CN105049223B - A kind of power telecom network defect troubleshooting decision assistant analysis method - Google Patents
A kind of power telecom network defect troubleshooting decision assistant analysis method Download PDFInfo
- Publication number
- CN105049223B CN105049223B CN201510283496.2A CN201510283496A CN105049223B CN 105049223 B CN105049223 B CN 105049223B CN 201510283496 A CN201510283496 A CN 201510283496A CN 105049223 B CN105049223 B CN 105049223B
- Authority
- CN
- China
- Prior art keywords
- power communication
- information
- communication equipment
- maintenance
- equipment
- Prior art date
- Legal status (The legal status 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 status listed.)
- Active
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/06—Management of faults, events, alarms or notifications
- H04L41/0631—Management of faults, events, alarms or notifications using root cause analysis; using analysis of correlation between notifications, alarms or events based on decision criteria, e.g. hierarchy, tree or time analysis
- H04L41/0636—Management of faults, events, alarms or notifications using root cause analysis; using analysis of correlation between notifications, alarms or events based on decision criteria, e.g. hierarchy, tree or time analysis based on a decision tree analysis
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/06—Management of faults, events, alarms or notifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—ELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J13/00—Circuit arrangements for providing remote monitoring or remote control of equipment in a power distribution network
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Computer Vision & Pattern Recognition (AREA)
- Remote Monitoring And Control Of Power-Distribution Networks (AREA)
- Telephonic Communication Services (AREA)
Abstract
Description
技术领域technical field
本发明涉及电力通信网络中缺陷和故障处理决策辅助分析技术,特别是一种电力通信网缺陷故障处理决策辅助分析方法。The invention relates to an auxiliary analysis technology for defect and fault handling decision-making in an electric power communication network, in particular to an auxiliary analysis method for defect and fault handling decision-making in an electric power communication network.
背景技术Background technique
传统电力通信网中电力通信设备的缺陷故障处理是通信运行管理的主要工作之一。电力通信设备的缺陷故障处理是一个由多个环节紧密相连的复杂处理过程,包括发现缺陷,记录缺陷、分析缺陷对业务的影响、根据影响程度采取对应处理措施、具体处理方案的制订与执行、处理结果的归档与统计等。但目前电力通信网络发生缺陷和故障时,往往根据个人经验去分析缺陷和故障程度和处理方法,存在效率低、处理不规范、依据个人经验等问题,极为影响现有的电力通信网运行和维护。The defect troubleshooting of power communication equipment in traditional power communication network is one of the main tasks of communication operation management. Troubleshooting of defects in power communication equipment is a complex process closely connected by multiple links, including finding defects, recording defects, analyzing the impact of defects on business, taking corresponding processing measures according to the degree of impact, formulating and implementing specific processing plans, Archiving and statistics of processing results, etc. However, at present, when defects and failures occur in the power communication network, the degree of defect and failure and the treatment method are often analyzed based on personal experience. There are problems such as low efficiency, irregular handling, and personal experience, which greatly affect the operation and maintenance of the existing power communication network. .
发明内容Contents of the invention
本发明的目的在于提供一种电力通信网缺陷故障处理决策辅助分析方法,以克服现有技术中存在的缺陷。The purpose of the present invention is to provide an auxiliary analysis method for fault handling and decision-making of a power communication network, so as to overcome the defects in the prior art.
为实现上述目的,本发明的技术方案是:一种电力通信网缺陷故障处理决策辅助分析方法,其特征在于,按照如下步骤实现:In order to achieve the above object, the technical solution of the present invention is: an auxiliary analysis method for decision-making of defect fault handling of electric power communication network, characterized in that, it is implemented according to the following steps:
步骤S1:通过一设置于电力通信网中电力通信设备处的电力通信设备预警模块对电力通信设备的运行状态进行实时监控,并生成预警信息,经一设置于电力通信网调度端的集中数据处理模块传输至一电力通信网调度模块,通知调度端调度人员该电力通信设备处存在缺陷故障;Step S1: Monitor the operating status of the power communication equipment in real time through a power communication equipment early warning module set at the power communication equipment in the power communication network, and generate early warning information, and pass through a centralized data processing module set at the dispatching end of the power communication network Transmit to a power communication network dispatching module, and notify the dispatcher at the dispatching end that there is a defect in the power communication device;
步骤S2:所述集中数据处理模块根据所述预警信息,经一第一查询单元于一电力通信网缺陷故障信息数据库中查询所述预警信息对应的电力通信设备缺陷故障信息,经一第二查询单元于一电力通信网缺陷故障处理信息数据库中查询所述电力通信设备缺陷故障信息对应的电力通信缺陷故障处理信息,经一第三查询单元于一电力通信网设备配置数据库中查询该电力通信设备的电力通信设备设备关联信息;Step S2: According to the early warning information, the centralized data processing module queries the power communication equipment defect failure information corresponding to the early warning information in a power communication network defect failure information database through a first query unit, and through a second query The unit queries the power communication defect fault processing information corresponding to the power communication equipment defect fault information in a power communication network defect fault processing information database, and queries the power communication device in a power communication network equipment configuration database through a third query unit related information of electric power communication equipment;
步骤S3:所述集中数据处理模块根据所述电力通信设备缺陷故障信息、所述电力通信缺陷故障处理信息以及所述电力通信设备设备关联信息生成电力通信设备缺陷故障综合信息,并将该电力通信设备缺陷故障综合信息发送至所述电力通信网调度模块;Step S3: The centralized data processing module generates defect fault comprehensive information of electric power communication equipment according to the electric power communication device defect fault information, the electric power communication defect fault processing information, and the electric power communication device related information, and sends the power communication device defect fault comprehensive information to The comprehensive information of equipment defects and failures is sent to the power communication network dispatching module;
步骤S4:所述电力通信网调度模块结合所述电力通信设备缺陷故障综合信息通过一电力通信网缺陷故障辅助识别模块生成该电力通信设备缺陷故障的电力通信设备缺陷故障业务影响等级,并将该电力通信设备缺陷故障业务影响等级反馈至所述集中数据处理模块;Step S4: The electric power communication network dispatching module generates the power communication equipment defect fault service impact level of the electric communication equipment defect fault through an electric power communication network defect fault auxiliary identification module in combination with the electric power communication equipment defect fault comprehensive information, and the The power communication equipment defect failure business impact level is fed back to the centralized data processing module;
步骤S5:所述集中数据处理模块经一第四查询单元于一电力通信网设备运维数据库中查询该电力通信设备的电力通信设备现场运维信息,并根据所述电力通信设备缺陷故障业务影响等级以及所述电力通信设备缺陷故障综合信息生成电力通信设备现场运维处置信息,且通过一第一信息推送单元将所述电力通信设备现场运维处置信息下发至一现场运维处理模块,通知现场运维人员进行现场处理,且所述电力通信设备现场运维处置信息作为现场运维参考信息供现场运维人员进行参考;Step S5: The centralized data processing module inquires the on-site operation and maintenance information of the electric communication equipment in an electric communication network equipment operation and maintenance database through a fourth query unit, and according to the business impact of the defect failure of the electric communication equipment The level and the comprehensive information of defects and faults of the power communication equipment generate the on-site operation and maintenance treatment information of the power communication equipment, and send the on-site operation and maintenance treatment information of the power communication equipment to an on-site operation and maintenance processing module through a first information push unit, Inform on-site operation and maintenance personnel to carry out on-site processing, and the on-site operation and maintenance disposal information of the power communication equipment is used as on-site operation and maintenance reference information for on-site operation and maintenance personnel to refer to;
步骤S6:现场运维人员根据所述现场运维处理模块接收的所述电力通信设备现场运维处置信息,对存在缺陷故障的电力通信设备进行维护,并在维护结束后通过所述现场运维处理模块,并经所述第一信息推送单元反馈一电力通信设备业务恢复确认信息至所述集中数据处理模块;所述集中数据处理模块将该电力通信设备业务恢复确认信息发送至所述电力通信网调度端,提示调度人员该电力通信设备已完成现场维护。Step S6: The on-site operation and maintenance personnel maintain the power communication equipment with defects and faults according to the on-site operation and maintenance disposal information of the power communication equipment received by the on-site operation and maintenance processing module, and pass the on-site operation and maintenance after the maintenance is completed. processing module, and feed back a power communication equipment business recovery confirmation information to the centralized data processing module through the first information push unit; the centralized data processing module sends the power communication equipment business recovery confirmation information to the power communication The network dispatching terminal reminds dispatchers that the power communication equipment has completed on-site maintenance.
在本发明一实施例中,所述电力通信设备预警模块还包括一设备预警数据采集单元、一设备预警数据处理单元以及一预警数据识别单元;所述设备预警数据采集单元用于实时监测所述电力通信设备的运行状态,若所述电力通信设备处于非正常运行状态时,生成预警初始信息,并将该预警初始信息发送至所述设备预警数据处理单元;所述设备预警数据处理单元从所述预警初始信息中获取预警数据,并传输至所述预警数据识别单元进行标准化处理,生成所述预警信息;所述预警信息包括所述电力通信设备ID、预警时间、电力通信设备类型以及电力通信设备位置信息。In an embodiment of the present invention, the electric power communication equipment early warning module further includes an equipment early warning data collection unit, an equipment early warning data processing unit, and an early warning data identification unit; the equipment early warning data collection unit is used for real-time monitoring of the The operating state of the power communication equipment, if the power communication equipment is in an abnormal operating state, generate early warning initial information, and send the early warning initial information to the equipment early warning data processing unit; the equipment early warning data processing unit The early warning data is obtained from the early warning initial information, and is transmitted to the early warning data identification unit for standardized processing to generate the early warning information; the early warning information includes the electric power communication equipment ID, early warning time, electric power communication equipment type, and electric power communication Device location information.
在本发明一实施例中,所述电力通信网调度模块根据所述预警信息生成一电力通信设备报警号,且该电力通信设备报警号包括该电力通信设备ID以及预警时间;所述电力通信网调度模块以电力通信设备报警号为索引名称,将所述将电力通信设备现场运维处置信息存贮于一电力通信网缺陷故障历时数据库中。In an embodiment of the present invention, the electric power communication network scheduling module generates an electric power communication equipment alarm number according to the early warning information, and the electric power communication equipment alarm number includes the electric power communication equipment ID and early warning time; the electric power communication network The dispatching module uses the alarm number of the power communication equipment as an index name, and stores the on-site operation and maintenance disposal information of the power communication equipment in a power communication network defect fault duration database.
在本发明一实施例中,所述电力通信设备缺陷故障信息包括:光纤故障、设备收光瞬断、光板故障以及光端机风扇故障;所述电力通信缺陷故障处理信息包括: 主备切换、电源切换以及先抢通后修复;所述电力通信设备设备关联信息包括与该电力通信设备相关联电力设备的电力设备ID信息、电力设备位置信息以及电力设备用户信息。In an embodiment of the present invention, the power communication equipment defect failure information includes: optical fiber failure, device light receiving momentary interruption, optical board failure, and optical transceiver fan failure; the power communication defect failure processing information includes: master-standby switchover, power supply switchover And repair first, then repair; the related information of the power communication device includes the power device ID information of the power device associated with the power communication device, the position information of the power device, and the user information of the power device.
在本发明一实施例中,在所述步骤S4中,所述电力通信设备缺陷故障业务影响等级包括普通、中级以及紧急。In an embodiment of the present invention, in the step S4, the service impact levels of the defect failure of the power communication equipment include normal, medium and emergency.
在本发明一实施例中,在所述步骤S5中,所述电力通信设备现场运维信息包括:与所述电力通信设备相匹配的现场运维处理模块的连接信息、负责所述电力通信设备的现场运维人员的工号、负责所述电力通信设备的现场运维人员姓名以及负责所述电力通信设备的现场运维室地理位置。In an embodiment of the present invention, in the step S5, the on-site operation and maintenance information of the electric power communication equipment includes: the connection information of the on-site operation and maintenance processing module matching the electric power communication equipment, the The job number of the on-site operation and maintenance personnel, the name of the on-site operation and maintenance personnel in charge of the power communication equipment, and the geographical location of the on-site operation and maintenance room in charge of the power communication equipment.
在本发明一实施例中,所述集中数据处理模块还与若干个备用信息推送单元相连,且所述备用信息推送单元与备用现场运维处理模块相连;若所述第一信息推送单元向所述现场运维处理模块发送电力通信设备现场运维处置信息过程中出现异常,则所述第一信息推送单元反馈一连接异常信息至所述集中数据处理模块;所述集中数据处理模块根据所述连接异常信息,经所述第四查询单元于所述电力通信网设备运维数据库中获取备用电力通信设备现场运维信息;并通过所述备用信息推送单元将所述电力通信设备现场运维处置信息发送至所述备用现场运维处理模块,通知备用的现场运维人员进行现场处理,且所述电力通信设备现场运维处置信息作为现场运维参考信息供备用现场运维人员进行参考。In an embodiment of the present invention, the centralized data processing module is also connected to several backup information push units, and the backup information push unit is connected to a backup on-site operation and maintenance processing module; If an abnormality occurs during the on-site operation and maintenance processing module sending the on-site operation and maintenance disposal information of electric power communication equipment, the first information push unit feeds back a connection abnormality information to the centralized data processing module; the centralized data processing module according to the Connect abnormal information, obtain the on-site operation and maintenance information of the standby power communication equipment in the power communication network equipment operation and maintenance database through the fourth query unit; and dispose of the on-site operation and maintenance of the power communication equipment through the standby information push unit The information is sent to the standby on-site operation and maintenance processing module, and the standby on-site operation and maintenance personnel are notified to perform on-site processing, and the on-site operation and maintenance disposal information of the power communication equipment is used as on-site operation and maintenance reference information for the standby on-site operation and maintenance personnel to refer to.
在本发明一实施例中,在所述步骤S6中,现场运维人员通过所述现场运维处理模块,实时将电力通信设备现场处理情况分阶段采用图片或文字进行记录,并实时经所述第一信息推送单元以及所述集中数据处理模块传送至所述电力通信网调度模块,供调度端调度人员获取电力通信设备处理现场情况;所述电力通信网调度模块根据所接收所述电力通信设备处理现场情况,生成电力通信设备现场情况处理信息,并根据所述电力通信设备报警号对应存储于所述电力通信网缺陷故障历时数据库中。In an embodiment of the present invention, in the step S6, the on-site operation and maintenance personnel use the on-site operation and maintenance processing module to record the on-site processing status of the power communication equipment in real time in stages using pictures or text, and in real time through the on-site operation and maintenance processing module. The first information push unit and the centralized data processing module transmit to the power communication network dispatching module for the dispatcher at the dispatching end to obtain the situation of the power communication equipment processing site; the power communication network dispatching module according to the received power communication equipment Process the on-site situation, generate the on-site situation processing information of the power communication equipment, and store it in the power communication network defect fault duration database correspondingly according to the alarm number of the power communication equipment.
在本发明一实施例中,在所述步骤S6中,现场运维人员在处理电力通信设备现场过程中,通过所述现场运维处理模块,经所述第一信息推送单元以及所述集中数据处理模块,于所述电力通信网缺陷故障处理信息数据库中查询电力通信缺陷故障处理信息。In an embodiment of the present invention, in the step S6, the on-site operation and maintenance personnel pass through the on-site operation and maintenance processing module, the first information push unit and the centralized data during the process of processing the power communication equipment on-site. A processing module, which searches the power communication network defect fault processing information database for processing information of power communication defect faults.
在本发明一实施例中,在所述步骤S6中,现场运维人员在处理电力通信设备现场结束后,通过所述现场运维处理模块采用图片或文字记录该次电力通信设备现场处理结果,并经所述第一信息推送单元以及所述集中数据处理模块传送至所述电力通信网调度模块;所述电力通信网调度模块根据所接收所述电力通信设备现场处理结果,生成电力通信设备现场处理结果信息,并根据所述电力通信设备报警号对应存储于所述电力通信网缺陷故障历时数据库中。In an embodiment of the present invention, in the step S6, the on-site operation and maintenance personnel record the on-site processing results of the electric communication equipment through the on-site operation and maintenance processing module through the on-site operation and maintenance processing module in the step S6, And send it to the power communication network scheduling module through the first information push unit and the centralized data processing module; the power communication network scheduling module generates the power communication device site processing result according to the received power communication device site The result information is processed, and stored in the power communication network defect fault duration database correspondingly according to the alarm number of the power communication equipment.
相较于现有技术,本发明具有以下有益效果:本发明所提出的一种电力通信网缺陷故障处理决策辅助分析方法,有效地提高了电力通信设备缺陷故障的处理效率和处理规范性,并为相关的功能数据库中数据的积累和丰富提供了有效的途径,为后续电力通信网缺陷故障处理决策辅助分析相关技术的完善提供了有效帮助。Compared with the prior art, the present invention has the following beneficial effects: a decision-making auxiliary analysis method for defect and fault processing of electric power communication network proposed by the present invention effectively improves the processing efficiency and standardization of defect fault of electric power communication equipment, and It provides an effective way for the accumulation and enrichment of data in the relevant functional database, and provides effective help for the improvement of related technologies for the follow-up power communication network defect handling decision-making assistance analysis.
附图说明Description of drawings
图1为本发明中电力通信网缺陷故障处理决策辅助分析方法流程图。Fig. 1 is a flow chart of an auxiliary analysis method for decision-making in handling defects and failures of electric power communication network in the present invention.
图2为本发明中电力通信网缺陷故障处理决策辅助分析方法匹配的系统原理图。Fig. 2 is a schematic diagram of the system matching the decision-making aided analysis method for the defect and failure of the power communication network in the present invention.
具体实施方式Detailed ways
下面结合附图,对本发明的技术方案进行具体说明。The technical solution of the present invention will be specifically described below in conjunction with the accompanying drawings.
本发明提供一种电力通信网缺陷故障处理决策辅助分析方法,如图1所示,按照如下步骤实现:The present invention provides an auxiliary analysis method for decision-making of defects in electric power communication networks, as shown in Figure 1, which is implemented according to the following steps:
步骤S1:通过一设置于电力通信网中电力通信设备处的电力通信设备预警模块对电力通信设备的运行状态进行实时监控,并生成预警信息,经一设置于电力通信网调度端的集中数据处理模块传输至一电力通信网调度模块,通知调度端调度人员该电力通信设备处存在缺陷故障。Step S1: Monitor the operating status of the power communication equipment in real time through a power communication equipment early warning module set at the power communication equipment in the power communication network, and generate early warning information, and pass through a centralized data processing module set at the dispatching end of the power communication network It is transmitted to a power communication network dispatching module, and the dispatcher is notified of the defects and faults in the power communication equipment.
步骤S2:所述集中数据处理模块根据所述预警信息,经一第一查询单元于一电力通信网缺陷故障信息数据库中查询所述预警信息对应的电力通信设备缺陷故障信息,经一第二查询单元于一电力通信网缺陷故障处理信息数据库中查询所述电力通信设备缺陷故障信息对应的电力通信缺陷故障处理信息,经一第三查询单元于一电力通信网设备配置数据库中查询该电力通信设备的电力通信设备设备关联信息。Step S2: According to the early warning information, the centralized data processing module queries the power communication equipment defect failure information corresponding to the early warning information in a power communication network defect failure information database through a first query unit, and through a second query The unit queries the power communication defect fault processing information corresponding to the power communication equipment defect fault information in a power communication network defect fault processing information database, and queries the power communication device in a power communication network equipment configuration database through a third query unit related information of power communication equipment.
步骤S3:所述集中数据处理模块根据所述电力通信设备缺陷故障信息、所述电力通信缺陷故障处理信息以及所述电力通信设备设备关联信息生成电力通信设备缺陷故障综合信息,并将该电力通信设备缺陷故障综合信息发送至所述电力通信网调度模块;为调度人员提供该电力通信设备的缺陷故障信息、缺陷故障处理信息以及与该电力通信设备设备关联信息。Step S3: The centralized data processing module generates defect fault comprehensive information of electric power communication equipment according to the electric power communication device defect fault information, the electric power communication defect fault processing information, and the electric power communication device related information, and sends the power communication device defect fault comprehensive information to The comprehensive information of equipment defects and faults is sent to the dispatching module of the electric power communication network; and the fault fault information of the electric power communication equipment, the processing information of defect faults and the information related to the electric power communication equipment are provided to dispatchers.
步骤S4:所述电力通信网调度模块结合所述电力通信设备缺陷故障综合信息通过一电力通信网缺陷故障辅助识别模块生成该电力通信设备缺陷故障的电力通信设备缺陷故障业务影响等级,并将该电力通信设备缺陷故障业务影响等级反馈至所述集中数据处理模块。Step S4: The electric power communication network dispatching module generates the power communication equipment defect fault service impact level of the electric communication equipment defect fault through an electric power communication network defect fault auxiliary identification module in combination with the electric power communication equipment defect fault comprehensive information, and the The business impact level of the defect failure of the power communication equipment is fed back to the centralized data processing module.
步骤S5:所述集中数据处理模块经一第四查询单元于一电力通信网设备运维数据库中查询该电力通信设备的电力通信设备现场运维信息,并根据所述电力通信设备缺陷故障业务影响等级以及所述电力通信设备缺陷故障综合信息生成电力通信设备现场运维处置信息,且通过一第一信息推送单元将所述电力通信设备现场运维处置信息下发至一现场运维处理模块,通知现场运维人员进行现场处理,且所述电力通信设备现场运维处置信息作为现场运维参考信息供现场运维人员进行参考;Step S5: The centralized data processing module inquires the on-site operation and maintenance information of the electric communication equipment in an electric communication network equipment operation and maintenance database through a fourth query unit, and according to the business impact of the defect failure of the electric communication equipment The level and the comprehensive information of defects and faults of the power communication equipment generate the on-site operation and maintenance treatment information of the power communication equipment, and send the on-site operation and maintenance treatment information of the power communication equipment to an on-site operation and maintenance processing module through a first information push unit, Inform on-site operation and maintenance personnel to carry out on-site processing, and the on-site operation and maintenance disposal information of the power communication equipment is used as on-site operation and maintenance reference information for on-site operation and maintenance personnel to refer to;
步骤S6:现场运维人员根据所述现场运维处理模块接收的所述电力通信设备现场运维处置信息,对存在缺陷故障的电力通信设备进行维护,并在维护结束后通过所述现场运维处理模块,并经所述第一信息推送单元反馈一电力通信设备业务恢复确认信息至所述集中数据处理模块;所述集中数据处理模块将该电力通信设备业务恢复确认信息发送至所述电力通信网调度端,提示调度人员该电力通信设备已完成现场维护。Step S6: The on-site operation and maintenance personnel maintain the power communication equipment with defects and faults according to the on-site operation and maintenance disposal information of the power communication equipment received by the on-site operation and maintenance processing module, and pass the on-site operation and maintenance after the maintenance is completed. processing module, and feed back a power communication equipment business recovery confirmation information to the centralized data processing module through the first information push unit; the centralized data processing module sends the power communication equipment business recovery confirmation information to the power communication The network dispatching terminal reminds dispatchers that the power communication equipment has completed on-site maintenance.
进一步的,在本实施例中,如图2所示,所述电力通信设备预警模块还包括一设备预警数据采集单元、一设备预警数据处理单元以及一预警数据识别单元;所述设备预警数据采集单元用于实时监测所述电力通信设备的运行状态,若所述电力通信设备处于非正常运行状态时,生成预警初始信息,并将该预警初始信息发送至所述设备预警数据处理单元;在本实施例中,设备预警数据采集单元用于通过设置在电力通信设备处检测电力通信设备工作状态的电流或电压检测系统、检测工作环境温湿度的温湿度传感器等装置实时采集电力通信设备现场工作状态并与额定工作状态向比较,若与额定工作状态不符合,则生成预警初始信息,用以监测电力通信设备的存在如存储光缆中断、供电中断、设备故障、机房火灾、雷击等可能出现的应急事故;所述设备预警数据处理单元从所述预警初始信息中获取预警数据,并传输至所述预警数据识别单元进行标准化处理,生成所述预警信息;在本实施例中,设备预警数据处理单元将设备预警数据采集单元所采集的模拟或数字信号中的相关数值等信息提取出来,做为预警数据,且同时作为预警数据识别单元进行标准化处理的相关参数,用以为与集中数据处理单元进行数据传输中提供一统一的数据传输接口;所述预警信息包括所述电力通信设备ID、预警时间、电力通信设备类型以及电力通信设备位置信息;Further, in this embodiment, as shown in FIG. 2 , the electric power communication equipment early warning module further includes an equipment early warning data collection unit, an equipment early warning data processing unit, and an early warning data identification unit; the equipment early warning data collection unit The unit is used to monitor the operating status of the electric power communication equipment in real time, and if the electric power communication equipment is in an abnormal operating state, generate early warning initial information and send the early warning initial information to the equipment early warning data processing unit; In the embodiment, the equipment early warning data acquisition unit is used to collect the on-site working status of the power communication equipment in real time through devices such as a current or voltage detection system installed at the power communication equipment to detect the working status of the power communication equipment, and a temperature and humidity sensor for detecting the temperature and humidity of the working environment. And compared with the rated working state, if it does not meet the rated working state, the initial warning information will be generated to monitor the existence of power communication equipment, such as storage optical cable interruption, power supply interruption, equipment failure, computer room fire, lightning strike and other possible emergencies Accident; the equipment early warning data processing unit obtains early warning data from the initial early warning information, and transmits it to the early warning data identification unit for standardized processing to generate the early warning information; in this embodiment, the equipment early warning data processing unit The information such as the relevant values in the analog or digital signals collected by the early warning data acquisition unit of the equipment is extracted as the early warning data, and at the same time, it is used as the relevant parameters for standardized processing of the early warning data identification unit, which is used for data processing with the centralized data processing unit. A unified data transmission interface is provided during transmission; the early warning information includes the electric power communication device ID, early warning time, type of electric power communication device and location information of the electric power communication device;
进一步的,在本实施例中,如图1所示,所述电力通信网调度模块根据所述预警信息生成一电力通信设备报警号,且该电力通信设备报警号包括该电力通信设备ID以及预警时间;所述电力通信网调度模块以电力通信设备报警号为索引名称,将所述将电力通信设备现场运维处置信息存贮于一电力通信网缺陷故障历时数据库中;该电力通信网缺陷故障历时数据库中存储的数据可用于后续电力通信设备现场维护工作总结的材料,并通过电力通信网缺陷故障辅助识别模块的配合,作为电力通信网缺陷故障处理信息数据库的输入数据。Further, in this embodiment, as shown in FIG. 1 , the electric power communication network scheduling module generates an electric power communication equipment alarm number according to the early warning information, and the electric power communication equipment alarm number includes the electric power communication equipment ID and the early warning number. Time; the electric power communication network dispatching module uses the electric power communication equipment alarm number as the index name, and stores the on-site operation and maintenance disposal information of the electric power communication equipment in a power communication network defect fault duration database; the electric power communication network defect fault The data stored in the time-lapse database can be used as materials for the subsequent on-site maintenance work summary of power communication equipment, and through the cooperation of the power communication network defect fault auxiliary identification module, it can be used as the input data of the power communication network defect fault processing information database.
进一步的,在本实施例中,所述电力通信设备缺陷故障信息包括:光纤故障、设备收光瞬断、光板故障以及光端机风扇故障或其他类型的缺陷故障信息,且在电力通信设备缺陷故障信息查询的过程中,根据预警信息的不同,对应一种或多种电力通信设备缺陷故障信息;此外,在本实施例中,电力通信设备缺陷故障信息将电力设备运行参数与具体类型的缺陷故障相匹配;所述电力通信缺陷故障处理信息包括:主备切换、电源切换以及先抢通后修复或其他类型的缺陷故障处理方案,且在对于不同的电力通信设备缺陷故障信息,对应一种或多种电力通信缺陷故障处理信息;在本实施例中,电力通信设备缺陷故障处理信息将电力设备缺陷故障的类型与具体类型的缺陷故障处理方法相匹配;所述电力通信设备设备关联信息包括与该电力通信设备相关联电力设备的电力设备ID信息、电力设备位置信息以及电力设备用户信息。Further, in this embodiment, the defect fault information of the electric communication equipment includes: optical fiber fault, momentary interruption of equipment receiving light, optical board fault, fan fault of optical transceiver or other types of defect fault information, and in the defect fault information of electric power communication equipment In the process of query, according to the difference of early warning information, one or more types of defect and fault information of power communication equipment are corresponding; in addition, in this embodiment, the defect and fault information of power communication equipment correlates the operating parameters of power equipment with specific types of defect faults. Matching; the power communication defect fault processing information includes: active-standby switchover, power switchover, and repair after first rushing through or other types of fault fault processing schemes, and for different fault fault information of power communication equipment, corresponding to one or more A kind of power communication defect fault processing information; in this embodiment, the power communication equipment defect fault processing information matches the type of power equipment defect fault with the specific type of defect fault processing method; the power communication device related information includes the The power device ID information of the power device associated with the power communication device, the position information of the power device, and the user information of the power device.
进一步的,在所述步骤S4中,如图1和图2所示,所述电力通信设备缺陷故障业务影响等级包括普通、中级以及紧急。在本实施例中,电力通信网调度模块以及电力通信网缺陷故障辅助识别模块相配合,通过判断电力通信设备缺陷故障信息的中所包括的缺陷故障数量以及类型、电力通信缺陷故障处理信息中所包括的缺陷故障处理信息的类型以及对应的数量以及电力通信设备设备关联信息所包括的用户类型和用户数量综合判断电力通信设备缺陷故障业务影响等级;且在过程中,所生成的电力通信设备缺陷故障业务影响等级可供调度端的调度人员进行参考,且可经电力通信网缺陷故障辅助识别模块根据电力通信设备的现场情况对应进行修正。Further, in the step S4, as shown in FIG. 1 and FIG. 2 , the business impact levels of the defect failure of the power communication equipment include normal, medium and emergency. In this embodiment, the power communication network dispatching module and the power communication network defect fault auxiliary identification module cooperate to judge the number and type of defect faults included in the power communication equipment defect fault information, and the power communication defect fault processing information. The type and corresponding quantity of defect and fault handling information included, as well as the user type and number of users included in the power communication equipment related information comprehensively judge the business impact level of the power communication equipment defect fault; and in the process, the generated power communication equipment defect The service impact level of the fault can be used as a reference by the dispatcher at the dispatching end, and can be corrected by the power communication network defect fault auxiliary identification module according to the on-site conditions of the power communication equipment.
进一步的,在本实施例中,在所述步骤S5中,所述电力通信设备现场运维信息包括:与所述电力通信设备相匹配的现场运维处理模块的连接信息、负责所述电力通信设备的现场运维人员的工号、负责所述电力通信设备的现场运维人员姓名以及负责所述电力通信设备的现场运维室地理位置。Further, in this embodiment, in the step S5, the on-site operation and maintenance information of the electric power communication equipment includes: the connection information of the on-site operation and maintenance processing module matching the electric power communication equipment, the The job number of the on-site operation and maintenance personnel of the equipment, the name of the on-site operation and maintenance personnel in charge of the power communication equipment, and the geographical location of the on-site operation and maintenance room in charge of the power communication equipment.
进一步的,在本实施例中,如图1所示,所述集中数据处理模块还与若干个备用信息推送单元相连,且所述备用信息推送单元与备用现场运维处理模块相连;若所述第一信息推送单元向所述现场运维处理模块发送电力通信设备现场运维处置信息过程中出现异常,如第一信息推送单元在接收时限内没有接收到现场运维模块的确认接收信息,则所述第一信息推送单元反馈一连接异常信息至所述集中数据处理模块;所述集中数据处理模块根据所述连接异常信息,经所述第四查询单元于所述电力通信网设备运维数据库中获取备用电力通信设备现场运维信息;并通过所述备用信息推送单元将所述电力通信设备现场运维处置信息发送至所述备用现场运维处理模块,通知备用的现场运维人员进行现场处理,且所述电力通信设备现场运维处置信息作为现场运维参考信息供备用现场运维人员进行参考。在本实施例中,备用电力通信设备现场运维信息包括:与所述电力通信设备相匹配的备用现场运维处理模块的连接信息、负责所述电力通信设备的备用现场运维人员的工号、负责所述电力通信设备的备用现场运维人员姓名以及负责所述电力通信设备的备用现场运维室地理位置。Further, in this embodiment, as shown in Figure 1, the centralized data processing module is also connected to several backup information push units, and the backup information push unit is connected to a backup on-site operation and maintenance processing module; if the An abnormality occurs during the process of sending the on-site operation and maintenance disposal information of the electric power communication equipment by the first information push unit to the on-site operation and maintenance processing module. The first information push unit feeds back abnormal connection information to the centralized data processing module; the centralized data processing module searches the power communication network equipment operation and maintenance database through the fourth query unit according to the abnormal connection information Obtain the on-site operation and maintenance information of the standby power communication equipment; and send the on-site operation and maintenance disposal information of the power communication equipment to the standby on-site operation and maintenance processing module through the standby information push unit, and notify the standby on-site operation and maintenance personnel to perform on-site processing, and the on-site operation and maintenance disposal information of the power communication equipment is used as on-site operation and maintenance reference information for reference by standby on-site operation and maintenance personnel. In this embodiment, the on-site operation and maintenance information of the backup power communication equipment includes: the connection information of the backup on-site operation and maintenance processing module that matches the power communication equipment, and the job number of the backup on-site operation and maintenance personnel in charge of the power communication equipment , the name of the backup on-site operation and maintenance personnel in charge of the power communication equipment, and the geographical location of the backup on-site operation and maintenance room in charge of the power communication equipment.
进一步的,在本实施例中,在所述步骤S6中,如图1和图2所示,现场运维人员通过所述现场运维处理模块,实时将电力通信设备现场处理情况分阶段采用图片或文字进行记录,并实时经所述第一信息推送单元以及所述集中数据处理模块传送至所述电力通信网调度模块,供调度端调度人员获取电力通信设备处理现场情况;所述电力通信网调度模块根据所接收所述电力通信设备处理现场情况,生成电力通信设备现场情况处理信息,并根据所述电力通信设备报警号对应存储于所述电力通信网缺陷故障历时数据库中。在本实施例中,通过该中方式可以实现缺陷故障的催办、执行跟踪与结果确认,是电力通信网中缺陷故障管理的支撑。Further, in this embodiment, in the step S6, as shown in FIG. 1 and FIG. 2 , the on-site operation and maintenance personnel use the on-site operation and maintenance processing module to real-time process the on-site processing of the power communication equipment in stages using pictures or text to record, and send it to the dispatching module of the power communication network through the first information push unit and the centralized data processing module in real time, so that the dispatcher at the dispatching end can obtain the on-site situation of the power communication equipment processing; the power communication network The dispatching module generates on-site situation processing information of the power communication equipment according to the received on-site situation of the power communication equipment, and correspondingly stores it in the power communication network defect fault duration database according to the alarm number of the power communication equipment. In this embodiment, this method can realize the prompting, execution tracking and result confirmation of defects and faults, which is the support for faults and faults management in the power communication network.
进一步的,在本实施例中,在所述步骤S6中,如图1和图2所示,现场运维人员在处理电力通信设备现场过程中,通过所述现场运维处理模块,经所述第一信息推送单元以及所述集中数据处理模块,于所述电力通信网缺陷故障处理信息数据库中查询电力通信缺陷故障处理信息。Further, in this embodiment, in the step S6, as shown in FIG. 1 and FIG. 2 , the on-site operation and maintenance personnel pass the on-site operation and maintenance processing module through the The first information push unit and the centralized data processing module query the power communication defect fault processing information database in the power communication network fault fault processing information.
进一步的,在本实施例中,在所述步骤S6中,如图1和图2所示,现场运维人员在处理电力通信设备现场结束后,通过所述现场运维处理模块采用图片或文字记录该次电力通信设备现场处理结果,并经所述第一信息推送单元以及所述集中数据处理模块传送至所述电力通信网调度模块;所述电力通信网调度模块根据所接收所述电力通信设备现场处理结果,生成电力通信设备现场处理结果信息,并根据所述电力通信设备报警号对应存储于所述电力通信网缺陷故障历时数据库中。Further, in this embodiment, in the step S6, as shown in Fig. 1 and Fig. 2, after the on-site operation and maintenance personnel finish processing the power communication equipment on-site, they use pictures or texts through the on-site operation and maintenance processing module Record the on-site processing result of the power communication equipment, and send it to the power communication network scheduling module through the first information push unit and the centralized data processing module; the power communication network scheduling module according to the received power communication The on-site processing results of the equipment generate information on the on-site processing results of the power communication equipment, and store them in the power communication network defect fault duration database correspondingly according to the alarm number of the power communication equipment.
进一步的,在本实施例中,采用本发明所提出方法,为后续电力通信网中电力通信设备缺陷故障数据统计分析提供了有力支撑。该统计分析是对历史缺陷记录进行数据挖掘分析总结,从历史记录中寻找缺陷高发的网络环节、设备类型、设备厂家型号、发生原因,作为降低通信缺陷的重要数据参考,为网络资源调配、网络优化、网络规划等通信网调度管理和建设工作提供了有力帮助。Furthermore, in this embodiment, the method proposed by the present invention provides strong support for the statistical analysis of fault data of power communication equipment defects in the subsequent power communication network. This statistical analysis is a data mining analysis and summary of historical defect records, looking for network links, equipment types, equipment manufacturer models, and causes of frequent defects from historical records. Optimization, network planning and other communication network scheduling management and construction work provides a strong help.
以上是本发明的较佳实施例,凡依本发明技术方案所作的改变,所产生的功能作用未超出本发明技术方案的范围时,均属于本发明的保护范围。The above are the preferred embodiments of the present invention, and all changes made according to the technical solution of the present invention, when the functional effect produced does not exceed the scope of the technical solution of the present invention, all belong to the protection scope of the present invention.
Claims (10)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201510283496.2A CN105049223B (en) | 2015-05-29 | 2015-05-29 | A kind of power telecom network defect troubleshooting decision assistant analysis method |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201510283496.2A CN105049223B (en) | 2015-05-29 | 2015-05-29 | A kind of power telecom network defect troubleshooting decision assistant analysis method |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| CN105049223A CN105049223A (en) | 2015-11-11 |
| CN105049223B true CN105049223B (en) | 2018-06-15 |
Family
ID=54455445
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201510283496.2A Active CN105049223B (en) | 2015-05-29 | 2015-05-29 | A kind of power telecom network defect troubleshooting decision assistant analysis method |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN105049223B (en) |
Families Citing this family (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN105357062A (en) * | 2015-12-11 | 2016-02-24 | 谭焕玲 | Auxiliary analysis method of defect fault handling and decision making of electric power communication network |
| CN105657021A (en) * | 2016-01-12 | 2016-06-08 | 国家电网公司 | Method, apparatus and cloud server for processing power system defects |
| CN106845648A (en) * | 2016-12-09 | 2017-06-13 | 国网北京市电力公司 | Data processing method and device |
| CN106803342A (en) * | 2016-12-13 | 2017-06-06 | 国网北京市电力公司 | Mobile detection apparatus and fault detection method and device |
| CN107204892B (en) * | 2017-04-12 | 2020-07-21 | 北京国电通网络技术有限公司 | Power communication network operation data processing method and device |
| CN107704331A (en) * | 2017-09-22 | 2018-02-16 | 国家电网公司 | Electrical equipment fault analyzes and processes householder method and device |
| CN108416490A (en) * | 2018-01-15 | 2018-08-17 | 全球能源互联网研究院有限公司 | A kind of electric communication operation and maintenance information-pushing method and system |
| CN108510242B (en) * | 2018-03-27 | 2021-09-07 | 国网河北省电力有限公司电力科学研究院 | Work order processing method, system and terminal device |
| CN109669402B (en) * | 2018-09-25 | 2022-08-19 | 平安普惠企业管理有限公司 | Abnormity monitoring method, device, apparatus and computer readable storage medium |
| CN112165501A (en) * | 2020-08-05 | 2021-01-01 | 宁夏无线互通信息技术有限公司 | Remote operation and maintenance system and method for product analysis based on industrial internet identification |
| CN113436411B (en) * | 2021-06-30 | 2023-03-31 | 南昌逸勤科技有限公司 | Communication method, communication apparatus, and computer-readable storage medium |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103501051A (en) * | 2011-12-04 | 2014-01-08 | 江苏省电力公司南京供电公司 | Fault handling platform for power distribution and consumption network |
| CN104360208A (en) * | 2014-12-05 | 2015-02-18 | 国家电网公司 | Acquisition failure analyzing and processing method of electricity utilization information acquisition operating and maintaining system |
-
2015
- 2015-05-29 CN CN201510283496.2A patent/CN105049223B/en active Active
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103501051A (en) * | 2011-12-04 | 2014-01-08 | 江苏省电力公司南京供电公司 | Fault handling platform for power distribution and consumption network |
| CN104360208A (en) * | 2014-12-05 | 2015-02-18 | 国家电网公司 | Acquisition failure analyzing and processing method of electricity utilization information acquisition operating and maintaining system |
Also Published As
| Publication number | Publication date |
|---|---|
| CN105049223A (en) | 2015-11-11 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN105049223B (en) | A kind of power telecom network defect troubleshooting decision assistant analysis method | |
| CN110782370B (en) | Comprehensive operation and maintenance management platform for power dispatching data network | |
| CN105354755B (en) | The management method of supply equipment based on Internet of Things | |
| CN103163841B (en) | Automation equipment long distance control system and method | |
| CN103163842B (en) | Automation equipment long distance control system and method | |
| CN106443345B (en) | A fault location system and method for overhead distribution lines | |
| CN104950855A (en) | Town sewage plant and pump station operation monitoring management system and town sewage plant and pump station operation monitoring management method | |
| CN103473710A (en) | Graded handling method for faults of centralized operation and maintenance systems | |
| CN103763127B (en) | A kind of equipment state alarm monitoring method and system | |
| CN110658760A (en) | A power operation and maintenance terminal with remote positioning and communication | |
| CN104821900B (en) | Power telecom network emergency first-aid repair whole process managing and control system based on mobile platform application | |
| CN103279830A (en) | Transformer substation or converter station accident handling cloud terminal remote support decision-making method and system | |
| CN109559064A (en) | The operation and maintenance method of gate based on Internet of Things | |
| CN111045364B (en) | Power environment monitoring system decision-making assisting method based on big data platform | |
| CN105049253A (en) | Method for obtaining mobile network fault location and fault early warning | |
| CN115208059A (en) | Transformer substation power and environment monitoring alarm processing system and method | |
| CN116738163A (en) | Energy consumption monitoring and management system and method based on rule engine | |
| CN102841589B (en) | Remote intelligent maintenance system for online environment monitoring instrument | |
| CN110908325A (en) | A monitoring system for operation and maintenance of power supply equipment in information computer room of high-speed railway station | |
| CN115760073A (en) | A BIM model-based substation equipment maintenance system and method | |
| CN113298672B (en) | Mains fault monitoring method and device, system, storage medium, and electronic equipment | |
| CN104750092A (en) | Automatic diagnosis method for remote control/ remote transferring instruction transmission fault of industrial control system | |
| CN119582444A (en) | A microgrid intelligent operation and maintenance controller and method | |
| CN118739568A (en) | A method for emergency warning of power system | |
| CN118677102A (en) | Power grid running state sensing method and system |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| C06 | Publication | ||
| PB01 | Publication | ||
| C10 | Entry into substantive examination | ||
| SE01 | Entry into force of request for substantive examination | ||
| GR01 | Patent grant | ||
| GR01 | Patent grant |