WO2012071821A1 - 一种设备信息采集方法及系统 - Google Patents

一种设备信息采集方法及系统 Download PDF

Info

Publication number
WO2012071821A1
WO2012071821A1 PCT/CN2011/071506 CN2011071506W WO2012071821A1 WO 2012071821 A1 WO2012071821 A1 WO 2012071821A1 CN 2011071506 W CN2011071506 W CN 2011071506W WO 2012071821 A1 WO2012071821 A1 WO 2012071821A1
Authority
WO
WIPO (PCT)
Prior art keywords
collection
data
base station
task
device information
Prior art date
Application number
PCT/CN2011/071506
Other languages
English (en)
French (fr)
Inventor
吴美
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2012071821A1 publication Critical patent/WO2012071821A1/zh

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/04Arrangements for maintaining operational condition

Definitions

  • the present invention relates to the field of wireless communication technologies, and in particular, to a device information collection method and system. Background technique
  • the number of a commercial office device is usually large, and there may be several hundred or even tens of thousands of base stations, and each base station has dozens of boards. If information is collected for each board separately, it needs to be considered. Processing efficiency and system resource consumption, as well as the cost of implementation and the cost of routine maintenance; At the same time, in the network optimization and network maintenance process, there are often problems, such as: need to check the strength of the received signal (RSSI, Received Signal Strength Indicator), input and output (10, Input Output) value, VSWR, baseband power, RF power, clock information, fan status information, etc., and these information are often distributed on different boards, existing information ⁇
  • the collection method often collects information from a certain aspect of the system, but cannot comprehensively collect the software and hardware information of the wireless base station equipment of the whole network. If the network information collection is to be performed, multiple collection operations are required. This will undoubtedly reduce the efficiency of information collection. Summary of the invention
  • a device information collection method where a collection point is set on a base station device side, the method further includes: The collection point collects data according to the preset set task and classifies and saves the collected data; and acquires the data required by the user from the collected data according to the collection task.
  • Setting the set point on the base station device side includes: setting a set point according to the set policy, and setting an identifier for each set point;
  • the collection strategy includes a base station type, and/or a base station subsystem type, and/or a base station subsystem module type.
  • the classification is stored as: Storage according to base station type, and/or base station subsystem type, and/or base station subsystem type.
  • the method further includes:
  • the method further includes:
  • the collection of the data is controlled according to a preset scheduling policy, where the scheduling policy includes a size of the data volume of the collection, and/or a time period for the collection.
  • the obtaining data required by the user according to the collection task includes:
  • a mapping relationship between the collection task and the data required by the collection task is established, and data required by the user is selected from the data collected according to the collection task according to the mapping relationship.
  • the method also includes: presenting data that the user needs.
  • a device information collection system includes: a collection point setting module, configured to set a collection point on a base station device side;
  • a data collection module configured to collect data according to a preset set task and classify and save the collected data
  • the data analysis module is configured to obtain data required by the user from the collected data according to the collection task.
  • the set point setting module is specifically configured to set a set point according to the set policy, and set an identifier for each set point;
  • the aggregation policy includes a base station type, and/or a base station subsystem type, and/or a base station subsystem module type.
  • the data collection module includes at least:
  • a collection unit configured to collect data according to a preset set task
  • a storage unit configured to perform class storage on the data collected by the set point, and the classification is stored as: storing according to the type of the base station, and/or the type of the base station subsystem, and/or the type of the base station subsystem module.
  • the data collection module further includes a monitoring unit, configured to monitor, in real time, a state of a transmission link for transmitting data collected by the collection point, and stop collecting data when an abnormality occurs in the transmission link.
  • a monitoring unit configured to monitor, in real time, a state of a transmission link for transmitting data collected by the collection point, and stop collecting data when an abnormality occurs in the transmission link.
  • the data collection module further includes a scheduling unit, configured to control the collection of the data according to a preset scheduling policy, where the scheduling policy includes a size of the data volume of the collection, and/or a time period. set.
  • the data analysis module includes:
  • Customized unit used for pre-setting the task of the user
  • the data mapping unit is configured to establish a mapping relationship between the collection task and the data required by the collection task, and select data required by the user from the data collected according to the collection task according to the mapping relationship.
  • a data presentation unit for presenting data required by the user.
  • the invention improves the information collection by setting information gathering points on the base station device side and collecting data according to the preset set task, and also collecting and analyzing the soft and hardware information of the whole network wireless base station device.
  • the efficiency is also convenient for the user to understand the device information, improve the efficiency of the base station deployment, fault location and patrol, and reduce the maintenance cost.
  • FIG. 1 is a schematic structural diagram of a preferred embodiment of a device information collection system according to the present invention
  • FIG. 2 is a schematic flowchart of an implementation process of a device information collection method according to the present invention
  • 3 is a schematic flow chart showing an implementation of a preferred embodiment of the device information collection method of the present invention
  • 4 is a schematic structural view of a set point setting of a preferred embodiment of the present invention.
  • the device information collection system of the present invention includes a collection point setting module, a data collection module, and a data analysis module, wherein
  • a set point setting module configured to set a set point on the base station device side
  • a data collection module configured to collect data according to a preset set task and classify and save the collected data
  • the data analysis module is configured to obtain data required by the user from the collected data according to the collection task.
  • the set point setting module is configured to set the set point according to the type of the base station, and/or the type of the base station subsystem, and/or the type of the base station subsystem module, and each set point is identified by a unique number.
  • the collection point setting module can be set on the base station device side.
  • the base station equipment of the mobile communication system can be divided into three layers, which are a base station layer, a base station subsystem layer, and a base station subsystem module layer.
  • the base station device has multiple base stations, one base station may include multiple base station subsystems, one base station subsystem may include multiple base station subsystem modules, and one base station subsystem module may set multiple collection points, and the collection points are It is identified by a unique number, and each level of the base station device can be set to a set point.
  • the user can select different levels for device information collection according to different requirements, such as collecting device information of the entire network, collecting device information of some boards of some base stations, or information of some collection items of the entire network base station. , this multi-dimensional ⁇ gathering point strategy, to meet the user does not The application of the same scene needs.
  • the data collection module is configured to collect data of the device on the base station device side at the set collection point according to the preset set task, and classify the collected data according to the hierarchy to which the collection point belongs. Stored for use by the data analysis module.
  • the data collection module can be set on the base station device side and connected to the collection setting module.
  • the data collection module includes at least an aggregation unit and a storage unit. among them,
  • the collection unit is configured to collect data according to a preset set task.
  • a storage unit configured to classify and store the data collected by the set point, and store the data according to the type of the base station, and/or the type of the base station subsystem, and/or the type of the base station subsystem module.
  • the storage unit may be a database or other storage medium.
  • the data collection module further includes a monitoring unit and a scheduling unit.
  • the monitoring unit is configured to monitor, in real time, a state of a transmission link used to transmit data collected by the collection point, and stop collecting data when an abnormality occurs in the transmission link; if the monitoring unit finds the transmission If the link is abnormal, the collection unit is notified to stop the collection of data, thereby avoiding the invalid collection task running and consuming system resources.
  • the monitoring unit can implement the monitoring of the link state by using the heartbeat detection.
  • the specific implementation method belongs to the technical means used by those skilled in the art, and details are not described herein again. Of course, those skilled in the art can also use other methods to implement the monitoring function according to actual situations.
  • a scheduling unit configured to control, according to a preset scheduling policy, the collection of the data, where the scheduling policy includes a size of the data volume of the collection, and/or a time segment is collected; specifically, the collection unit
  • the scheduling unit can preset the maximum number of data collected each time, preventing the data from being too large to impact the mobile communication system; for data that cannot be simultaneously collected, the scheduling unit can also set the time division.
  • the segment performs a collection of data.
  • the data analysis module is configured to obtain data required by the user from the collected data according to the collection task. Preferably, the data analysis module also presents the data required by the user to the user for viewing.
  • the data analysis module includes a custom unit, a data mapping unit, and a data presentation unit that are sequentially connected. Preferably, the data analysis module can be set in a network management center. among them,
  • a custom unit is configured for the user to preset a collection task, which includes information such as a collection duration, a collection interval, a collection object, and a collection parameter. Specifically, after the collection task is set in advance, the customization unit simultaneously sends a startup command to the collection unit, and the collection unit starts the collection process in response to the startup command.
  • the duration of the collection determines the length of time of the collection task on the network element device, and the network element device may delete the collection task to prevent the useless task from being present in the network element device for a long time.
  • the collection interval specifies the periodic interval of the data collection by the network element device.
  • the network element device collects data in this interval or associated with the task in time.
  • a collection object is a managed object that needs to collect data.
  • the set parameter is the performance parameter of the managed object that needs to be picked up.
  • the data analysis module further includes a judging module, configured to determine whether the requisition tasks are mutually exclusive after the user-defined task is set, and if the discovery task exists in the system, the mutual exclusion is considered to be mutually exclusive. Customize the collection task.
  • the data mapping unit is configured to establish a mapping relationship between the collection task and the data required by the collection task, and select data required by the user from the data collected according to the collection task according to the mapping relationship. Since there is a lot of data stored in the database, the data required for the custom collection task is some data in the database. According to the mapping relationship between the custom collection task and the required database, the user needs to obtain the data from the database. data. Further, the data mapping unit further includes filtering invalid data, and providing the data presentation unit for presentation.
  • a data presentation unit for displaying data required by the user.
  • FIG. 2 is a schematic diagram of an implementation process of a device information collection method according to the present invention. As shown in FIG. 2, the following steps are included:
  • Step 201 Set a collection point according to the collection policy on the base station device side, where the collection strategy includes a base station type, and/or a subsystem type, and/or a module type, and each collection point is performed by a unique number. Identification, to achieve the collection of device information according to different device levels.
  • the base station device of the mobile communication system can be divided into three layers, which are respectively a base station layer, Subsystem layer and module layer, the base station device has multiple base stations, one base station may include multiple base station subsystems, one base station subsystem may include multiple base station subsystem modules, and multiple base station subsystem modules may set multiple collection points , and the set points are identified by a unique number, and each level of the base station device can be set to a set point.
  • the user can select different levels for device information collection according to different requirements, such as collecting device information of the entire network, collecting device information of some boards of some base stations, or information of some collection items of the entire network base station. This multi-dimensional ⁇ gathering point strategy satisfies the application needs of users in different scenarios.
  • Step 202 Collect and save data according to the preset set task.
  • the data collection module collects the data of the device on the base station device side at the set collection point according to the preset set task, and classifies and stores the collected data according to the hierarchy to which the collection point belongs, For subsequent data analysis.
  • this step can be performed on the base station device side.
  • the step further includes: monitoring the link status of the transmission data in real time, and if the link is found to be abnormal, notifying the collection unit to stop the collection of the data, thereby preventing the invalid collection task from running all the time and consuming system resources;
  • the data collection process is controlled.
  • the maximum number of data collected each time is preset, and the data is prevented from being impacted on the mobile communication system by excessive data.
  • the data can be set in time segments. Set of ⁇ .
  • the step further includes: classifying and storing the data of the set, which may be stored in a database or other storage medium, and the classified storage is classified according to different levels of the set set points.
  • Step 203 Acquire data according to the collection task preset by the user. Specifically, when the user presets the collection task, the mapping relationship between the collection task and the data required by the collection task is established, and the data required by the current collection task of the user is selected from the storage unit according to the mapping relationship, and displayed to the user. .
  • the collection task includes the collection duration, the collection interval, the collection object, and the like. There are a lot of data stored in the database, and the data required by the collection task is some data in the database. According to the mapping relationship between the collection task and the required data, the number required by the user is obtained from the database. According to. This step can be performed on the NE device.
  • the step includes: pre-setting the collection task, determining whether the collection tasks are mutually exclusive, and if it is found that the collection task is being performed in the system, the mutual exclusion is considered, and the current collection task is ended.
  • FIG. 3 is a schematic flowchart of an implementation of a preferred embodiment of the device information collection method of the present invention. As shown in FIG. 3, the method includes the following steps:
  • Step 301 Customizing the collection task on the network element device side, where the collection task includes the collection duration, the collection interval, and the collection object.
  • the collection task includes the collection duration, the collection interval, and the collection object.
  • different users have different information collection requirements, that is, different collection objects, for example, the user may want to view information of some base stations, then the user may select the base station type for collection; in some scenarios, the user needs to view certain orders.
  • the board information can be selected by selecting the board type.
  • Step 302 The collection task is started, that is, the collection unit responds to the collection task command to start the collection process.
  • Step 304 Start collecting data and scheduling the collection task at the same time.
  • Step 305 Determine whether the collection of data is completed. If the collection is completed, proceed to step 306; otherwise, return to step 304 to continue the collection.
  • Step 306 Store the collected data, specifically, classify and store the collected data, where the classified storage is classified and stored according to different levels to which the set collection points belong.
  • Step 307 Establish a mapping relationship between the collection task and the data required by the collection task, and the mapping relationship is used for the user to select data required by the user under the current collection task from the database.
  • Step 308 Determine whether the mapping relationship is successfully created. If the creation is successful, proceed to step 309; if the creation fails, the process ends.
  • Step 309 Data analysis, extracting data required by the user according to the customized task of the user, and filtering invalid data at the same time.
  • Step 310 Determine whether the data analysis is successful. If the data analysis is successful, go to step 311; if it fails, end the process.
  • Step 311 Send the data analysis result to the user to facilitate the user to obtain the device information.

Description

一种设 ^ff息采集方法及系统 技术领域
本发明涉及无线通信技术领域, 尤其涉及一种设备信息釆集方法及系 统。 背景技术
随着无线通讯技术的发展, 对通讯设备的可维护性提出了更高的要求。 为了更好地了解系统的运行状态, 运营商或设备制造商往往需要收集很多 设备信息。
在移动通讯系统中, 一个商用局设备的数量通常众多, 可能有几百甚 至上万个基站, 而每个基站有几十块单板, 如果分别对每一块单板进行信 息釆集, 需要考虑处理效率和系统资源消耗, 以及实施的成本和日常维护 的成本等; 同时, 在网络优化和网络维护过程中, 经常会碰到一些问题, 比如: 需要排查比较接收信号的强度指示 (RSSI, Received Signal Strength Indicator ), 输入输出 (10, Input Output )值、 驻波比、 基带功率、 射频功 率、 时钟信息、 风扇状态信息等, 而这些信息往往分布在不同的单板上, 现有的信息釆集方法往往是从系统的某一方面对信息进行收集, 而不能从 全网无线基站设备的软、 硬件信息进行全面的釆集, 如果要进行全网信息 釆集则需要多次釆集操作, 这样, 无疑降低了信息釆集的效率。 发明内容
本发明的目的在于提供一种设备信息釆集方法及系统, 能够实现对全 网无线通信设备的信息的釆集, 提高信息釆集的效率。
根据本发明的一个方面, 提供一种设备信息釆集方法, 在基站设备侧 设置釆集点, 该方法还包括: 釆集点根据预先设置的釆集任务釆集数据并分类保存釆集到的数据; 根据釆集任务从釆集到的数据中获取用户所需数据。
所述在基站设备侧设置釆集点包括: 根据釆集策略设置釆集点, 并对 各釆集点设置标识;
其中, 所述釆集策略包括基站类型、 和 /或基站子系统类型、 和 /或基站 子系统模块类型。
所述分类存储为: 根据基站类型、 和 /或基站子系统类型、 和 /或基站子 系统模块类型进行存储。
在所述釆集点釆集数据中, 该方法还包括:
实时监控用于传输所述釆集点发送釆集的数据的传输链路的状态, 在 发现传输链路出现异常时, 停止数据的釆集;
在所述釆集点釆集数据中, 该方法还包括:
根据预先设置的调度策略对所述数据的釆集进行控制, 所述调度策略 包括釆集的数据量的大小, 和 /或分时间段进行釆集。
所述根据釆集任务获取用户所需数据包括:
建立釆集任务与该釆集任务所需数据的映射关系, 并根据该映射关系 从根据该釆集任务所釆集到的数据中选择用户需要的数据。
该方法还包括: 展现用户需要的数据。
根据本发明的另一个方面, 提供一种设备信息釆集系统, 该系统包括: 釆集点设置模块, 用于在基站设备侧设置釆集点;
数据釆集模块, 用于根据预先设置的釆集任务釆集数据并分类保存釆 集到的数据;
数据分析模块, 用于根据釆集任务从釆集到的数据中获取用户所需数 据。
所述釆集点设置模块, 具体用于根据釆集策略设置釆集点, 并对各釆 集点设置标识; 其中, 所述釆集策略包括基站类型、 和 /或基站子系统类型、 和 /或基站 子系统模块类型。
所述数据釆集模块至少包括:
釆集单元, 用于根据预先设置的釆集任务釆集数据;
存储单元, 用于对釆集点釆集的数据进行分类存储, 所述分类存储为: 根据基站类型、和 /或基站子系统类型、和 /或基站子系统模块类型进行存储。
所述数据釆集模块还包括监控单元, 用于实时监控用于传输所述釆集 点发送釆集的数据的传输链路的状态, 在发现传输链路出现异常时, 停止 数据的釆集。
所述数据釆集模块还包括调度单元, 用于根据预先设置的调度策略对 所述数据的釆集进行控制, 所述调度策略包括釆集的数据量的大小, 和 /或 分时间段进行釆集。
所述数据分析模块包括:
定制单元, 用于用户预先设置釆集任务;
数据映射单元, 用于建立釆集任务与该釆集任务所需数据的映射关系, 并根据该映射关系从根据该釆集任务所釆集到的数据中选择用户需要的数 据。
数据展现单元, 用于展现用户需要的数据。
本发明通过在基站设备侧设置信息釆集点, 并根据预先设置的釆集任 务釆集数据, 同时也可以对全网无线基站设备的软、 硬件信息的釆集和分 析, 提高了信息釆集的效率, 同时也方便了用户了解设备信息, 提高了基 站开局、 故障定位和巡警等效率, 降低了维护成本。 附图说明
图 1是本发明设备信息釆集系统的优选实施例的结构示意图; 图 2是本发明设备信息釆集方法的实现流程示意图; 图 3是本发明设备信息釆集方法的优选实施例的实现流程示意图。 图 4是本发明优选实施例的釆集点设置的结构示意图。 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明白, 以下举实施例并 参照附图, 对本发明进一步详细说明。 需要说明的是, 在不冲突的情况下, 本申请中的实施例及实施例中的特征可以相互组合。
图 1 是本发明设备信息釆集系统的优选实施例的结构示意图, 如图 1 所示, 本发明设备信息釆集系统包括釆集点设置模块、 数据釆集模块和数 据分析模块, 其中,
釆集点设置模块, 用于在基站设备侧设置釆集点;
数据釆集模块, 用于根据预先设置的釆集任务釆集数据并分类保存釆 集到的数据;
数据分析模块, 用于根据釆集任务从釆集到的数据中获取用户所需数 据。
优选地, 釆集点设置模块, 用于按照基站类型、 和 /或基站子系统类型、 和 /或基站子系统模块类型设置釆集点, 每个釆集点都用一个唯一的编号进 行标识, 以实现按照不同设备层次进行设备信息的釆集, 该釆集点设置模 块可以设置在基站设备侧。 具体地, 如图 4所示, 移动通信系统的基站设 备可以分为三个层次, 分别为基站层、 基站子系统层和基站子系统模块层。 基站设备存在多个基站, 一个基站可以包括多个基站子系统, 一个基站子 系统可以包括多个基站子系统模块, 一个基站子系统模块内可以设置多个 釆集点, 并对釆集点都用一个唯一的编号进行标识, 基站设备的每个层次 均可以设置釆集点。 用户可以按照不同的需求选择不同的层次进行设备信 息釆集, 如釆集全网设备信息、 釆集某些基站的某些单板的设备信息或全 网基站的某些釆集项的信息等, 这种多维度的釆集点策略, 满足了用户不 同场景的应用需要。
优选地, 数据釆集模块, 具体用于根据预先设置的釆集任务在设置的 釆集点釆集基站设备侧的设备的数据, 并把釆集到的数据根据釆集点所属 的层次进行分类存储, 以供数据分析模块使用。 其中, 该数据釆集模块可 以设置在基站设备侧, 并与釆集设置模块相连。 数据釆集模块至少包括釆 集单元和存储单元。 其中,
釆集单元, 用于根据预先设置的釆集任务釆集数据。
存储单元, 用于对釆集点釆集的数据进行分类存储, 所述分类存储根 据基站类型、 和 /或基站子系统类型、 和 /或基站子系统模块类型进行存储。 优选地, 存储单元可以是数据库或者其他存储介质。
进一步地, 数据釆集模块还包括监控单元和调度单元。 其中, 监控单元, 用于实时监控用于传输所述釆集点发送釆集的数据的传输 链路的状态, 在发现传输链路出现异常时, 停止数据的釆集; 该监控单元 若发现传输链路出现异常, 则通知釆集单元停止数据的釆集, 从而避免了 无效的釆集任务一直运行而消耗系统资源。 优选地, 所述监控单元可以通 过心跳检测来实现对链路状态的监控, 具体实现方法属于本领域技术人员 惯用技术手段, 这里不再赘述。 当然, 本领域技术人员也可以根据实际情 况使用其它方式实现监控的功能。
调度单元, 用于根据预先设置的调度策略对所述数据的釆集进行控制 , 所述调度策略包括釆集的数据量的大小, 和 /或分时间段进行釆集; 具体地, 釆集单元釆集的数据数量比较大, 调度单元可以预设每次釆集的数据的最 大数量, 防止数据过大对移动通信系统造成冲击; 对于不能同时进行釆集 的数据, 调度单元还可以设置分时间段进行数据的釆集。
数据分析模块, 用于根据釆集任务从釆集到的数据中获取用户所需数 据。 优选地, 该数据分析模块还将用户所需的数据展现给用户查看。 所述 数据分析模块包括依次连接的定制单元、 数据映射单元和数据展现单元, 优选地, 该数据分析模块可以设置在网络管理中心。 其中,
定制单元, 用于用户预先设置釆集任务, 该釆集任务包括釆集持续时 间、 釆集间隔、 釆集对象、 釆集参数等信息。 具体地, 预先设置釆集任务 后, 该定制单元同时会发送启动命令给釆集单元, 釆集单元响应该启动命 令启动釆集进程。
优选地, 釆集持续时间决定了该釆集任务在网元设备上的存在时间长 度, 超过此时间长度, 网元设备可以将该釆集任务删除, 以免无用的任务 长期存在于网元设备中。 釆集间隔指定了网元设备釆集数据的周期性间隔, 网元设备按此间隔釆集或及时与此任务相关联的数据。 釆集对象是需要釆 集数据的被管对象。 釆集参数, 是被管对象上需要被釆集点的性能参数。
优选地, 数据分析模块还包括判断模块, 用于用户自定义釆集任务后, 判断釆集任务之间是否互斥, 若发现系统中存在釆集任务在执行, 则认为 互斥, 结束本次自定义釆集任务。
数据映射单元, 用于建立釆集任务与该釆集任务所需数据的映射关系, 并根据该映射关系从根据该釆集任务所釆集到的数据中选择用户需要的数 据。 由于数据库中存储的数据很多, 而自定义釆集任务所需要的数据是数 据库中的某些数据, 根据自定义釆集任务和所需数据库之间的映射关系, 从数据库中获取用户所需要的数据。 进一步地, 该数据映射单元还包括过 滤无效的数据, 提供给数据展现单元进行展现。
以及数据展现单元, 用于展现用户需要的数据。
图 2是本发明设备信息釆集方法的实现流程示意图, 如图 2所示, 包 括以下步骤:
步骤 201 : 在基站设备侧根据釆集策略设置釆集点, 其中, 釆集策略包 括基站类型、 和 /或子系统类型、 和 /或模块类型, 每个釆集点都用一个唯一 的编号进行标识, 以实现按照不同设备层次进行设备信息的釆集。
具体地, 移动通信系统的基站设备可以分为三个层次, 分别为基站层、 子系统层和模块层, 基站设备存在多个基站, 一个基站可以包括多个基站 子系统, 一个基站子系统可以包括多个基站子系统模块, 一个基站子系统 模块内可以设置多个釆集点, 并对釆集点都用一个唯一的编号进行标识, 基站设备的每个层次均可以设置釆集点。 用户可以按照不同的需求选择不 同的层次进行设备信息釆集, 如釆集全网设备信息、 釆集某些基站的某些 单板的设备信息或全网基站的某些釆集项的信息等, 这种多维度的釆集点 策略, 满足了用户不同场景的应用需要。
步骤 202: 根据预先设置的釆集任务釆集并保存数据。
本步骤中, 数据釆集模块根据预先设置的釆集任务在设置的釆集点釆 集基站设备侧的设备的数据, 并把釆集到的数据根据釆集点所属的层次进 行分类存储, 以供后续数据分析使用。 优选地, 本步骤可以在基站设备侧 进行。
进一步地, 本步骤还包括: 实时监控传输数据的链路状态, 如果发现 链路出现异常, 则通知釆集单元停止数据的釆集, 从而避免无效的釆集任 务一直运行而消耗系统资源; 对数据釆集进程进行控制, 优选地, 预设每 次釆集的数据的最大数量, 防止数据过大对移动通信系统造成冲击, 对于 不能同时进行釆集的数据, 还可设置分时间段进行数据的釆集。
本步骤进一步包括: 对釆集的数据进行分类存储, 可以保存在数据库 中或者其他存储介质中, 所述分类存储是根据设置的釆集点所属不同的层 次进行分类。
步骤 203: 根据用户预先设置的釆集任务获取数据。 具体地, 用户预先 设置釆集任务时, 会建立釆集任务与该釆集任务所需数据的映射关系, 根 据该映射关系从存储单元选择用户当前釆集任务所需要的数据, 并展现给 用户。 其中, 釆集任务包括釆集持续时间、 釆集间隔、 釆集对象等。 数据 库中存储的数据很多, 而该釆集任务所需要的数据是数据库中的某些数据, 根据该釆集任务和所需数据的映射关系, 从数据库中获取用户所需要的数 据。 本步骤可以在网元设备端进行。
进一步地, 本步骤包括: 预先设置釆集任务后, 判断釆集任务之间是 否互斥, 若发现系统中正有进行的釆集任务, 则认为互斥, 结束本次釆集 任务。
图 3是本发明设备信息釆集方法的优选实施例的实现流程示意图, 如 图 3所示, 包括以下步骤:
步骤 301 : 在网元设备端定制釆集任务, 所述釆集任务包括釆集持续时 间、 釆集间隔、 釆集对象。 优选地, 不同用户有不同的信息釆集需求, 即 釆集对象不同, 如用户可能想查看某些基站的信息, 那么用户就可以选择 该基站类型进行收集; 有些场景中用户需要查看某些单板的信息, 就可以 选择单板类型进行收集。
步骤 302:釆集任务启动,即釆集单元响应釆集任务命令开始釆集进程。 步骤 303 : 釆集任务启动后, 判断釆集任务之间是否互斥, 若发现系统 中存在釆集任务在执行, 则认为互斥, 结束本次釆集任务, 并通知用户已 经有釆集任务正在运行; 否则, 本次釆集任务启动成功, 进入步骤 304。
步骤 304: 釆集数据开始, 同时调度釆集任务。
步骤 305: 判断数据的釆集是否完成, 如果釆集完成, 进入步骤 306; 否则, 返回步骤 304继续釆集。
步骤 306: 对釆集到的数据进行存储, 具体地, 对釆集到的数据进行分 类存储, 其中, 分类存储是根据设置的釆集点所属不同的层次进行分类并 存储。
步骤 307: 建立釆集任务与该釆集任务所需数据的映射关系, 该映射关 系用于用户从数据库中选择当前釆集任务下用户所需要的数据。
步骤 308: 判断映射关系是否创建成功, 如果创建成功, 则进入步骤 309; 如果创建失败, 则结束本流程。
本步骤中, 映射关系可以通过映射表的建立来实现, 例如用户要求收 集全网的时钟信息, 商用局网络中可能包括几百甚至几千个基站, 而每一 个基站都有时钟模块, 需要从时钟模块上获取时钟信息, 而釆集过程中是 以时钟模块为单位进行釆集的, 也就是釆集过程中会釆集到时钟模块的所 有信息, 包括时钟信息、 时钟模块软硬件信息、 运行状态信息等, 而此时 用户只需要其中的时钟信息, 这时, 就可以建立的映射表, 根据映射表把 用户需要的时钟信息显示给用户查看, 其它信息不显示。
步骤 309: 数据分析, 根据用户定制的釆集任务提取用户需要的数据, 同时过滤无效的数据。
步骤 310: 判断数据分析是否成功,如果数据分析成功, 进入步骤 311 ; 如果失败, 则结束本流程。
步骤 311 :发送数据分析结果并显示给用户,以方便用户获取设备信息。 以上所述, 仅为本发明的较佳实施例而已, 并非用于限定本发明的保 护范围, 凡在本发明的精神和原则之内所作的任何修改、 等同替换和改进 等, 均应包含在本发明的保护范围之内。

Claims

权利要求书
1、 一种设备信息釆集方法, 其特征在于, 在基站设备侧设置釆集点, 该方法还包括:
釆集点根据预先设置的釆集任务釆集数据并分类保存釆集到的数据; 根据釆集任务从釆集到的数据中获取用户所需数据。
2、 根据权利要求 1所述的设备信息釆集方法, 其特征在于, 所述在基 站设备侧设置釆集点包括: 根据釆集策略设置釆集点, 并对各釆集点设置 标识;
其中, 所述釆集策略包括基站类型、 和 /或基站子系统类型、 和 /或基站 子系统模块类型。
3、 根据权利要求 2所述的设备信息釆集方法, 其特征在于, 所述分类 存储为: 根据基站类型、 和 /或基站子系统类型、 和 /或基站子系统模块类型 进行存储。
4、 根据权利要求 3所述的设备信息釆集方法, 其特征在于, 在所述釆 集点釆集数据过程中, 该方法还包括:
监控用于传输所述釆集点发送釆集的数据的传输链路的状态, 在发现 传输链路出现异常时, 停止所述数据的釆集。
5、 根据权利要求 3或 4所述的设备信息釆集方法, 其特征在于, 在所 述釆集点釆集数据过程中, 该方法还包括:
根据预先设置的调度策略对所述数据的釆集进行控制;
所述调度策略包括釆集的数据量的大小, 和 /或分时间段进行釆集。
6、 根据权利要求 1所述的设备信息釆集方法, 其特征在于, 所述根据 釆集任务获取用户所需数据包括:
建立釆集任务与该釆集任务所需数据的映射关系, 并根据该映射关系 从根据该釆集任务所釆集到的数据中选择用户需要的数据。
7、 根据权利要求 1~6任一项所述的设备信息釆集方法, 其特征在于, 该方法还包括: 展现用户需要的数据。
8、 一种设备信息釆集系统, 其特征在于, 该系统包括:
釆集点设置模块, 用于在基站设备侧设置釆集点;
数据釆集模块, 用于根据预先设置的釆集任务釆集数据并分类保存釆 集到的数据;
数据分析模块, 用于根据釆集任务从釆集到的数据中获取用户所需数 据。
9、 根据权利要求 8所述的设备信息釆集系统, 其特征在于,
所述釆集点设置模块, 具体用于根据釆集策略设置釆集点, 并对各釆 集点设置标识;
其中, 所述釆集策略包括基站类型、 和 /或基站子系统类型、 和 /或基站 子系统模块类型。
10、 根据权利要求 9所述的设备信息釆集系统, 其特征在于, 所述数 据釆集模块至少包括:
釆集单元, 用于根据预先设置的釆集任务釆集数据;
存储单元, 用于对釆集点釆集的数据进行分类存储, 所述分类存储为: 根据基站类型、和 /或基站子系统类型、和 /或基站子系统模块类型进行存储。
11、 根据权利要求 10所述的设备信息釆集系统, 其特征在于, 所述数 据釆集模块还包括监控单元, 用于实时监控用于传输所述釆集点发送釆集 的数据的传输链路的状态, 在发现传输链路出现异常时, 停止数据的釆集。
12、 根据权利要求 10或 11所述的设备信息釆集系统, 其特征在于, 所述数据釆集模块还包括调度单元, 用于根据预先设置的调度策略对所述 数据的釆集进行控制, 所述调度策略包括釆集的数据量的大小, 和 /或分时 间段进行釆集。
13、 根据权利要求 8所述的设备信息釆集系统, 其特征在于, 所述数 据分析模块包括:
定制单元, 用于用户预先设置釆集任务;
数据映射单元, 用于建立釆集任务与该釆集任务所需数据的映射关系, 并根据该映射关系从根据该釆集任务所釆集到的数据中选择用户需要的数 据;
数据展现单元, 用于展现用户需要的数据。
PCT/CN2011/071506 2010-12-01 2011-03-04 一种设备信息采集方法及系统 WO2012071821A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201010568479.0A CN102158875B (zh) 2010-12-01 2010-12-01 一种设备信息采集方法及系统
CN201010568479.0 2010-12-01

Publications (1)

Publication Number Publication Date
WO2012071821A1 true WO2012071821A1 (zh) 2012-06-07

Family

ID=44439983

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2011/071506 WO2012071821A1 (zh) 2010-12-01 2011-03-04 一种设备信息采集方法及系统

Country Status (2)

Country Link
CN (1) CN102158875B (zh)
WO (1) WO2012071821A1 (zh)

Families Citing this family (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102883350A (zh) * 2012-08-24 2013-01-16 中兴通讯股份有限公司 一种设备信息采集方法及系统
CN103902744A (zh) * 2012-12-28 2014-07-02 苏州宝时得电动工具有限公司 测量数据的存储方法及系统
CN104080167B (zh) * 2014-06-27 2017-07-18 东南大学 基于硬件特性的无线目标被动定位方法
CN105450287B (zh) * 2014-08-29 2019-12-20 深圳航天科技创新研究院 一种获取星载设备数据的方法和装置
CN107529190B (zh) * 2016-06-21 2021-04-16 中国移动通信集团山西有限公司 用户数据获取系统和方法
CN109217474B (zh) * 2018-10-17 2021-11-05 安徽立卓智能电网科技有限公司 一种基于无线通道传输的新能源并网数据分时采集方法
CN109723666B (zh) * 2018-11-26 2021-08-03 曙光信息产业股份有限公司 风扇控制装置及方法
CN115223722B (zh) * 2022-07-28 2023-03-24 医利捷(上海)信息科技有限公司 一种基于医疗的数据分析系统
CN117638324B (zh) * 2024-01-25 2024-04-26 东营昆宇电源科技有限公司 基于储能设备的热管理控制系统

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1750699A (zh) * 2004-09-15 2006-03-22 中兴通讯股份有限公司南京分公司 微蜂窝通讯系统基站话务数据采集方法
CN101159948A (zh) * 2007-08-08 2008-04-09 中国移动通信集团福建有限公司 基站告警自动监控系统
CN101217755A (zh) * 2007-12-26 2008-07-09 中兴通讯股份有限公司 一种用于数据采集的前置机系统和方法
CN101437246A (zh) * 2008-12-18 2009-05-20 中国移动通信集团福建有限公司 基站能耗数据统一采集装置
CN101867956A (zh) * 2010-05-21 2010-10-20 华为技术有限公司 基站及其配套设备的监控方法、设备及系统

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1750699A (zh) * 2004-09-15 2006-03-22 中兴通讯股份有限公司南京分公司 微蜂窝通讯系统基站话务数据采集方法
CN101159948A (zh) * 2007-08-08 2008-04-09 中国移动通信集团福建有限公司 基站告警自动监控系统
CN101217755A (zh) * 2007-12-26 2008-07-09 中兴通讯股份有限公司 一种用于数据采集的前置机系统和方法
CN101437246A (zh) * 2008-12-18 2009-05-20 中国移动通信集团福建有限公司 基站能耗数据统一采集装置
CN101867956A (zh) * 2010-05-21 2010-10-20 华为技术有限公司 基站及其配套设备的监控方法、设备及系统

Also Published As

Publication number Publication date
CN102158875A (zh) 2011-08-17
CN102158875B (zh) 2015-01-28

Similar Documents

Publication Publication Date Title
WO2012071821A1 (zh) 一种设备信息采集方法及系统
CN104699759B (zh) 一种数据库自动化运行维护方法
US10200506B2 (en) Method, system and device for monitoring data
US10979921B2 (en) Systems and methods for monitoring network slices using probes
US9462486B2 (en) Method and device for classifying wireless data service
EP2723117B1 (en) Managed unit device, self-optimization method and system
CN101099398B (zh) 用于在管理网络中在管理器和代理之间匹配信息的方法和装置
WO2010105443A1 (zh) 被管理单元设备、自优化的方法及系统
CN103166776A (zh) 一种接入网设备综合管理系统
WO2014056345A1 (zh) 监控任务的管理方法及装置
CN104125085A (zh) 一种基于esb的数据管控方法及装置
WO2014029335A1 (zh) 一种设备信息采集方法及系统
CN110662199B (zh) 室内无线信号探测方法、系统和无线信号探测设备
EP2882216B1 (en) Device and method for controlling, supervising and giving an alarming from a power supply of base station
CN117010665A (zh) 智慧运维idc机房管理系统
CN112100020A (zh) 基站的数据上报方法、装置、电子装置和存储介质
JP2017208717A (ja) 無線通信ネットワークの分析システム
CN116050957A (zh) 一种结合图像识别和人员定位的仓储物流管理系统及方法
CN104040951B (zh) 告警相关信息的传输方法和装置
CN209897073U (zh) 一种网管设备的监控系统
CN115048260A (zh) 一种基于云计算的核电厂PaaS平台资源配额监控方法和系统
CN112865312A (zh) 一种电力调度系统及电力数据处理方法
CN105577412A (zh) 一种监控终端设备的方法、装置及系统
CN216057061U (zh) 一种无线终端群控自动化测试系统
CN104980294B (zh) 一种主机管理方法、装置及相关主机管理系统

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11844906

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 11844906

Country of ref document: EP

Kind code of ref document: A1