information, base station configuration data, automated log collection, signaling information, etc.
  • the collection item information of call drop type includes alarm information, base station configuration data, base station version package, and historical base station performance indicators.
  • switching type collection item information includes alarm information, base station historical change information, automated log collection, signaling information, etc.
  • BBU board abnormality type Fault collection item information includes base station operating version, base station software package version, base station historical changes, automated Log collection, signaling information, etc.
  • AAU or RRU alarm fault collection item information includes alarm information, base station software package version, automated Log collection, Signaling information, AAUSNIFFER, etc.
  • collection item information for optical port fiber faults includes alarm information, base station software package version, automated Log collection, signaling information, BBULOGCONFIG, etc.
  • collection item information for AAU abnormal noise floor faults includes alarm information, Base station configuration data, BBPHY, AAUSNIFFER, etc.
  • voice collection item information includes alarm information, base station configuration data, automated log collection, signaling information, etc.
  • base station upgrade fault collection item information includes base station operating version, base station software package version, Base station historical changes, etc.
  • collection item information for transmission faults includes alarm information, base station configuration data, automated log collection, base station operating
  • Step S104 Send the data collection task to each base station in the preset area so that each base station can perform the data collection task. To obtain the fault service data and send the fault service data to the computer device.
  • the data collection task when a data collection task is obtained, the data collection task is sent to each base station in a preset area.
  • each base station receives the data collection task, it will collect data based on the data collection task. At least one of basic information, base station list information, collection item information and collection scene information, monitors business data in each base station, collects faulty business data from the business data, and sends the faulty business data to the computer equipment, so that the computer equipment Receive fault service data sent by each base station.
  • the fault service data of each base station can be accurately received.
  • the base station collects the fault service data, compresses the fault service data, obtains the compressed fault service data, and sends the compressed fault service data to the computer device through a preset transmission method.
  • the preset transmission method can be set according to the actual situation. The embodiment of the present disclosure does not specifically limit this.
  • the preset transmission method can be File Transfer Protocol (FTP) or Simple File Transfer Protocol. (Trivial File Transfer Protocol, TFTP).
  • FTP File Transfer Protocol
  • TFTP Simple File Transfer Protocol
  • steps S105 to S106 may also be included before step S101.
  • Step S105 Obtain the fault detection instruction of the base station sent by the user, and generate a data collection task according to the fault detection instruction.
  • the fault detection instruction carries the collection parameter information for fault service data collection.
  • the basic collection information includes at least one of base station list information, collection item information and collection scene information. According to the fault detection Set basic information in the command to generate a data collection task.
  • Step S106 Send the data collection task to each base station in the preset area, so that each base station can perform the data collection task to obtain the fault service data, and send the fault service data to the computer device.
  • the data collection task when a data collection task is obtained, the data collection task is sent to each base station in a preset area.
  • each base station receives the data collection task, it will collect data based on the data collection task. At least one of basic information, base station list information, collection item information and collection scene information, monitors business data in each base station, collects faulty business data from the business data, and sends the faulty business data to the computer equipment, so that the computer equipment Receive fault service data sent by each base station.
  • the fault service data of each base station can be accurately received.
  • the fault type of the faulty service data is determined, and a matching preset decoding library is obtained according to the fault type; the faulty service data is decoded according to the preset decoding library, base station data information is generated, and the fault is generated according to the base station data information.
  • Cause report By decoding the faulty service data, the base station data information can be accurately obtained. Based on base station data information, fault cause reports can be accurately generated.
  • the method of obtaining the matching preset decoding library according to the fault type may be: obtaining the mapping relationship table between the preset fault type and the decoding library, and querying the decoding corresponding to the fault type from the mapping relationship table. library to obtain the decoding library matching the fault service data.
  • the mapping relationship table is established in advance based on the fault type and the decoding library.
  • the mapping relationship table can be established according to the actual situation. The embodiment of the present disclosure does not specifically limit this.
  • the decoding library includes C/C++/Java/sql, etc. Language decoding library. Through this mapping relationship table, the decoding library matching the fault business data can be accurately queried, which greatly improves the efficiency and accuracy of fault analysis.
  • the method of generating a fault cause report based on base station data information may be: the base station data information includes multiple performance parameter indicators, obtains multiple preset performance parameter indicators, and compares the multiple performance parameter indicators with the preset Compare multiple performance parameter indicators to obtain the target performance parameter indicator with a fault; determine the cause of the fault based on the target performance parameter indicator, and generate a fault cause report.
  • the performance index can be set according to the actual situation, and the embodiments of the present disclosure do not specifically limit this.
  • the performance index can be performance parameter indexes such as call drop rate, packet loss rate, and transmission error rate.
  • the method of determining the fault cause based on the target performance parameter index and generating the fault cause report may be: obtaining a preset fault cause analysis table, and querying the target performance parameter index failure caused by the preset fault cause analysis table. reasons, obtain at least one fault cause corresponding to the fault business data, generate a data table for each fault cause, and obtain a fault cause report.
  • the preset failure cause analysis table is a failure cause analysis table generated in advance based on each failure cause.
  • the preset failure cause analysis table can be set according to the actual situation, and the embodiment of the present disclosure does not specifically limit this.
  • the cause of the fault can be accurately queried through the preset fault cause analysis table, and a fault cause report can be accurately obtained based on the fault cause.
  • Step S102 Optimize the configuration parameters of the base station based on the fault cause report, and send the optimized configuration parameters to each base station in the preset area, so that each base station updates the configuration parameters according to the optimized configuration parameters.
  • the parameter item to be optimized from the fault cause report, and obtain the preset mapping relationship table between the parameter item to be optimized and the configuration parameter gain value; query the configuration parameter gain value corresponding to the parameter item to be optimized according to the mapping relationship table, and obtain the configuration parameter gain value to be optimized
  • the parameter item corresponds to the target configuration parameter gain value, and the configuration parameters of the base station are updated according to the target configuration parameter gain value.
  • the mapping relationship table is established in advance based on the parameter item to be optimized and the configuration parameter gain value.
  • the mapping relationship table can be established according to the actual situation, and the embodiment of the present disclosure does not specifically limit this.
  • the target configuration parameter gain value corresponding to the parameter to be optimized can be accurately queried through the mapping relationship table, and the updated configuration parameter can be accurately obtained according to the target configuration parameter gain value.
  • the optimized configuration parameters are sent to each base station in the preset area. After each base station in the preset area receives the optimized configuration parameters, According to this optimization Configuration parameters are updated with the subsequent configuration parameters.
  • each base station in the preset area can update the configuration parameters before a failure occurs, which greatly improves the stability and service of the base station. ability.
  • the data collection task when optimized configuration parameters are obtained, the data collection task is updated according to the optimized configuration parameters, and the data collection task is updated through the optimized configuration parameters.
  • the data collection task can be updated in real time, which greatly improves the efficiency of the data collection task. Improve the efficiency and accuracy of fault business data.
  • the method of updating the data collection task according to the optimized configuration parameters is set according to the actual situation.
  • the embodiments of the present disclosure do not specifically limit this.
  • the data collection task is updated to collect data corresponding to the optimized configuration parameters.
  • the service can accurately and effectively track whether the updated configuration parameters prevent the operation of the base station from malfunctioning.
  • UE1 is communicating with base station 1, and UE2 is communicating with base station 2 and base station 3 respectively.
  • Base station 1, base station 2, and base station 3 belong to base stations in the same single-domain network.
  • a data collection task is generated and sent to base station 1, base station 2 and base station 3.
  • Base station 1, base station 2 and base station 3 collect data according to the The task collects fault service data and sends the collected fault service data to the computer device.
  • the computer device receives the fault service data sent by at least one base station among base station 1, base station 2 and base station 3, and generates a fault cause report based on the fault service data. ; Optimize the configuration parameters of the base station based on the fault cause report, and send the optimized configuration parameters to base station 1, base station 2, and base station 3, so that base station 1, base station 2, and base station 3 update the configuration parameters according to the optimized configuration parameters.
  • the base station configuration parameter updating method in the above embodiment obtains fault service data sent by at least one base station in the preset area, and generates a fault cause report based on the fault service data; then optimizes the configuration parameters of the base station based on the fault cause report, and The optimized configuration parameters are sent to each base station in the preset area, so that each base station updates the configuration parameters according to the optimized configuration parameters.
  • This solution optimizes the configuration parameters of the base station based on the fault service data of a base station in the preset area, and sends the optimized configuration parameters to each base station in the preset area, so that each base station operates based on the optimized configuration parameters.
  • Configuration parameter update enables each base station in the preset area to update the configuration parameters before a failure occurs, improves the efficiency and accuracy of configuration parameter update of base stations in a single domain network, and greatly improves the stability and service capabilities of the base station. .
  • FIG. 5 is a schematic structural block diagram of a computer device provided by an embodiment of the present disclosure.
  • the computer device 200 includes a processor 201 and a memory 202.
  • the processor 201 and the memory 202 are connected through a bus 203, such as an I2C (Inter-integrated Circuit) bus.
  • I2C Inter-integrated Circuit
  • the processor 201 is used to provide computing and control capabilities and support the operation of the entire computer device.
  • the processor 201 can be a central processing unit (Central Processing Unit, CPU).
  • the processor 201 can also be other general-purpose processors, digital signal processors (Digital Signal Processor, DSP), application specific integrated circuits (Application Specific Integrated Circuit (ASIC), Field-Programmable Gate Array (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
  • the general processor may be a microprocessor or the processor may be any conventional processor.
  • the memory 202 can be a Flash chip, a read-only memory (ROM, Read-Only Memory) disk, an optical disk, a U disk or a mobile hard disk, etc.
  • ROM Read-Only Memory
  • FIG. 5 is only a block diagram of a partial structure related to the disclosed solution, and does not constitute a limitation on the computer equipment to which the disclosed solution is applied.
  • the computer device may include more than The figures show more or fewer parts, or certain parts combined, or with different arrangements of parts.
  • the processor is configured to run a computer program stored in the memory, and implement any one of the base station configuration parameter updating methods provided by the embodiments of the present disclosure when executing the computer program.
  • the processor 201 is used to run a computer program stored in the memory, and implement the following steps when executing the computer program: obtain the fault service data sent by at least one base station in the preset area, and based on the fault service data, Generate a fault cause report; optimize the configuration parameters of the base station based on the fault cause report, and send the optimized configuration parameters to each base station in the preset area, so that each base station can update the configuration parameters according to the optimized configuration parameters.
  • the processor 201 before acquiring the faulty service data sent by at least one base station in the preset area, the processor 201 also implements: when it is determined to establish a communication connection with at least one base station in the preset area, generate a data collection task ; Send the data collection task to each base station in the preset area, so that each base station can perform the data collection task to obtain the fault service data, and send the fault service data to the computer equipment.
  • the processor 201 when generating a data collection task, the processor 201: obtains collection parameter information, which is used to indicate various indicators for collecting base station business data; and generates a data collection task based on the collection parameter information.
  • the processor 201 before acquiring the faulty service data sent by at least one base station in the preset area, the processor 201 also implements: acquiring the fault detection instruction of the base station sent by the user, and generating a data collection task according to the fault detection instruction; Send the data collection task to each base station in the preset area, so that each base station can perform the data collection task to obtain the fault service data, and send the fault service data to the computer equipment.
  • the processor 201 after optimizing the configuration parameters of the base station based on the fault cause report, the processor 201 also implements: updating the data collection task according to the optimized configuration parameters.
  • the processor 201 when generating a fault cause report based on faulty service data, the processor 201: determines the fault type of the faulty service data, and obtains a matching preset decoding library according to the fault type; The fault service data is decoded to generate base station data information, and a fault cause report is generated based on the base station data information.
  • the processor 201 when the processor 201 implements that the base station data information includes multiple performance parameter indicators and generates a fault cause report based on the base station data information, the processor 201: obtains the preset multiple performance parameter indicators and combines the multiple performance parameter indicators. The indicators are compared with the preset multiple performance parameter indicators to obtain the target performance parameter indicators with faults; the cause of the fault is determined based on the target performance parameter indicators and a fault cause report is generated.
  • the processor 201 when optimizing the configuration parameters of the base station based on the fault cause report, the processor 201: obtains the parameter item to be optimized from the fault cause report, and obtains the relationship between the preset parameter item to be optimized and the configuration parameter gain value.
  • the mapping relationship table query the configuration parameter gain value corresponding to the parameter item to be optimized according to the mapping relationship table, obtain the target configuration parameter gain value corresponding to the parameter item to be optimized, and update the configuration parameters of the base station according to the target configuration parameter gain value.
  • Embodiments of the present disclosure also provide a storage medium for computer-readable storage.
  • the storage medium stores one or more programs.
  • the one or more programs can be executed by one or more processors to implement the implementation as provided in the present disclosure. Any base station maintenance method.
  • the storage medium may be an internal storage unit of the computer device of the aforementioned embodiments, such as a hard disk or memory of the computer device.
  • the storage medium can also be an external storage device of the computer device, such as a plug-in hard drive equipped on the computer device, a Smart Media Card (SMC), a Secure Digital (SD) card, or a Flash Card (Flash Card). wait.
  • SMC Smart Media Card
  • SD Secure Digital
  • Flash Card Flash Card
  • Such software may be distributed on computer-readable media, which may include computer storage media (or non-transitory media) and communication media (or transitory media).
  • computer storage media includes volatile and nonvolatile media implemented in any method or technology for storage of information such as computer readable instructions, data structures, program modules or other data. removable, removable and non-removable media.
  • Computer storage media includes, but is not limited to, RAM, ROM, EEPROM, flash memory or other memory technology, CD-ROM, Digital Versatile Disk (DVD) or other optical disk storage, magnetic cassettes, tapes, disk storage or other magnetic storage devices, or may Any other medium used to store the desired information and that can be accessed by a computer.
  • communication media typically embodies computer readable instructions, data structures, program modules or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery media .
  • the embodiments of the present disclosure provide a base station configuration parameter updating method, device and storage medium.
  • the embodiments of the present disclosure provide Obtain the fault service data sent by at least one base station in the preset area, and generate a fault cause report based on the fault service data; then optimize the configuration parameters of the base station based on the fault cause report, and send the optimized configuration parameters to each base station in the preset area. base station, so that each base station can update configuration parameters according to the optimized configuration parameters.
  • This solution optimizes the configuration parameters of the base station based on the fault service data of a base station in the preset area, and sends the optimized configuration parameters to each base station in the preset area, so that each base station operates based on the optimized configuration parameters.
  • Configuration parameter update enables each base station in the preset area to update the configuration parameters before a failure occurs, improves the efficiency and accuracy of configuration parameter update of base stations in a single domain network, and greatly improves the stability and service capabilities of the base station. .

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Abstract

本公开实施例提供一种基站配置参数更新方法、设备及存储介质,属于通信领域。该方法包括:获取预设区域内至少一个基站发送的故障业务数据,并根据故障业务数据,生成故障原因报告;基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至预设区域内各所述基站,以使各基站根据优化后的配置参数进行配置参数更新。

Description

基站配置参数更新方法、设备及存储介质
相关申请的交叉引用
本公开要求享有2022年08月19日提交的名称为“基站配置参数更新方法、设备及存储介质”的中国专利申请CN202210999713.8的优先权,其全部内容通过引用并入本公开中。
技术领域
本公开涉及通信技术领域,尤其涉及一种基站配置参数更新方法、设备及存储介质。
背景技术
目前广泛应用的各种商业无线通信网络中,将通信基站作为无线传播通信设备,如第二代移动通信伙伴计划(Second Generation Partnership Project,2G)基站、第三代移动通信伙伴计划(Third Generation Partnership Project、3G)基站、第四代移动通信技术(the 4th generation mobile communication technology,4G)和第五代移动通信技术(5th-Generation Mobile Communication Technology,5G)基站等类型的基站,随着通信技术的高速发展,运营商网络多且并存越来越复杂,基站容易出现各种各样的问题,例如,基站内部硬件损坏和系统故障,以及外部的电力中断和自然灾害导致通信质量较差。
目前,基站维护是通过基站管理软件获取基站的告警、配置、性能、运行日志等海量日志信息,根据海量日志信息进行基站故障查询和维护,但是相关的基站维护方式存在定位问题效率低、且某个基站发生故障,无法自动识别并调整附近其他基站的参数,无法消除故障站点导致的覆盖空洞等问题。因此,如何及时地更新单域网络内基站的配置参数,以提高基站的稳定性和服务能力是目前亟待解决的问题。
发明内容
本公开实施例提供了一种基站配置参数更新方法、设备及存储介质。
第一方面,本公开实施例提供了一种基站配置参数更新方法,包括:获取预设区域内至少一个基站发送的故障业务数据,并根据所述故障业务数据,生成故障原因报告;以及基于所述故障原因报告优化基站的配置参数,并将优化后的配置参数发送至所述预设区域内各所述基站,以使各所述基站根据优化后的配置参数进行配置参数更新。
第二方面,本公开实施例还提供了一种计算机设备,所述计算机设备包括处理器、存储器、存储在所述存储器上并可被所述处理器执行的计算机程序以及用于实现所述处理器和所述存储器之间的连接通信的数据总线,所述计算机程序被所述处理器执行时,实现如 本公开说明书提供的任一项基站配置参数更新方法。
第三方面,本公开实施例还提供了一种存储介质,用于计算机可读存储,所述存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现如本公开说明书提供的任一项基站配置参数更新方法。
附图说明
图1为本公开实施例提供的一种基站配置参数更新方法的流程示意图;
图2为本公开实施例提供的另一种基站配置参数更新方法的流程示意图;
图3为本公开实施例提供的另一种基站配置参数更新方法的流程示意图;
图4为本公开实施例提供的基站配置参数更新方法的一场景示意图;以及
图5为本公开实施例提供的一种计算机设备的结构示意性框图。
具体实施方式
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
附图中所示的流程图仅是示例说明,不是必须包括所有的内容和操作/步骤,也不是必须按所描述的顺序执行。例如,有的操作/步骤还可以分解、组合或部分合并,因此实际执行的顺序有可能根据实际情况改变。
应当理解,在本公开说明书中所使用的术语仅仅是出于描述特定实施例的目的而并不意在限制本公开。如在本公开说明书和所附权利要求书中所使用的那样,除非上下文清楚地指明其它情况,否则单数形式的“一”、“一个”及“该”意在包括复数形式。
本公开实施例提供一种基站配置参数更新方法、设备及存储介质。该基站配置参数更新方法可应用于计算机设备,该计算机设备可以是服务器和终端设备,该终端设备台式电脑、笔记本电脑和平板电脑等设备。例如,该计算机设备为服务器时,服务器获取预设区域内至少一个基站发送的故障业务数据,并根据故障业务数据,生成故障原因报告;基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至预设区域内各基站,以使各基站根据优化后的配置参数进行配置参数更新。
下面结合附图,对本公开的一些实施方式作详细说明。在不冲突的情况下,下述的实施例及实施例中的特征可以相互组合。
请参照图1,图1为本公开实施例提供的一种基站配置参数更新方法的流程示意图。
如图1所示,该基站配置参数更新方法可以包括步骤S101至步骤S102。
步骤S101、获取预设区域内至少一个基站发送的故障业务数据,并根据故障业务数据,生成故障原因报告。
该预设区域为根据地理位置或者业务类型等方式进行划分的区域,该预设区域可以根据实际情况进行划分,本公开实施例对此不做具体限定,例如,根据地理位置进行划分可以将某个城市中的所有基站划分为一个预设区域;例如,业务类型进行划分可以为将业务类型为通话业务类型的基站划分为一个预设区域。
在一些实施例中,如图2所示,步骤S101之前还可以包括步骤S103至步骤S104。
步骤S103、在确定与预设区域内至少一个基站建立通信连接的情况下,生成数据采集任务。
在一些实施例中,计算机设备生成通信连接请求,并将该通信连接请求发送至预设区域内的每个基站,预设区域内的每个基站根据该通信连接请求确定是否与该计算机设备建立通信连接,若基站同意与该计算机设备建立通信连接,则向该计算机设备发送通信连接响应指令,以使计算机设备根据该通信连接响应指令确定与基站建立通信连接。通过向各基站发送通信连接请求,能够准确地与各基站建立通信连接,极大地提高了基站配置参数更新的效率。
在一些实施例中,在确定与预设区域内至少一个基站建立通信连接的情况下,获取采集参数信息,该采集参数信息用于指示采集基站业务数据的各项指标,根据该采集参数信息,生成数据采集任务。通过生成数据采集任务,能够提高采集基站的故障业务数据的效率和准确性。
在一些实施例中,该采集参数信息包括采集基本信息、基站列表信息、采集项信息和采集场景信息中至少一种;获取采集基本信息、基站列表信息、采集项信息和采集场景信息中至少一种,根据采集基本信息、基站列表信息、采集项信息和采集场景信息,生成数据采集任务。该采集基本信息、基站列表信息、采集项信息和采集场景信息可以根据实际情况进行设置,本公开实施例对此不做具体限定。通过取采集基本信息、基站列表信息、采集项信息和采集场景信息中至少一种,能够准确地知晓生成数据采集任务的各项采集指标,极大地提高了基站的故障业务数据的效率和准确性。
示例性地,该采集基本信息包括采集级别、任务执行时间和上报方式,该采集级别包括小区级别和基站级别,该任务执行时间包括立即执行和按照预设时间段进行执行,该上报方式包括基站主动上报和用户操作上报。基站列表信息用于指示采集故障业务数据的基站,例如,该基站列表信息包括A城市所有的基站。
示例性地,该采集项信息包括基站性能指标、告警信息、配置数据和系统日志等采集 项。如图表1所示,该采集项包括当前告警、历史告警、基站运行版本、基站配置数据、自动化Log采集、UPAPCAP、BBULOGCONFIG、BBPHY、AAUSNIFFER和BITFPGA。该当前告警为采集基站的最新告警,历史告警为采集基站的历史告警,基站运行版本为采集基站在网络中运行的版本信息,基站配置数据为采集基站相关的配置数据信息、自动化Log采集为采集异常事件触发的基站异常日志上报,包括:寻呼问题、站内切换出失败和重建立失败等日志信息,UPAPCAP为采集用户面的抓包信息、BBULOGCONFIG为采集的基站信息包括:控制面日志(CpaLog)、用户面日志(UpaLog)、DTS日志(UdtLog)、SonLog、SpaLog、PhyLog等信息,BBPHY为采集PHY抓数日志信息,AAUSNIFFER为采集AAU抓数日志信息,BITFPGA为采集LDPC抓数日志信息。
表1
示例性地,如表2所示,该采集场景信息包括接入类、掉话类、切换类、基带处理单(Building Base band Unit,BBU)单板异常类故障、自动应答单(Automatic Answering Unit,AAU)或射频拉远单元(Remote Radio Unit,RRU)告警故障、光口光纤类故障、AAU底噪异常类故障、语音类、基站升级类故障和传输类故障。其中,该接入类的采集项信息包括告警信息、基站配置数据、自动化Log采集、信令信息等;掉话类的采集项信息包括告警信息、基站配置数据、基站版本包、历史基站性能指标、信令信息等;切换类的采集项信息包括告警信息、基站历史变更信息、自动化Log采集、信令信息等;BBU单板异常类 故障的采集项信息包括基站运行版本、基站软件包版本、基站历史变更、自动化Log采集、信令信息等;AAU或RRU告警故障的采集项信息包括告警信息、基站软件包版本、自动化Log采集、信令信息、AAUSNIFFER等;光口光纤类故障的采集项信息包括告警信息、基站软件包版本、自动化Log采集、信令信息、BBULOGCONFIG等;AAU底噪异常类故障的采集项信息包括告警信息、基站配置数据、BBPHY、AAUSNIFFER等;语音类的采集项信息包括告警信息、基站配置数据、自动化Log采集、信令信息等;基站升级类故障的采集项信息包括基站运行版本、基站软件包版本、基站历史变更等;传输类故障的采集项信息包括告警信息、基站配置数据、自动化Log采集、基站运行版本、基站软件包版本、信令信息等。
表2
步骤S104、将数据采集任务发送给预设区域内各基站,以供各基站执行数据采集任务, 以获取故障业务数据,并将故障业务数据发送给计算机设备。
在一些实施例中,在得到数据采集任务的情况下,将数据采集任务发送至预设区域内的各个基站,各个基站在接收到该数据采集任务的情况下,基于该数据采集任务中的采集基本信息、基站列表信息、采集项信息和采集场景信息中至少一种信息,监测各基站中的业务数据,并从业务数据中采集故障业务数据,将故障业务数据发送计算机设备,以使计算机设备接收到各个基站发送的故障业务数据。通过接收各基站执行数据采集任务得到故障业务数据,能够准确地接收到各个基站的故障业务数据。
需要说明的是,基站在采集到故障业务数据,对该故障业务数据进行压缩,得到压缩后的故障业务数据,并通过预设的传输方式将压缩后的故障业务数据发送给计算机设备。其中,该预设的传输方式可以根据实际情况进行设置,本公开实施例对此不做具体限定,例如该预设的传输方式可以为文件传输协议(File Transfer Protocol,FTP)或简单文件传送协议(Trivial File Transfer Protocol,TFTP)。通过对故障业务数据进行压缩,能够使提高故障业务数据传输和存储的便捷性。
在一些实施例中,如图3所示,步骤S101之前还可以包括步骤S105至步骤S106。
步骤S105、获取用户发送的基站的故障检测指令,并根据故障检测指令,生成数据采集任务。
获取用户发送的基站的故障检测指令,该故障检测指令携带有进行故障业务数据采集的采集参数信息,该采集基本信息包括基站列表信息、采集项信息和采集场景信息中至少一种,根据故障检测指令中的集基本信息,生成数据采集任务。通过获取用户发送的基站的故障检测指令,能够根据该故障检测指令及时且准确地生成数据采集任务,极大地提高了基站配置参数更新的效率和准确性。
步骤S106、将数据采集任务发送给预设区域内各基站,以供各基站执行数据采集任务,以获取故障业务数据,并将故障业务数据发送给计算机设备。
在一些实施例中,在得到数据采集任务的情况下,将数据采集任务发送至预设区域内的各个基站,各个基站在接收到该数据采集任务的情况下,基于该数据采集任务中的采集基本信息、基站列表信息、采集项信息和采集场景信息中至少一种信息,监测各基站中的业务数据,并从业务数据中采集故障业务数据,将故障业务数据发送计算机设备,以使计算机设备接收到各个基站发送的故障业务数据。通过接收各基站执行数据采集任务得到故障业务数据,能够准确地接收到各个基站的故障业务数据。
在一些实施例中,确定故障业务数据的故障类型,并根据故障类型获取匹配的预设解码库;根据预设解码库对故障业务数据进行解码,生成基站数据信息,并根据基站数据信息生成故障原因报告。通过对故障业务数据进行解码,能够准确地得到基站数据信息,基 于基站数据信息能够准确地生成故障原因报告。
在一些实施例中,根据故障类型获取匹配的预设解码库的方式可以为:获取预设的故障类型与解码库之间的映射关系表,从该映射关系表中查询该故障类型对应的解码库,得到该故障业务数据所匹配的解码库。该映射关系表为预先根据故障类型和解码库建立的,该映射关系表的可以根据实际情况进行建立,本公开实施例对此不做具体限定,该解码库包括C/C++/Java/sql等语言的解码库。通过该映射关系表能够准确地查询到该故障业务数据所匹配的解码库,极大地提高了故障分析的效率和准确性。
在一些实施例中,根据基站数据信息生成故障原因报告的方式可以为:该基站数据信息包括多项性能参数指标,获取预设的多项性能参数指标,并将多项性能参数指标与预设的多项性能参数指标进行对比,得到存在故障的目标性能参数指标;根据目标性能参数指标确定故障原因,并生成故障原因报告。该性能指标可以根据实际情况进行设置,本公开实施例对此不做具体限定,例如,该性能指标可以为掉话率、丢包率和传输误码率等性能参数指标。通过确定存在故障的目标性能参数指标,根据目标性能参数指标能够准确地确认故障原因。
在一些实施例中,根据目标性能参数指标确定故障原因,并生成故障原因报告的方式可以为:获取预设的故障原因分析表,从预设的故障原因分析表中查询造成目标性能参数指标故障的原因,得到故障业务数据对应的至少一个故障原因,将各个故障原因生成数据表,得到故障原因报告。该预设的故障原因分析表为预先根据各个故障原因生成的故障原因分析表,该预设的故障原因分析表可以根据实际情况进行设置,本公开实施例对此不做具体限定。通过该预设的故障原因分析表能够准确地查询到故障原因,并根据故障原因能够准确地得到故障原因报告。
步骤S102、基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至预设区域内各基站,以使各基站根据优化后的配置参数进行配置参数更新。
从故障原因报告中获取待优化参数项,获取预设的待优化参数项与配置参数增益值之间的映射关系表;根据映射关系表查询待优化参数项对应的配置参数增益值,得到待优化参数项对应目标配置参数增益值,根据目标配置参数增益值更新基站的配置参数。该映射关系表为预先根据待优化参数项和配置参数增益值建立的,该映射关系表可以根据实际情况进行建立,本公开实施例对此不做具体限定。通过该映射关系表能够准确地查询到该待优化参数对应的目标配置参数增益值,根据该目标配置参数增益值能够准确地得到更新的配置参数。
在一些实施例中,在得到优化后的配置参数的情况下,将该优化后的配置参数发送至预设区域内各个基站,预设区域内的各个基站接收到该优化后的配置参数后,根据该优化 后的配置参数进行配置参数更新。通过将优化后的配置参数更新预设区域内的每个基站的配置参数,使得预设区域的各个基站能够在未发生故障之前进行了配置参数的更新,极大地提高了基站的稳定性和服务能力。
在一些实施例中,在得到优化后的配置参数的情况下,根据优化后的配置参数更新数据采集任务,通过优化后的配置参数更新数据采集任务,能够实时地更新数据采集任务,极大地提高了故障业务数据的效率和准确性。
需要说明的是,根据优化后的配置参数更新数据采集任务的方式根据实际情况进行设置,本公开实施例对此不做具体限定,例如,将数据采集任务更新为采集优化的配置参数对应的数据业务,能够准确地对更新后的配置参数的是否使得基站的运行不在出现故障进行了有效的跟踪。
示例性地,如图4所示,UE1与基站1在进行通信,UE2分别与基站2和基站3进行通信,基站1、基站2和基站3属于相同单域网络内的基站,计算机设备与基站1、基站2和基站3中至少一个基站建立通信连接的情况下,生成数据采集任务,并将数据采集任务发送至基站1、基站2和基站3,基站1、基站2和基站3根据数据采集任务进行故障业务数据采集,并将采集到的故障业务数据发送至计算机设备,计算机设备接收基站1、基站2和基站3中至少一个基站发送的故障业务数据,根据故障业务数据,生成故障原因报告;基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至基站1、基站2和基站3,以使基站1、基站2和基站3根据优化后的配置参数进行配置参数更新。
上述实施例中的基站配置参数更新方法,通过获取预设区域内至少一个基站发送的故障业务数据,并根据故障业务数据,生成故障原因报告;然后基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至预设区域内各基站,以使各基站根据优化后的配置参数进行配置参数更新。本方案根据预设区域内一个基站的故障业务数据进行基站的配置参数优化,并将优化后的配置参数发送给预设区域内的每个基站,使得每个基站均根据优化后的配置参数进行配置参数更新,使得预设区域的各个基站能够在未发生故障之前进行了配置参数的更新,提高单域网络内基站的配置参数更新的效率和准确性,极大地提高基站的稳定性和服务能力。
请参阅图5,图5为本公开实施例提供的一种计算机设备的结构示意性框图。
如图5所示,计算机设备200包括处理器201和存储器202,处理器201和存储器202通过总线203连接,该总线比如为I2C(Inter-integrated Circuit)总线。
处理器201用于提供计算和控制能力,支撑整个计算机设备的运行。处理器201可以是中央处理单元(Central Processing Unit,CPU),该处理器201还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific  Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。其中,通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。
存储器202可以是Flash芯片、只读存储器(ROM,Read-Only Memory)磁盘、光盘、U盘或移动硬盘等。
本领域技术人员可以理解,图5中示出的结构,仅仅是与本公开方案相关的部分结构的框图,并不构成对本公开方案所应用于其上的计算机设备的限定,计算机设备可以包括比图中所示更多或更少的部件,或者组合某些部件,或者具有不同的部件布置。
处理器用于运行存储在存储器中的计算机程序,并在执行计算机程序时实现本公开实施例提供的任意一种的基站配置参数更新方法。
在一些实施方式中,处理器201用于运行存储在存储器中的计算机程序,并在执行计算机程序时实现如下步骤:获取预设区域内至少一个基站发送的故障业务数据,并根据故障业务数据,生成故障原因报告;基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至预设区域内各基站,以使各基站根据优化后的配置参数进行配置参数更新。
在一些实施例中,处理器201在实现获取预设区域内至少一个基站发送的故障业务数据之前,还实现:在确定与预设区域内至少一个基站建立通信连接的情况下,生成数据采集任务;将数据采集任务发送给预设区域内各基站,以供各基站执行数据采集任务,以获取故障业务数据,并将故障业务数据发送给计算机设备。
在一些实施例中,处理器201在实现生成数据采集任务时,实现:获取采集参数信息,采集参数信息用于指示采集基站业务数据的各项指标;根据采集参数信息,生成数据采集任务。
在一些实施例中,处理器201在实现获取预设区域内至少一个基站发送的故障业务数据之前,还实现:获取用户发送的基站的故障检测指令,并根据故障检测指令,生成数据采集任务;将数据采集任务发送给预设区域内各基站,以供各基站执行数据采集任务,以获取故障业务数据,并将故障业务数据发送给计算机设备。
在一些实施例中,处理器201在实现基于故障原因报告优化基站的配置参数之后,还实现:根据优化后的配置参数更新数据采集任务。
在一些实施例中,处理器201在实现根据故障业务数据,生成故障原因报告时,实现:确定故障业务数据的故障类型,并根据故障类型获取匹配的预设解码库;根据预设解码库对故障业务数据进行解码,生成基站数据信息,并根据基站数据信息生成故障原因报告。
在一些实施例中,处理器201在实现基站数据信息包括多项性能参数指标;根据基站数据信息生成故障原因报告时,实现:获取预设的多项性能参数指标,并将多项性能参数 指标与预设的多项性能参数指标进行对比,得到存在故障的目标性能参数指标;根据目标性能参数指标确定故障原因,并生成故障原因报告。
在一些实施例中,处理器201在实现基于故障原因报告优化基站的配置参数时,实现:从故障原因报告中获取待优化参数项,获取预设的待优化参数项与配置参数增益值之间的映射关系表;根据映射关系表查询待优化参数项对应的配置参数增益值,得到待优化参数项对应目标配置参数增益值,根据目标配置参数增益值更新基站的配置参数。
需要说明的是,所属领域的技术人员可以清楚地了解到,为了描述的方便和简洁,上述描述的计算机设备的具体工作过程,可以参考前述基站配置参数更新方法实施例中的对应过程,在此不再赘述。
本公开实施例还提供一种存储介质,用于计算机可读存储,存储介质存储有一个或者多个程序,一个或者多个程序可被一个或者多个处理器执行,以实现如本公开说明书提供的任一项基站维护的方法。
存储介质可以是前述实施例的计算机设备的内部存储单元,例如计算机设备的硬盘或内存。存储介质也可以是计算机设备的外部存储设备,例如计算机设备上配备的插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)等。
本领域普通技术人员可以理解,上文中所公开方法中的全部或某些步骤、系统、装置中的功能模块/单元可以被实施为软件、固件、硬件及其适当的组合。在硬件实施方式中,在以上描述中提及的功能模块/单元之间的划分不一定对应于物理组件的划分;例如,一个物理组件可以具有多个功能,或者一个功能或步骤可以由若干物理组件合作执行。某些物理组件或所有物理组件可以被实施为由处理器,如中央处理器、数字信号处理器或微处理器执行的软件,或者被实施为硬件,或者被实施为集成电路,如专用集成电路。这样的软件可以分布在计算机可读介质上,计算机可读介质可以包括计算机存储介质(或非暂时性介质)和通信介质(或暂时性介质)。如本领域普通技术人员公知的,术语计算机存储介质包括在用于存储信息(诸如计算机可读指令、数据结构、程序模块或其他数据)的任何方法或技术中实施的易失性和非易失性、可移除和不可移除介质。计算机存储介质包括但不限于RAM、ROM、EEPROM、闪存或其他存储器技术、CD-ROM、数字多功能盘(DVD)或其他光盘存储、磁盒、磁带、磁盘存储或其他磁存储装置、或者可以用于存储期望的信息并且可以被计算机访问的任何其他的介质。此外,本领域普通技术人员公知的是,通信介质通常包含计算机可读指令、数据结构、程序模块或者诸如载波或其他传输机制之类的调制数据信号中的其他数据,并且可包括任何信息递送介质。
本公开实施例提供一种基站配置参数更新方法、设备及存储介质,本公开实施例通过 获取预设区域内至少一个基站发送的故障业务数据,并根据故障业务数据,生成故障原因报告;然后基于故障原因报告优化基站的配置参数,并将优化后的配置参数发送至预设区域内各基站,以使各基站根据优化后的配置参数进行配置参数更新。本方案根据预设区域内一个基站的故障业务数据进行基站的配置参数优化,并将优化后的配置参数发送给预设区域内的每个基站,使得每个基站均根据优化后的配置参数进行配置参数更新,使得预设区域的各个基站能够在未发生故障之前进行了配置参数的更新,提高单域网络内基站的配置参数更新的效率和准确性,极大地提高基站的稳定性和服务能力。
应当理解,在本公开说明书和所附权利要求书中使用的术语“和/或”是指相关联列出的项中的一个或多个的任何组合以及所有可能组合,并且包括这些组合。需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者系统不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者系统所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者系统中还存在另外的相同要素。
上述本公开实施例序号仅仅为了描述,不代表实施例的优劣。以上所述,仅为本公开的具体实施方式,但本公开的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本公开揭露的技术范围内,可轻易想到各种等效的修改或替换,这些修改或替换都应涵盖在本公开的保护范围之内。因此,本公开的保护范围应以权利要求的保护范围为准。

Claims (10)

  1. 一种基站配置参数更新方法,应用于计算机设备,包括:
    获取预设区域内至少一个基站发送的故障业务数据,并根据所述故障业务数据,生成故障原因报告;以及
    基于所述故障原因报告优化基站的配置参数,并将优化后的配置参数发送至所述预设区域内各所述基站,以使各所述基站根据优化后的配置参数进行配置参数更新。
  2. 根据权利要求1所述的基站配置参数更新方法,其中,所述获取预设区域内至少一个基站发送的故障业务数据之前,还包括:
    在确定与预设区域内至少一个基站建立通信连接的情况下,生成数据采集任务;以及
    将所述数据采集任务发送给所述预设区域内各基站,以供各所述基站执行所述数据采集任务,以获取故障业务数据,并将所述故障业务数据发送给所述计算机设备。
  3. 根据权利要求2所述的基站配置参数更新方法,其中,所述生成数据采集任务,包括:
    获取采集参数信息,所述采集参数信息用于指示采集基站业务数据的各项指标;以及
    根据所述采集参数信息,生成所述数据采集任务。
  4. 根据权利要求1所述的基站配置参数更新方法,其中,所述获取预设区域内至少一个基站发送的故障业务数据之前,还包括:
    获取用户发送的基站的故障检测指令,并根据所述故障检测指令,生成所述数据采集任务;以及
    将所述数据采集任务发送给所述预设区域内各基站,以供各所述基站执行所述数据采集任务,以获取故障业务数据,并将所述故障业务数据发送给所述计算机设备。
  5. 根据权利要求2所述的基站配置参数更新方法,其中,所述基于所述故障原因报告优化基站的配置参数之后,还包括:
    根据优化后的配置参数更新所述数据采集任务。
  6. 根据权利要求1所述的基站配置参数更新方法,其中,所述根据所述故障业务数据,生成故障原因报告,包括:
    确定所述故障业务数据的故障类型,并根据所述故障类型获取匹配的预设解码库;以及
    根据所述预设解码库对所述故障业务数据进行解码,生成基站数据信息,并根据所述基站数据信息生成故障原因报告。
  7. 根据权利要求6所述的基站配置参数更新方法,其中,所述基站数据信息包括多项性能参数指标;所述根据所述基站数据信息生成故障原因报告,包括:
    获取预设的多项性能参数指标,并将所述多项性能参数指标与所述预设的多项性能参数指标进行对比,得到存在故障的目标性能参数指标;以及
    根据所述目标性能参数指标确定故障原因,并生成故障原因报告。
  8. 根据权利要求1-7中任一项所述的基站配置参数更新方法,其中,所述基于所述故障原因报告优化基站的配置参数,包括:
    从所述故障原因报告中获取待优化参数项,获取预设的待优化参数项与配置参数增益值之间的映射关系表;
    根据所述映射关系表查询所述待优化参数项对应的配置参数增益值,得到所述待优化参数项对应目标配置参数增益值,以及
    根据所述目标配置参数增益值更新所述基站的配置参数。
  9. 一种计算机设备,包括处理器、存储器、存储在所述存储器上并可被所述处理器执行的计算机程序以及用于实现所述处理器和所述存储器之间的连接通信的数据总线,其中,所述计算机程序被所述处理器执行时,实现如权利要求1至8中任一项所述的基站配置参数更新方法。
  10. 一种存储介质,用于计算机可读存储,其中,所述存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现权利要求1至8中任一项所述的基站配置参数更新方法。
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