WO2023160558A1 - 一种变电站视频及环境监控站端***智能运维终端 - Google Patents

一种变电站视频及环境监控站端***智能运维终端 Download PDF

Info

Publication number
WO2023160558A1
WO2023160558A1 PCT/CN2023/077503 CN2023077503W WO2023160558A1 WO 2023160558 A1 WO2023160558 A1 WO 2023160558A1 CN 2023077503 W CN2023077503 W CN 2023077503W WO 2023160558 A1 WO2023160558 A1 WO 2023160558A1
Authority
WO
WIPO (PCT)
Prior art keywords
video
monitoring
module
data
substation
Prior art date
Application number
PCT/CN2023/077503
Other languages
English (en)
French (fr)
Inventor
宁雪峰
芦大伟
何建宗
李元佳
姚俊钦
钟荣富
谢肇轩
吴小彪
张承周
谢龙裕
陈鹏
Original Assignee
广东电网有限责任公司东莞供电局
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 广东电网有限责任公司东莞供电局 filed Critical 广东电网有限责任公司东莞供电局
Publication of WO2023160558A1 publication Critical patent/WO2023160558A1/zh

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00001Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network characterised by the display of information or by user interaction, e.g. supervisory control and data acquisition systems [SCADA] or graphical user interfaces [GUI]
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00002Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network characterised by monitoring
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00006Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network characterised by information or instructions transport means between the monitoring, controlling or managing units and monitored, controlled or operated power network element or electrical equipment
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J13/00Circuit arrangements for providing remote indication of network conditions, e.g. an instantaneous record of the open or closed condition of each circuitbreaker in the network; Circuit arrangements for providing remote control of switching means in a power distribution network, e.g. switching in and out of current consumers by using a pulse code signal carried by the network
    • H02J13/00032Systems characterised by the controlled or operated power network elements or equipment, the power network elements or equipment not otherwise provided for
    • H02J13/00034Systems characterised by the controlled or operated power network elements or equipment, the power network elements or equipment not otherwise provided for the elements or equipment being or involving an electric power substation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • H04N7/183Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a single remote source
    • 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
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B90/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02B90/20Smart grids as enabling technology in buildings sector
    • 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
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S40/00Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them
    • Y04S40/12Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment

Definitions

  • This application relates to the technical field of substation operation and maintenance, for example, it relates to an intelligent operation and maintenance terminal for substation video and environmental monitoring station end systems.
  • Substation refers to the place where voltage and current are transformed, received and distributed in the power system.
  • the substation in the power plant is a step-up substation.
  • the function of the substation is to boost the power generated by the generator and then feed it to the high-voltage power grid. .
  • the real-time operation status of the substation is monitored by intelligent video.
  • the operation and maintenance management of the intelligent video system adopted by the substation has the following problems. Difficulty in diagnosis, high investment in operation and maintenance, and lack of system diagnosis make it impossible to support later operation and maintenance.
  • This application provides an intelligent operation and maintenance terminal for substation video and environmental monitoring station-end systems, which effectively solves the problems in the related technologies that there are too many station-end devices, difficult to locate problems, and difficult to manage station-side devices, which leads to the lack of unified management of the parameter data of the station-side devices. ,
  • the diagnosis of video image quality is difficult, the investment in operation and maintenance is large, and the lack of system diagnosis makes it impossible to support the problem of later operation and maintenance.
  • An intelligent operation and maintenance terminal for a substation video and environmental monitoring station end system comprising:
  • the substation video monitoring system is installed around the substation, and the substation video monitoring system is used for video monitoring and environmental information collection of the substation to obtain monitoring data;
  • the substation operation and maintenance terminal is connected in communication with the substation video monitoring system, and the substation operation and maintenance terminal is used to perform station-side network diagnosis, station-side data flow monitoring, and station-side equipment according to the monitoring data of the substation video monitoring system.
  • the integrated data network is communicatively connected to the substation video monitoring system, and the integrated data network is used to transmit the received monitoring data obtained by the substation video monitoring system to the substation operation and maintenance terminal;
  • the intelligent electric box control system is connected with the wires of the substation video surveillance system, and the intelligent electric box control system is used to control the shutdown and restart of the substation video surveillance system for operation and maintenance;
  • An intelligent platform the intelligent platform communicates with both the substation video monitoring system and the intelligent electric box control system through the integrated data network, and the intelligent platform is used for monitoring results of the operation and maintenance terminal of the substation and The operation and maintenance of the intelligent electric box control system will be displayed.
  • the substation video monitoring system includes an RPU, video monitoring equipment, and environmental information collection equipment
  • the video monitoring equipment is used to perform video monitoring on the surrounding environment of the substation, and store the video monitoring recordings in the RPU, so The above environmental information collection equipment is used to adopt the surrounding environmental data of the substation;
  • the video monitoring equipment, the RPU and the environmental information collection equipment are all connected to a switch through a wired network, and the substation operation and maintenance terminal is connected to the switch in communication.
  • the substation operation and maintenance terminal is communicatively connected to the substation video monitoring system through a wired network;
  • the substation operation and maintenance terminal includes:
  • a network diagnosis module the network diagnosis module is used to monitor network abnormality and generate a network abnormality cause report
  • a data flow monitoring module the data flow monitoring module is used to monitor data communication anomalies and generate data anomalies and cause analysis reports;
  • the equipment operation monitoring module is connected in communication with the intelligent electric box control system, and the equipment operation monitoring module is used to monitor the operation status of the equipment at the station and generate a report on the cause of equipment abnormality; the intelligent electric box control system is based on the equipment operation monitoring The data processing result of the module controls the restart of the video surveillance equipment;
  • a signal quality monitoring module the signal quality monitoring module is used to monitor the line signal quality
  • a video image diagnosis module the video image diagnosis module is used to monitor the video image quality and generate Video image abnormal cause report;
  • the RPU video recording integrity diagnosis module is used to analyze the video recording and obtain the integrity diagnosis result
  • a resource management module where the resource management module is used to store hardware data of station-side equipment
  • Operation and maintenance client the operation and maintenance client and network diagnosis module, data flow monitoring module, equipment operation monitoring module, signal quality monitoring module, video image diagnosis module, RPU video integrity diagnosis module, resource management module and the substation Communication connection of video monitoring system.
  • the network diagnosis module is connected to the wired network
  • the wired network operation data threshold is stored in the network diagnosis module, the network diagnosis module collects the real-time operation data of the wired network, compares the real-time operation data with the wired network operation data threshold, and The comparison results are recorded and analyzed to obtain network abnormal points, so as to generate the network abnormal cause report.
  • the data flow monitoring module is used to extract data flow operation data
  • the data flow monitoring module stores a data flow data threshold, and the data flow monitoring module is used to compare the data flow operation data with the data flow data threshold, and analyze the comparison result to obtain a communication
  • the data abnormality device is used to generate the data abnormality and cause analysis report.
  • the equipment operation monitoring module is communicatively connected to the resource management module;
  • the equipment operation monitoring module is used to collect the real-time operation data of the RPU, the video monitoring equipment and the environmental information collection equipment, and extract the hardware data in the resource management module, and compare the real-time operation data with the hardware data Compare, and analyze the abnormal equipment according to the comparison results to generate a report on the cause of the equipment abnormality;
  • the equipment operation monitoring module is also used to send an abnormal signal to the intelligent electric box control system when abnormal equipment is detected, and the intelligent electric box control system controls the video monitoring equipment to restart according to the abnormal signal.
  • the video image diagnosis module is used to collect real-time monitoring images of the video monitoring equipment, and detect image parameters of the real-time monitoring images; the image parameters include brightness, clarity, interference, and color cast , Picture freezing, signal loss, picture shaking and occlusion;
  • the image data threshold is stored in the video image diagnosis module, and the video image diagnosis module is used to compare the detected image parameters with the image data threshold, analyze and obtain the cause of abnormal video image quality according to the comparison result, and generate a video Image abnormal reason report.
  • the RPU recording integrity diagnosis module is used to extract and analyze the video surveillance recordings in the RPU, extract the video images of the video surveillance recordings at different time nodes, and convert the adjacent time nodes The video images are compared, and the completeness of the video surveillance video is obtained according to the comparison results.
  • the intelligent platform includes:
  • An application business module communicates with the smart electric box control system, and is used to collect and display the operation and maintenance status of the smart electric box control system;
  • a data engine module the data engine module is used to retrieve the monitoring results of the substation operation and maintenance terminal at other substation ends;
  • a diagnostic algorithm library is communicatively connected with the network diagnostic module, data flow monitoring module, equipment operation monitoring module, signal quality monitoring module, video image diagnostic module and RPU video integrity diagnostic module; the diagnostic algorithm library Including data flow diagnosis algorithm, video diagnosis algorithm, equipment information algorithm, network diagnosis algorithm and equipment diagnosis algorithm.
  • the intelligent platform further includes an acquisition layer, and the acquisition layer communicates with the network diagnosis module, the data flow monitoring module, the equipment operation monitoring module, the signal quality monitoring module, the video image diagnosis module and the resource management module connection; the acquisition layer includes video data, device data, network data and data flow data.
  • This application sets up a substation operation and maintenance terminal at the substation station to realize real-time monitoring and intelligent operation and maintenance of the substation video monitoring system, effectively improving the online rate, availability and stability of the substation video monitoring system, and providing a large-scale substation.
  • Intelligent video construction and application provide guarantees, and at the same time can reduce the skill requirements of maintenance personnel, improve the efficiency of substation video maintenance, and reduce operation and maintenance investment.
  • Fig. 1 is a structural block diagram of an intelligent operation and maintenance terminal of a substation video and environmental monitoring station end system provided by the embodiment of the present application;
  • Fig. 2 is a structural block diagram of a substation operation and maintenance terminal in an embodiment of the present application.
  • this application provides an intelligent operation and maintenance terminal for substation video and environmental monitoring station-side system.
  • a substation operation and maintenance terminal By setting up a substation operation and maintenance terminal at the substation station, real-time monitoring and intelligent operation and maintenance of the substation video monitoring system are realized.
  • Improve the online rate, availability and stability of substation video monitoring system provide guarantee for large-scale intelligent video construction and application in substations, reduce the skill requirements of maintenance personnel, improve substation video maintenance efficiency, and reduce operation and maintenance investment.
  • This application includes substation video monitoring system, integrated data network, substation operation and maintenance terminal, intelligent electric box control system and intelligent platform.
  • the substation video monitoring system is set up around the substation, and the substation video monitoring system is used for video monitoring and environmental information collection of the substation;
  • the integrated data network communicates with the substation video monitoring system (to realize data transmission and access).
  • the integrated data network is used to transmit the monitoring data received from the substation video monitoring system to the substation operation and maintenance terminal; the substation operation and maintenance terminal, and Substation video surveillance system communication connection.
  • the substation operation and maintenance terminal is used to perform station-side network diagnosis, station-side data flow monitoring, station-side equipment operation monitoring, network management DC power monitoring, video image abnormality diagnosis and RPU video integrity diagnosis based on the monitoring data of the substation video monitoring system , and according to the operation monitoring results of the station-side equipment, the intelligent electric box is controlled to control the substation video monitoring system to restart;
  • the intelligent electrical box control system is connected with the substation video monitoring system with wires, and the intelligent electrical box control system is used to control the shutdown and restart of the substation video monitoring system for operation and maintenance;
  • the intelligent platform is connected to the substation video monitoring system and the intelligent electric box control system through the integrated data network.
  • the intelligent platform is used for the monitoring results of the operation and maintenance terminal of the substation and the operation and maintenance of the intelligent electric box control system to show.
  • the substation video monitoring system monitors the substation in real time.
  • the substation video monitoring system mainly adopts the following optional embodiments.
  • the substation video monitoring system includes RPU, video monitoring equipment and environmental information collection equipment.
  • the video monitoring equipment is used to monitor the surrounding environment of the substation video surveillance, and
  • the frequency monitoring video is stored in the RPU, and the environmental information collection equipment is used to adopt the surrounding environmental data of the substation;
  • the video monitoring equipment, RPU, and environmental information collection equipment are all connected to the switch through the wired network, and the operation and maintenance terminal of the substation is connected to the switch through communication.
  • the video monitoring equipment, RPU and environmental information collection equipment all transmit the collected data and their own operation data to the intelligent platform and the operation and maintenance terminal of the substation through the wired network and the switchboard, so as to display on the intelligent platform and operate and maintain the substation
  • the terminal performs data processing and analysis.
  • the substation operation and maintenance terminal communicates with the substation video monitoring system through a wired network.
  • the substation operation and maintenance terminal in this application mainly achieves the following purposes:
  • station-side network fault location Realize station-side network fault location, station-side device fault location, instruction data problem location, video image quality diagnosis, RPU video integrity diagnosis, station-side device operation monitoring, station-side device online, disconnection monitoring, station-side device management, Unified management of station-side device models, parameters, and configurations.
  • the substation operation and maintenance terminal of this application mainly adopts the following optional embodiments, as shown in Figure 2, the substation operation and maintenance terminal includes a network diagnosis module, a data stream monitoring module, an equipment operation monitoring module, a signal quality monitoring module, a video Image diagnosis module, RPU video integrity diagnosis module, resource management module, and operation and maintenance client.
  • the network diagnosis module is used to monitor network abnormality and generate a network abnormality cause report; Equipment abnormal cause report, the equipment operation monitoring module communicates with the intelligent electric box control system, the intelligent electric box control system controls the restart of the video surveillance equipment according to the data processing results of the equipment operation monitoring module, the signal quality monitoring module monitors the line signal quality, and the video
  • the image diagnosis module is used to monitor the video image quality and generate a video image abnormal cause report.
  • the RPU video record integrity diagnosis module is used to analyze the recorded video to obtain the integrity diagnosis result.
  • the resource management module is used to store the hardware data of the station-end equipment.
  • a unified operation and maintenance client is set up in this application, and the operation and maintenance client is connected with the network diagnosis module, data flow monitoring module, and equipment operation monitoring module, signal quality monitoring module, video image diagnosis module, RPU video integrity diagnosis module, resource management module, and substation video monitoring system communication connection, operation and maintenance personnel only It is necessary to maintain the operation and maintenance client to reduce its maintenance difficulty, and then solve the problems of the original client being stuck and exit abnormally, and reduce the problem of difficult maintenance caused by more clients.
  • the network diagnosis module is connected to the wired network, and the wired network operation data threshold is stored in the network diagnosis module, and the network diagnosis module collects the real-time operation data of the wired network, and compares it with the The wired network operation data threshold is compared, and the network diagnosis module records and analyzes the comparison results to obtain network abnormal points and generate a network abnormal cause report.
  • the wired network is recorded as a network abnormal point, and the network abnormal cause report mentioned in this embodiment mainly records the real-time data of each wired network.
  • the operation status (normal or abnormal) and the number or location of the wired network where the abnormal situation occurs are displayed in time.
  • the wired network operation data thresholds corresponding to different wired networks may be different, depending on the actual situation.
  • the data flow monitoring module can be connected to the data flow to monitor the data flow in real time.
  • the data flow monitoring module extracts the data flow operation data.
  • the data flow operation data is compared with the data flow data threshold, and the comparison results are analyzed to obtain abnormal communication data devices and generate data abnormality and cause analysis reports.
  • the data operation data of a certain data flow is inconsistent with the comparison result of the data flow data threshold
  • the data flow is recorded as data communication abnormality
  • the data abnormality and cause analysis report mentioned in this embodiment records each
  • the real-time operation status (normal or abnormal) of the data stream is used for the operation and maintenance personnel to observe the number or position of the abnormal data stream in time.
  • the data stream data thresholds corresponding to different data streams may be different, depending on the actual situation depends.
  • the device operation monitoring module communicates with the resource management module, and the device operation monitoring module collects real-time operation data of RPU, video surveillance equipment, and environmental information collection equipment, and extracts resource management
  • the hardware data in the module compares the real-time operation data with the hardware data, and the equipment operation monitoring module analyzes the abnormal equipment according to the comparison result and generates a report on the cause of the equipment abnormality.
  • the real-time operation data of the RPU, the video monitoring device, or the environmental information collection device is compared with the hardware data, and the case of inconsistent comparison results is recorded as the RPU, the video monitoring device, Or if the environmental information collection equipment breaks down, the operation status (normal or abnormal) of the RPU, video surveillance equipment, and environmental information collection equipment is recorded in the equipment abnormal cause report in this embodiment, so that the operation and maintenance personnel can observe the abnormal situation in time equipment; it can be understood that in this embodiment, the hardware data corresponding to the RPU, the video surveillance equipment, or the environmental information collection equipment is different, and it depends on the actual situation.
  • the equipment operation monitoring module sends an abnormal signal to the corresponding intelligent electric box control system according to the RPU, video surveillance equipment, or environmental information collection equipment when abnormal equipment is detected.
  • the intelligent electric box control system controls the video surveillance equipment to restart according to the abnormal signal, solves the problem of program suspended animation of RPU, video surveillance equipment and environmental information collection equipment, and reduces the number of operation and maintenance in the actual application process.
  • this embodiment designs a signal quality monitoring module, which mainly performs optical cable signal quality monitoring, cable signal monitoring, and device image monitoring. According to device image monitoring, it can be judged whether the device is powered off.
  • the DC power supply of the network management can also be set. When the signal quality monitoring module detects an abnormality, it can be reduced to the DC power supply of the network management and restarted to solve the situation of temporary disconnection of the equipment signal.
  • the embodiment of the present application provides a video image diagnosis module, which is used to collect real-time monitoring images of video surveillance equipment, and detect image parameters of real-time monitoring images.
  • Image data is stored in the video image diagnosis module Threshold, and compare the detected image parameters with the image data threshold, the video image diagnosis module analyzes the cause of abnormal video image quality according to the comparison result, and generates a video image abnormal cause report.
  • the video surveillance device when the image parameter is inconsistent with the image data threshold, the video surveillance device is recorded as abnormal, and the video image abnormal cause report in this embodiment records the operation of each video surveillance device (abnormal or Normal), so that the operation and maintenance personnel can observe the abnormal situation of the video surveillance equipment.
  • image parameters include brightness, clarity, interference, color cast, picture freezing, signal loss, picture shaking and occlusion, and each image parameter is checked during the diagnostic process of the video image diagnosis module All checks are carried out so that the fault point can be repaired in time when an abnormality is detected.
  • this application sets the RPU video integrity diagnostic module, RPU
  • the video integrity diagnosis module extracts and analyzes the video surveillance video in the RPU, and extracts the video images of the video surveillance video at different time nodes, compares the video images at adjacent time nodes, and the RPU video integrity diagnosis module according to The comparison results show the completeness of the video surveillance video.
  • the time interval between each time node is consistent.
  • the time interval can be set to 0.5s, and two video images separated by 0.5s are compared. Group video images can yield abnormally complete results.
  • the network diagnosis module, data flow monitoring module, equipment operation monitoring module, signal quality monitoring module, video image diagnosis module, diagnosis results of RPU video integrity diagnosis module, and hardware data of resource management module are displayed through the operation and maintenance client , each operation and maintenance client corresponds to each substation.
  • each operation and maintenance client corresponds to each substation.
  • this application also sets up an intelligent platform.
  • the intelligent platform set up in this application mainly adopts the following optional implementations
  • the intelligent platform includes an application business module, a data engine module, a diagnostic algorithm library, and an acquisition layer.
  • the application business module communicates with the smart electric box control system and collects the operation and maintenance status of the smart electric box control system for display.
  • the data engine module is used for Retrieve the data of substation operation and maintenance terminals at other substations, and the diagnostic algorithm library communicates with the network diagnosis module, data flow monitoring module, equipment operation monitoring module, signal quality monitoring module, video image diagnosis module, and RPU video integrity diagnosis module.
  • the application business module can include business management, event retrieval, report statistics, and operation and maintenance management
  • the data engine module can include data openness, distributed databases, and big data retrieval engines
  • the diagnostic algorithm library can include data stream diagnostic algorithms and video diagnostic algorithms , equipment information algorithm, network diagnosis algorithm and equipment diagnosis algorithm
  • the acquisition layer can include video data, equipment data, network data and data stream data.
  • the acquisition layer communicates with the network diagnosis module, data flow monitoring module, equipment operation monitoring module, signal quality monitoring module, video image diagnosis module, and resource management module.
  • the dispute algorithm library is used for data flow diagnosis, video diagnosis, and network diagnosis. The display of diagnosis results and device information of device diagnosis and device diagnosis, and the display of video data, device data, network data and data flow data at the acquisition layer.
  • the intelligent electric box control system controls the video surveillance equipment to restart according to the abnormal signal, and the equipment operation monitoring module still detects an abnormality
  • the intelligent electric box control system can be controlled through the intelligent platform to make the video surveillance equipment Closed to facilitate the offline operation and maintenance of video surveillance equipment.
  • the offline video surveillance equipment and equipment operation monitoring module can also be turned on Check the operation and maintenance results.

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Human Computer Interaction (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)
  • Testing And Monitoring For Control Systems (AREA)

Abstract

本申请公开了一种变电站视频及环境监控站端***智能运维终端,具备变电站视频监控***、综合数据网、变电站运维终端、智能电箱控制***、智能平台,变电站视频监控***对变电站进行视频监控;综合数据网进行数据传输;变电站运维终端进行站端网络诊断、站端数据流监测、站端设备运行监测、网管直流电源监测、视频图像异常诊断、RPU录像完整性诊断;智能电箱控制***控制变电站视频监控***的重启;智能平台展示变电站运维终端的处理数据及采集智能电箱控制***的运维情况。

Description

一种变电站视频及环境监控站端***智能运维终端
本申请要求在2022年02月23日提交中国专利局、申请号为202210164275.3的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及变电站运维技术领域,例如涉及一种变电站视频及环境监控站端***智能运维终端。
背景技术
变电站是指电力***中对电压和电流进行变换,接受电能及分配电能的场所,在发电厂内的变电站是升压变电站,变电站的作用是将发电机发出的电能升压后馈送到高压电网中。
变电站通过智能视频监控实时运行状态,变电站采用的智能视频***运维管理存在以下问题,站端设备多,问题定位难,站端设备管理难导致站端设备自身参数数据缺乏统一管理,视频图像质量诊断难度大,运维投入大且缺乏***诊断导致无法支撑后期运维。
发明内容
本申请提供一种变电站视频及环境监控站端***智能运维终端,有效的解决了相关技术中的站端设备多,问题定位难,站端设备管理难导致站端设备自身参数数据缺乏统一管理,视频图像质量诊断难度大,运维投入大且缺乏***诊断导致无法支撑后期运维的问题。
本申请具体提供下述技术方案:
一种变电站视频及环境监控站端***智能运维终端,包括:
变电站视频监控***,设于变电站周侧,所述变电站视频监控***用于对变电站进行视频监控和环境信息采集,获得监测数据;
变电站运维终端,与所述变电站视频监控***通讯连接,所述变电站运维终端用于根据所述变电站视频监控***的所述监测数据进行站端网络诊断、站端数据流监测、站端设备运行监测、网管直流电源监测、视频图像异常诊断和 RPU录像完整性诊断,获得站端设备运行监测结果,以及根据站端设备运行监测结果进行智能电箱控制以控制所述变电站视频监控***进行重启;
综合数据网,与所述变电站视频监控***通讯连接,所述综合数据网用于将接收的所述变电站视频监控***获得的监测数据传输至变电站运维终端;
智能电箱控制***,与所述变电站视频监控***电线连接,所述智能电箱控制***用于控制所述变电站视频监控***的关闭和重启,以进行运维操作;
智能平台,所述智能平台通过所述综合数据网,与所述变电站视频监控***和所述智能电箱控制***均通讯连接,所述智能平台用于对所述变电站运维终端的监测结果以及所述智能电箱控制***的运维情况进行展示。
可选地,所述变电站视频监控***包括RPU、视频监控设备和环境信息采集设备,所述视频监控设备用于对变电站周围环境进行视频监控,并将视频监控录像存储入所述RPU内,所述环境信息采集设备用于采用变电站的周围环境数据;
所述视频监控设备、所述RPU和所述环境信息采集设备均通过有线网络连接有交换机,所述变电站运维终端与所述交换机通讯连接。
可选地,所述变电站运维终端通过有线网络与所述变电站视频监控***通讯连接;
所述变电站运维终端包括:
网络诊断模块,所述网络诊断模块用于监测网络异常并生成网络异常原因报表;
数据流监测模块,所述数据流监测模块用于监测数据通信异常并生成数据异常和原因分析报表;
设备运行监测模块,与所述智能电箱控制***通讯连接,所述设备运行监测模块用于监测站端设备运行情况并生成设备异常原因报表;所述智能电箱控制***根据所述设备运行监测模块数据处理结果控制所述视频监控设备的重启;
信号质量监测模块,所述信号质量监测模块用于对线路信号质量进行监测;
视频图像诊断模块,所述视频图像诊断模块用于监测视频图像质量并生成 视频图像异常原因报表;
RPU录像完整性诊断模块,所述RPU录像完整性诊断模块用于对录像视频进行分析得出完整性诊断结果;
资源管理模块,所述资源管理模块用于存储站端设备的硬件数据;
运维客户端,所述运维客户端与网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、RPU录像完整性诊断模块、资源管理模块以及所述变电站视频监测***通讯连接。
可选地,所述网络诊断模块连接在所述有线网络上;
所述网路诊断模块内存储有有线网络运行数据阈值,所述网络诊断模块采集所述有线网络的实时运行数据,将所述实时运行数据与所述有线网络运行数据阈值进行比对,并将比对结果进行记录分析得出网络异常点,以生成所述网络异常原因报表。
可选地,所述数据流监测模块用于提取数据流运行数据;
所述数据流监测模块内存储有数据流数据阈值,所述数据流监测模块用于将所述数据流运行数据与所述数据流数据阈值进行比对,并将比对结果进行分析得出通信数据异常设备,以生成所述数据异常和原因分析报表。
可选地,所述设备运行监测模块与所述资源管理模块通讯连接;
所述设备运行监测模块用于采集所述RPU、视频监控设备和环境信息采集设备的实时运行数据,以及提取所述资源管理模块内的硬件数据,将所述实时运行数据与所述硬件数据进行比对,并根据比对结果分析得出异常设备以生成所述设备异常原因报表;
所述设备运行监测模块还用于在监测出异常设备向所述智能电箱控制***发送异常信号,所述智能电箱控制***根据所述异常信号控制所述视频监控设备进行重启。
可选地,所述视频图像诊断模块用于采集所述视频监控设备的实时监控图像,并检测所述实时监控图像的图像参数;所述图像参数包括亮度、清晰度、干扰情况、偏色情况、画面冻结情况、信号丢失情况、画面抖动情况和遮挡情况;
所述视频图像诊断模块内存储有图像数据阈值,所述视频图像诊断模块用于将检测的图像参数与图像数据阈值进行比对,根据比对结果分析得出视频图像质量异常原因,并生成视频图像异常原因报表。
可选地,所述RPU录像完整性诊断模块用于提取所述RPU内的视频监控录像并分析,提取所述视频监控录像在不同时间节点上的视频图像,将相邻的所述时间节点上的视频图像进行比对,并根据比对结果得出视频监控录像的完整度。
可选地,所述智能平台包括:
应用业务模块,所述应用业务模块与所述智能电箱控制***通讯连接,用于采集所述智能电箱控制***的运维情况并进行展示;
数据引擎模块,所述数据引擎模块用于检索其他变电站端的所述变电站运维终端的监测结果;
诊断算法库,所述诊断算法库与所述网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块和RPU录像完整性诊断模块通讯连接;所述诊断算法库包括数据流诊断算法、视频诊断算法、设备信息算法、网络诊断算法和设备诊断算法。
可选地,所述智能平台还包括采集层,所述采集层与所述网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块以及所述资源管理模块通讯连接;所述采集层包括视频数据、设备数据、网络数据和数据流数据。
本申请通过在变电站站端设置变电站运维终端,实现对变电站视频监控***的实时监控和智能运维,有效地提高了变电站视频监控***的在线率、可用率及稳定性,为变电站大规模的智能视频建设及应用提供保障,同时能够降低维护人员的技能要求,提高变电视频维护效率,以减少运维投入。
附图说明
图1为本申请实施例提供的一种变电站视频及环境监控站端***智能运维终端的结构框图;
图2为本申请实施例中的变电站运维终端的结构框图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。
如图1所示,本申请提供了一种变电站视频及环境监控站端***智能运维终端,通过在变电站站端设置变电站运维终端,实现对变电站视频监控***的实时监控和智能运维,提高变电站视频监控***的在线率、可用率及稳定性,为变电站大规模的智能视频建设及应用提供保障,降低维护人员的技能要求,提高变电视频维护效率,减少运维投入。
本申请包括变电站视频监控***、综合数据网、变电站运维终端、智能电箱控制***和智能平台。
其中,变电站视频监控***设于变电站周侧,变电站视频监控***用于对变电站进行视频监控和环境信息采集;
综合数据网与变电站视频监控***通讯连接(实现数据的传输和接入),综合数据网用于将接收的变电站视频监控***获得的监测数据传输传输至变电站运维终端;变电站运维终端,与变电站视频监控***通讯连接。
具体地,变电站运维终端用于根据变电站视频监控***的监测数据进行站端网络诊断、站端数据流监测、站端设备运行监测、网管直流电源监测、视频图像异常诊断和RPU录像完整性诊断,并根据站端设备运行监测结果进行智能电箱控制以控制变电站视频监控***进行重启;
智能电箱控制***,与变电站视频监控***电线连接,智能电箱控制***用于控制变电站视频监控***的关闭和重启,以进行运维操作;
智能平台,通过综合数据网与变电站视频监控***通讯连接以及与智能电箱控制***通讯连接,智能平台用于对所述变电站运维终端的监测结果以及所述智能电箱控制***的运维情况进行展示。
本申请中变电站视频监控***对变电站进行实时监控,变电站视频监控***主要采取以下可选实施例,变电站视频监控***包括RPU、视频监控设备和环境信息采集设备,视频监控设备用于对变电站周围环境进行视频监控,并将视 频监控录像存储入RPU内,环境信息采集设备用于采用变电站周围环境数据;
其中,视频监控设备、RPU、环境信息采集设备均通过有线网络连接有交换机,变电站运维终端与交换机通讯连接。
本实施例中,视频监控设备、RPU和环境信息采集设备均通过有线网络和交换机将采集的数据和自身运行数据传输至智能平台和变电站运维终端,以在智能平台进行显示以及在变电站运维终端进行数据处理分析。
为了采集变电站视频监控***的运行数据和监测数据,变电站运维终端通过有线网络与变电站视频监控***通讯连接,本申请中的变电站运维终端主要实现以下目的:
实现站端网络故障定位、站端设备故障定位、指令数据问题定位、视频图像质量诊断、RPU的录像完整性诊断、站端设备运行监测、站端设备在线、断线监测、站端设备管理、站端设备型号、参数和配置等统一管理。
综上述目的,本申请的变电站运维终端主要采取以下可选实施例,如图2所示,变电站运维终端包括网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、RPU录像完整性诊断模块、资源管理模块、以及运维客户端。
其中,网络诊断模块用于监测网络异常并生成网络异常原因报表,数据流监测模块用于监测数据通信异常并生成数据异常和原因分析报表,设备运行监测模块用于监测站端设备运行情况并生成设备异常原因报表,设备运行监测模块与智能电箱控制***通讯连接,智能电箱控制***根据设备运行监测模块数据处理结果控制视频监控设备的重启,信号质量监测模块对线路信号质量进行监测,视频图像诊断模块用于监测视频图像质量并生成视频图像异常原因报表,RPU录像完整性诊断模块用于对录像视频进行分析得出完整性诊断结果,资源管理模块用于存储站端设备的硬件数据。
在实际应用过程中,为了解决RPU厂家客户端各不相同、维护难的问题,本申请中设置了统一的运维客户端,运维客户端与网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、RPU录像完整性诊断模块、资源管理模块、以及变电站视频监测***通讯连接,运维人员只 需维护运维客户端,降低其维护难度,进而解决原客户端卡死、异常退出等问题,减少了因客户端较多造成的维护难度较大的问题。
为了实现网络诊断(站端网络故障定位),使得网络诊断模块连接在有线网络上,网路诊断模块内存储有有线网络运行数据阈值,网络诊断模块采集有线网络的实时运行数据,并将其与有线网络运行数据阈值进行比对,网络诊断模块将比对结果记录分析得出网络异常点以及生成网络异常原因报表。
上述实施例中,当实时运行数据与有线网络运行数据阈值比对结果不一致时,将该有线网络记录为网络异常点,本实施例中提到的网络异常原因报表主要记录每一有线网络的实时运行情况(正常或者异常)以及时展现出出现异常情况的有线网络的编号或者位置,不同有线网络对应的有线网络运行数据阈值可能不同,具体根据实际情况而定。
为了实现数据通信诊断,数据流监测模块可连接在数据流上对数据流进行实时监测,数据流监测模块提取数据流运行数据,数据流监测模块内存储有数据流数据阈值,数据流监测模块将数据流运行数据与数据流数据阈值进行比对,并将比对结果进行分析得出通信数据异常设备以及生成数据异常和原因分析报表。
上述实施例中,当某数据流的数据运行数据与数据流数据阈值比对结果不一致情况下将该数据流记录为数据通信异常,本实施例提到的数据异常和原因分析报表内记录每一数据流的实时运行情况(正常或者异常)以供运维人员及时观察到异常情况的数据流的编号或者位置,本实施例中,不同数据流对应的数据流数据阈值可能不同,具体根据实际情况而定。
为了实现站端设备运行诊断(站端设备故障定位),设备运行监测模块与资源管理模块通讯连接,设备运行监测模块采集RPU、视频监控设备、环境信息采集设备的实时运行数据,并且提取资源管理模块内的硬件数据、将实时运行数据与硬件数据进行比对,设备运行监测模块根据比对结果分析得出异常设备以及生成设备异常原因报表。
上述实施例中,将RPU、视频监控设备、或者环境信息采集设备的实时运行数据与硬件数据进行比对,将比对结果不一致的情况记录为RPU、视频监控设备、 或者环境信息采集设备发生故障,本实施例中的设备异常原因报表内记录有RPU、视频监控设备和环境信息采集设备的运行情况(正常或者异常),以供运维人员及时观察到异常情况的设备;可以理解的是,本实施例中RPU、视频监控设备、或者环境信息采集设备对应的硬件数据不同,具体根据实际情况而定。
在RPU、视频监控设备、或者环境信息采集设备出现异常的情况下,设备运行监测模块在监测出异常设备时根据RPU、视频监控设备或者环境信息采集设备向对应的智能电箱控制***发送异常信号,智能电箱控制***根据异常信号控制视频监控设备进行重启,解决RPU、视频监控设备以及环境信息采集设备程序假死问题,减少了实际应用过程中运维次数。
为了实现远程信号质量检测,本实施例设计了信号质量监测模块,主要进行光缆信号质量监测、电缆信号监测和设备画像监测,根据设备画像监测可判断设备是否断电,另外,在本实施例中还可设置网管直流电源,当信号质量监测模块监测出异常时,可降至网管直流电源重启,解决设备信号短暂性断接的情况。
为了实现视频图像诊断,本申请实施例提供了视频图像诊断模块,视频图像诊断模块用于采集视频监控设备的实时监控图像,并检测实时监控图像的图像参数,视频图像诊断模块内存储有图像数据阈值,并且将检测的图像参数与图像数据阈值进行比对,视频图像诊断模块根据比对结果分析得出视频图像质量异常原因,并生成视频图像异常原因报表。
上述实施例中,当图像参数与图像数据阈值比对不一致时,将该视频监控设备记录为异常,本实施例中的视频图像异常原因报表内记录有每个视频监控设备的运行情况(异常或者正常),以便于运维人员观察出视频监控设备的异常情况。
另外,本实施例中,图像参数包括亮度、清晰度、干扰情况、偏色情况、画面冻结情况、信号丢失情况、画面抖动情况和遮挡情况,在视频图像诊断模块诊断过程中对每一图像参数均进行检查,以便于在检查出异常时能及时对故障点进行维修。
为了进行RPU的录像完整性诊断,本申请设置RPU录像完整性诊断模块,RPU 录像完整性诊断模块提取RPU内的视频监控录像并分析,并提取视频监控录像在不同时间节点上的视频图像,将相邻的时间节点上的视频图像进行比对,RPU录像完整性诊断模块根据比对结果得出视频监控录像的完整度。
上述实施例中,每一时间节点之间的时间间隔一致,例如,在实际应用过程中可将时间间隔设置为0.5s,将两个相隔0.5s的视频图像进行比对,差别较大的两组视频图像可得出完整度异常的结果。
本申请中通过运维客户端展示网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、RPU录像完整性诊断模块的诊断结果、以及资源管理模块的硬件数据,每个运维客户端对应每个变电站,另外为了便于对所有变电站的变电站运维终端进行管理和数据提取展示,本申请还设置了智能平台,本申请设置的智能平台主要采取以下可选实施例,智能平台包括应用业务模块、数据引擎模块、诊断算法库和采集层,应用业务模块与智能电箱控制***通讯连接并采集智能电箱控制***的运维情况进行展示,数据引擎模块用于检索其他变电站端的变电站运维终端的数据,诊断算法库与网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、RPU录像完整性诊断模块通讯连接。
其中,应用业务模块可包括业务管理、事件检索、报表统计和运维管理,数据引擎模块可包括数据开放、分布式数据库和大数据检索引擎,诊断算法库可包括数据流诊断算法、视频诊断算法、设备信息算法、网络诊断算法和设备诊断算法,采集层可包括视频数据、设备数据、网络数据和数据流数据。
其中,采集层与网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、以及资源管理模块通讯连接,争端算法库为对数据流诊断、视频诊断、网络诊断和设备诊断的诊断结果和设备信息的展示,采集层则为视频数据、设备数据、网络数据和数据流数据的展示。
本实施例中,在智能电箱控制***根据异常信号控制视频监控设备进行重启之后,设备运行监测模块仍然监测出异常的情况下,可通过智能平台控制智能电箱控制***以使该视频监控设备关闭,以方便线下对视频监控设备进行运维,在线下运维过程中也可通过开启视频监控设备和设备运行监测模块对线下 运维结果进行检测。
以上实施例仅为本申请的示例性实施例,不用于限制本申请,本申请的保护范围由权利要求书限定。本领域技术人员可以在本申请的实质和保护范围内,对本申请做出各种修改或等同替换,这种修改或等同替换也应视为落在本申请的保护范围内。

Claims (10)

  1. 一种变电站视频及环境监控站端***智能运维终端,包括:
    变电站视频监控***,设于变电站周侧,所述变电站视频监控***用于对变电站进行视频监控和环境信息采集,获得监测数据;
    变电站运维终端,与所述变电站视频监控***通讯连接,所述变电站运维终端用于根据所述变电站视频监控***的所述监测数据,进行站端网络诊断、站端数据流监测、站端设备运行监测、网管直流电源监测、视频图像异常诊断和RPU录像完整性诊断,获得站端设备运行监测结果;以及根据站端设备运行监测结果进行智能电箱控制以控制所述变电站视频监控***进行重启;
    综合数据网,与所述变电站视频监控***通讯连接,所述综合数据网用于将接收的所述变电站视频监控***获得的监测数据传输至变电站运维终端;
    智能电箱控制***,与所述变电站视频监控***电线连接,所述智能电箱控制***用于控制所述变电站视频监控***的关闭和重启,以进行运维操作;
    智能平台,所述智能平台通过所述综合数据网,与所述变电站视频监控***和所述智能电箱控制***均通讯连接,所述智能平台用于对所述变电站运维终端的监测结果以及所述智能电箱控制***的运维情况进行展示。
  2. 根据权利要求1所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述变电站视频监控***包括RPU、视频监控设备和环境信息采集设备,所述视频监控设备用于对变电站周围环境进行视频监控,并将视频监控录像存储入所述RPU内,所述环境信息采集设备用于采用变电站的周围环境数据;
    所述视频监控设备、所述RPU和所述环境信息采集设备均通过有线网络连接有交换机,所述变电站运维终端与所述交换机通讯连接。
  3. 根据权利要求2所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述变电站运维终端通过有线网络与所述变电站视频监控***通讯连接;
    所述变电站运维终端包括:
    网络诊断模块,所述网络诊断模块用于监测网络异常并生成网络异常原因报表;
    数据流监测模块,所述数据流监测模块用于监测数据通信异常并生成数据异常和原因分析报表;
    设备运行监测模块,与所述智能电箱控制***通讯连接,所述设备运行监测模块用于监测站端设备运行情况并生成设备异常原因报表;所述智能电箱控制***根据所述设备运行监测模块数据处理结果控制所述视频监控设备的重启;
    信号质量监测模块,所述信号质量监测模块用于对线路信号质量进行监测;
    视频图像诊断模块,所述视频图像诊断模块用于监测视频图像质量并生成视频图像异常原因报表;
    RPU录像完整性诊断模块,所述RPU录像完整性诊断模块用于对录像视频进行分析得出完整性诊断结果;
    资源管理模块,所述资源管理模块用于存储站端设备的硬件数据;
    运维客户端,所述运维客户端与网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块、RPU录像完整性诊断模块、资源管理模块以及所述变电站视频监测***通讯连接。
  4. 根据权利要求3所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述网络诊断模块连接在所述有线网络上;
    所述网路诊断模块内存储有有线网络运行数据阈值,所述网络诊断模块采集所述有线网络的实时运行数据,将所述实时运行数据与所述有线网络运行数据阈值进行比对,并将比对结果进行记录分析得出网络异常点,以生成所述网络异常原因报表。
  5. 根据权利要求4所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述数据流监测模块用于提取数据流运行数据;
    所述数据流监测模块内存储有数据流数据阈值,所述数据流监测模块用于将所述数据流运行数据与所述数据流数据阈值进行比对,并将比对结果进行分析得出通信数据异常设备,以生成所述数据异常和原因分析报表。
  6. 根据权利要求5所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述设备运行监测模块与所述资源管理模块通讯连接;
    所述设备运行监测模块用于采集所述RPU、视频监控设备和环境信息采集设备的实时运行数据,以及提取所述资源管理模块内的硬件数据,将所述实时运行数据与所述硬件数据进行比对,并根据比对结果分析得出异常设备以生成所述设备异常原因报表;
    所述设备运行监测模块还用于在监测出异常设备向所述智能电箱控制***发送异常信号,所述智能电箱控制***根据所述异常信号控制所述视频监控设备进行重启。
  7. 根据权利要求6所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述视频图像诊断模块用于采集所述视频监控设备的实时监控图像,并检测所述实时监控图像的图像参数;所述图像参数包括亮度、清晰度、干扰情况、偏色情况、画面冻结情况、信号丢失情况、画面抖动情况和遮挡情况;
    所述视频图像诊断模块内存储有图像数据阈值,所述视频图像诊断模块用于将检测的图像参数与图像数据阈值进行比对,根据比对结果分析得出视频图像质量异常原因,并生成视频图像异常原因报表。
  8. 根据权利要求7所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述RPU录像完整性诊断模块用于提取所述RPU内的视频监控录像并分析,提取所述视频监控录像在不同时间节点上的视频图像,将相邻的所述时间节点上的视频图像进行比对,并根据比对结果得出视频监控录像的完整度。
  9. 根据权利要求8所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述智能平台包括:
    应用业务模块,所述应用业务模块与所述智能电箱控制***通讯连接,用于采集所述智能电箱控制***的运维情况并进行展示;
    数据引擎模块,所述数据引擎模块用于检索其他变电站端的所述变电站运维终端的监测结果;
    诊断算法库,所述诊断算法库与所述网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块和RPU录像完整性诊断模块通讯连接;所述诊断算法库包括数据流诊断算法、视频诊断算法、设备信息算法、网络诊断算法和设备诊断算法。
  10. 根据权利要求9所述的一种变电站视频及环境监控站端***智能运维终端,其中,所述智能平台还包括采集层,所述采集层与所述网络诊断模块、数据流监测模块、设备运行监测模块、信号质量监测模块、视频图像诊断模块以及所述资源管理模块通讯连接;所述采集层包括视频数据、设备数据、网络数据和数据流数据。
PCT/CN2023/077503 2022-02-23 2023-02-21 一种变电站视频及环境监控站端***智能运维终端 WO2023160558A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202210164275.3A CN114243932B (zh) 2022-02-23 2022-02-23 一种变电站视频及环境监控站端***智能运维终端
CN202210164275.3 2022-02-23

Publications (1)

Publication Number Publication Date
WO2023160558A1 true WO2023160558A1 (zh) 2023-08-31

Family

ID=80747752

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2023/077503 WO2023160558A1 (zh) 2022-02-23 2023-02-21 一种变电站视频及环境监控站端***智能运维终端

Country Status (2)

Country Link
CN (1) CN114243932B (zh)
WO (1) WO2023160558A1 (zh)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117054676A (zh) * 2023-10-13 2023-11-14 山西智合清浩环保技术服务有限公司 废水在线监测设备的运维智能控制***
CN117475590A (zh) * 2023-09-28 2024-01-30 杨联富 一种输变电工程的安防可视化报警***
CN117873981A (zh) * 2024-03-12 2024-04-12 深圳益实科技有限公司 一种易于运维通用的标准整机设计方法

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114243932B (zh) * 2022-02-23 2022-05-24 广东电网有限责任公司东莞供电局 一种变电站视频及环境监控站端***智能运维终端

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101976889A (zh) * 2010-10-29 2011-02-16 广东电网公司电力科学研究院 变电站视频及环境监控站端***
CN105516644A (zh) * 2014-09-23 2016-04-20 国家电网公司 一种变电站远程视频监控***
JP2017034750A (ja) * 2015-07-29 2017-02-09 東京電力ホールディングス株式会社 監視制御システム
JP2017034746A (ja) * 2015-07-29 2017-02-09 東京電力ホールディングス株式会社 監視制御システム
CN109038832A (zh) * 2018-09-19 2018-12-18 上海许继电气有限公司 基于微服务架构的变电站辅助监控***
CN113411573A (zh) * 2021-07-30 2021-09-17 广东电网有限责任公司东莞供电局 电网监控***检测方法、装置、计算机设备及介质
CN114243932A (zh) * 2022-02-23 2022-03-25 广东电网有限责任公司东莞供电局 一种变电站视频及环境监控站端***智能运维终端

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107241224B (zh) * 2017-06-09 2020-11-03 珠海市鸿瑞信息技术股份有限公司 一种变电站的网络风险监测方法及***
CN107563523A (zh) * 2017-08-02 2018-01-09 深圳微品时代网络技术有限公司 基于非结构化流视频管理***的运维管理平台及方法

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101976889A (zh) * 2010-10-29 2011-02-16 广东电网公司电力科学研究院 变电站视频及环境监控站端***
CN105516644A (zh) * 2014-09-23 2016-04-20 国家电网公司 一种变电站远程视频监控***
JP2017034750A (ja) * 2015-07-29 2017-02-09 東京電力ホールディングス株式会社 監視制御システム
JP2017034746A (ja) * 2015-07-29 2017-02-09 東京電力ホールディングス株式会社 監視制御システム
CN109038832A (zh) * 2018-09-19 2018-12-18 上海许继电气有限公司 基于微服务架构的变电站辅助监控***
CN113411573A (zh) * 2021-07-30 2021-09-17 广东电网有限责任公司东莞供电局 电网监控***检测方法、装置、计算机设备及介质
CN114243932A (zh) * 2022-02-23 2022-03-25 广东电网有限责任公司东莞供电局 一种变电站视频及环境监控站端***智能运维终端

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117475590A (zh) * 2023-09-28 2024-01-30 杨联富 一种输变电工程的安防可视化报警***
CN117054676A (zh) * 2023-10-13 2023-11-14 山西智合清浩环保技术服务有限公司 废水在线监测设备的运维智能控制***
CN117054676B (zh) * 2023-10-13 2023-12-19 山西智合清浩环保技术服务有限公司 废水在线监测设备的运维智能控制***
CN117873981A (zh) * 2024-03-12 2024-04-12 深圳益实科技有限公司 一种易于运维通用的标准整机设计方法
CN117873981B (zh) * 2024-03-12 2024-05-14 深圳益实科技有限公司 一种易于运维通用的标准整机设计方法

Also Published As

Publication number Publication date
CN114243932B (zh) 2022-05-24
CN114243932A (zh) 2022-03-25

Similar Documents

Publication Publication Date Title
WO2023160558A1 (zh) 一种变电站视频及环境监控站端***智能运维终端
CN107807593B (zh) 配电房主控装置、主控***和检测控制方法
CN102868110A (zh) 户外环网柜视频监控方法、装置及***
CN111526330A (zh) 一种基于机器视觉的变电站设备状态智能识别***
KR20070121238A (ko) 변전소내 부분방전 측정이 가능한 iec61850 기반의디지털 변전 시스템
CN114241730A (zh) 一种基于数据采集的变电设备监测预警***
CN104375485A (zh) 一种用于变配电安全生产的辅助监控***及其监控方法
CN211744138U (zh) 一种牵引变电所多***联动的智能辅助监控***
CN113270943A (zh) 一种智能配电柜(箱)安全监测预警方法、***及装置
CN106294602A (zh) 一种多媒体信息可视化***
CN109655715A (zh) 一种基于电网故障智能识别设备的电网故障识别方法
CN110689692A (zh) 一种变电站智能巡检***
CN214314723U (zh) 一种基于5g云控平台的智能配电站监控***
WO2022160414A1 (zh) 一种电厂监控***
CN115618303B (zh) 基于信息融合技术的调度自动化监测及故障定位***
CN117291579A (zh) 一种电力设备维护用信息化管理***
CN109541495A (zh) 基于ups监控卡的ups状态综合监测方法
CN112235126A (zh) 一种基于远程监测和控制的智能机箱管理***
CN111898872A (zh) 一种基于微服务架构的电网故障诊断方法及存储介质
CN115912621A (zh) 一种轨道交通变电所巡检方法及应用
CN114495007A (zh) 变电站故障点监控方法及装置
CN108270293A (zh) 海上升压站配电室巡控***及升压站配电室
CN115167579A (zh) 一种变电箱监控***及方法
CN111313548B (zh) 继电保护远程可控多视点辅助作业***
CN112670885A (zh) 一种物联网智能箱式变电站***

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: 23759183

Country of ref document: EP

Kind code of ref document: A1