CN210952945U - Environmental state monitoring system for cable trench of transformer substation - Google Patents

Environmental state monitoring system for cable trench of transformer substation Download PDF

Info

Publication number
CN210952945U
CN210952945U CN201922314079.6U CN201922314079U CN210952945U CN 210952945 U CN210952945 U CN 210952945U CN 201922314079 U CN201922314079 U CN 201922314079U CN 210952945 U CN210952945 U CN 210952945U
Authority
CN
China
Prior art keywords
cable trench
monitoring system
concentrator
module
data
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.)
Expired - Fee Related
Application number
CN201922314079.6U
Other languages
Chinese (zh)
Inventor
谢烨
章婷
钱艳
甘利红
刘凡
曾征
刘胤辰
潘占军
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
State Grid Corp of China SGCC
Xianning Power Supply Co of State Grid Hubei Electric Power Co Ltd
Original Assignee
State Grid Corp of China SGCC
Xianning Power Supply Co of State Grid Hubei Electric Power Co Ltd
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 State Grid Corp of China SGCC, Xianning Power Supply Co of State Grid Hubei Electric Power Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201922314079.6U priority Critical patent/CN210952945U/en
Application granted granted Critical
Publication of CN210952945U publication Critical patent/CN210952945U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Abstract

本实用新型公开了基于物联网技术的变电站电缆沟环境状态监测系统,包括电缆沟智能数据采集系统、通信网络系统、报警系统、集中器以及后台监控系统,所述电缆沟职能数据采集系统检测的电缆沟内的环境数据通过通信网络系统传送至集中器;集中器控制报警系统发出告警信号;所述集中器与后台监控系统通信,实现数据的远传以及远程控制指令的接收,实时监测电缆沟内的温度、湿度、水位、有害气体浓度等运行环境数据,一旦监测到有异常现象,将会产生报警信号,并主动实时把告警信息推送到各个监控维护人员,确保一旦有异常提前预警,把事故消灭于未燃之势。

Figure 201922314079

The utility model discloses a substation cable trench environmental state monitoring system based on the Internet of Things technology, comprising a cable trench intelligent data acquisition system, a communication network system, an alarm system, a concentrator and a background monitoring system. The environmental data in the cable trench is transmitted to the concentrator through the communication network system; the concentrator controls the alarm system to issue an alarm signal; the concentrator communicates with the background monitoring system to realize the remote transmission of data and the reception of remote control instructions, and monitor the cable trench in real time. The operating environment data such as temperature, humidity, water level, harmful gas concentration, etc., will generate an alarm signal once an abnormal phenomenon is detected, and actively push the alarm information to various monitoring and maintenance personnel in real time to ensure that in the event of an abnormal early warning, the The accident was wiped out in an unburned state.

Figure 201922314079

Description

变电站电缆沟环境状态监测系统Substation cable trench environmental condition monitoring system

技术领域technical field

本实用新型涉及在电气领域,尤其涉及变电站电缆沟环境状态监测系统。The utility model relates to the electrical field, in particular to a substation cable trench environment state monitoring system.

背景技术Background technique

电缆沟作为承载电缆敷设的专门通道,其环境状态与电网稳定运行息息相关。目前大多数变电站电缆沟盖板是混凝土盖板,电缆沟内电缆及环境状态的监控通过值班员日常巡视实现,监控手段单一,且无法直接进行观察。The cable trench is a special channel for carrying cables, and its environmental status is closely related to the stable operation of the power grid. At present, most substation cable trench cover plates are concrete cover plates. The monitoring of cables and environmental conditions in the cable trench is realized by the daily patrol of the on-duty personnel. The monitoring method is single and cannot be directly observed.

如2016年6月18日,西安市南郊变电站发生爆炸,导致变电站多台变压器及设备烧毁,周边部分区域停电、停水。主要原因是电缆沟井道内甲烷浓度超标加之温度过高,引燃缆沟内可燃性气体引起爆炸。2015年3月17日,南方电网某变电站电缆沟动力电缆起火燃烧,造成电缆沟内相邻多条二次电缆受损,一条光缆被烧断,部分通信中断。主要原因是电缆施工或质量问题造成断股,断股处接触电阻增大、发热,长期过热引起起火燃烧。上述异常很难用肉眼看出电缆沟存在的异常及隐患,往往在发现问题时已为时太晚。因此亟需更有效的方式来完善电缆沟环境状态监测质量,提升监测水平。For example, on June 18, 2016, an explosion occurred at the substation in the southern suburbs of Xi'an City, causing multiple transformers and equipment in the substation to burn down, and power outages and water outages in some surrounding areas. The main reason is that the methane concentration in the cable trench shaft exceeds the standard and the temperature is too high, which ignites the combustible gas in the cable trench and causes an explosion. On March 17, 2015, a power cable in a cable trench of a substation of China Southern Power Grid caught fire and burned, causing damage to several adjacent secondary cables in the cable trench, one optical cable was blown, and some communications were interrupted. The main reason is that the cable is broken due to construction or quality problems. It is difficult to see the abnormality and hidden danger of the cable trench with the naked eye, and it is often too late when the problem is discovered. Therefore, there is an urgent need for a more effective way to improve the monitoring quality of cable trench environmental conditions and improve the monitoring level.

实用新型内容Utility model content

本实用新型的目的是为了解决现有技术中存在的缺点,而提出的基于物联网变电站电缆沟环境状态监测系统及其监测方法,实时监测电缆沟内的温度、湿度、水位、有害气体浓度等运行环境数据,一旦监测到有异常现象,将会产生报警信号,并主动实时把告警信息推送到各个监控维护人员,确保一旦有异常提前预警, 把事故消灭于未燃之势。The purpose of the utility model is to solve the shortcomings in the prior art, and the proposed Internet of Things substation cable trench environmental state monitoring system and its monitoring method can monitor the temperature, humidity, water level, harmful gas concentration, etc. in the cable trench in real time. As for the operating environment data, once an abnormal phenomenon is detected, an alarm signal will be generated, and the alarm information will be pushed to each monitoring and maintenance personnel in real time to ensure that an early warning of abnormality occurs and the accident will be eliminated.

为了实现上述目的,本实用新型采用了如下技术方案:In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

基于物联网技术的变电站电缆沟环境状态监测系统,包括电缆沟智能数据采集系统、通信网络系统、报警系统、集中器以及后台监控系统,所述电缆沟职能数据采集系统检测的电缆沟内的环境数据通过通信网络系统传送至集中器;集中器控制报警系统发出告警信号;所述集中器与后台监控系统通信,实现数据的远传以及远程控制指令的接收;A substation cable trench environmental condition monitoring system based on the Internet of Things technology includes a cable trench intelligent data acquisition system, a communication network system, an alarm system, a concentrator and a background monitoring system. The cable trench functional data acquisition system detects the environment in the cable trench The data is transmitted to the concentrator through the communication network system; the concentrator controls the alarm system to issue an alarm signal; the concentrator communicates with the background monitoring system to realize the remote transmission of data and the reception of remote control instructions;

进一步的,所述电缆沟智能数据采集系统:包括智能数据采集所述智能数据采集装置设置于电缆盖板下方,包括环境检测模块、数据处理模块、备份存储模块、电源管理模块和地址唤醒模块;所述环境检测模块与数据处理模块相连,所述数据处理模块接收环境检测模块采集的数据,同时控制环境检测模块的开启;所述数据处理模块分别与备份存储模块和通信网络系统相连,所述备份存储模块与电源管理模块相连,所述电源管理模块和地址唤醒模块相连;所述地址唤醒模块与所述通信网络系统相连,将定位信息通过集中器最终传送给后台监控系统。Further, the cable trench intelligent data acquisition system: including intelligent data acquisition, the intelligent data acquisition device is arranged below the cable cover, and includes an environment detection module, a data processing module, a backup storage module, a power management module and an address wake-up module; The environmental detection module is connected with the data processing module, the data processing module receives the data collected by the environmental detection module, and simultaneously controls the opening of the environmental detection module; the data processing module is respectively connected with the backup storage module and the communication network system, the The backup storage module is connected with the power management module, and the power management module is connected with the address wake-up module; the address wake-up module is connected with the communication network system, and finally transmits the positioning information to the background monitoring system through the concentrator.

进一步的,所述环境检测模块包括水浸传感器、温湿度传感器、烟雾传感器,用于采集电缆沟内液位、温湿度或者烟雾浓度。Further, the environment detection module includes a water immersion sensor, a temperature and humidity sensor, and a smoke sensor, which are used to collect the liquid level, temperature and humidity or smoke concentration in the cable trench.

进一步的,所述数据处理模块对接收的电缆沟内的环境数据与备份存储模块中预存的正常阈值比较分析,检测到的数据是否超过阈值。Further, the data processing module compares and analyzes the received environmental data in the cable trench with the normal threshold pre-stored in the backup storage module, and detects whether the detected data exceeds the threshold.

进一步的,电缆沟智能数据采集系统检测到电缆沟内液位、温湿度或者烟雾浓度超过设定阈值时,通信网络系统向集中器传递信号,集中器控制报警系统发出告警信号,并将报警信号传输至后台监控系统通信,及时告知相关工作人员。Further, when the cable trench intelligent data acquisition system detects that the liquid level, temperature and humidity or smoke concentration in the cable trench exceeds the set threshold, the communication network system transmits a signal to the concentrator, and the concentrator controls the alarm system to issue an alarm signal and sends the alarm signal. It is transmitted to the background monitoring system for communication and timely informs the relevant staff.

进一步的,所述后台监控系统包括计算机用户终端和手机终端。Further, the background monitoring system includes a computer user terminal and a mobile phone terminal.

本实用新型的有益效果为:The beneficial effects of the present utility model are:

本实用新型公开一种基于物联网、移动互联网和新能源供电的电缆沟环境状态监测系统,实时监测电缆沟内的温度、湿度、水位、有害气体浓度等运行环境数据,一旦监测到有异常现象,将会产生报警信号,并主动实时把告警信息推送到各个监控维护人员,确保一旦有异常提前预警,把事故消灭于未燃之势。The utility model discloses a cable trench environmental state monitoring system based on the Internet of Things, mobile Internet and new energy power supply, which can monitor the temperature, humidity, water level, harmful gas concentration and other operating environment data in the cable trench in real time. , will generate an alarm signal, and actively push the alarm information to various monitoring and maintenance personnel in real time to ensure that once there is an abnormal early warning, the accident will be eliminated in the unburned situation.

附图说明Description of drawings

图1为本实用新型提出的基于物联网技术的变电站电缆沟环境状态监测系统的示意图;1 is a schematic diagram of a substation cable trench environmental state monitoring system based on the Internet of Things technology proposed by the utility model;

图2为本发明电缆沟智能数据采集系统的示意图。FIG. 2 is a schematic diagram of the cable trench intelligent data acquisition system of the present invention.

图中附图标记表示为:The reference numbers in the figure are indicated as:

1、电缆沟智能数据采集系统;11、环境检测模块;111、水浸传感器;112、温湿度传感器;113、烟雾传感器;12、数据处理模块;13、备份存储模块;14、电源管理模块;15、地址唤醒模块;2、通信网络系统;3、集中器;4、报警系统;5、后台监控系统。1. Intelligent data acquisition system for cable trench; 11. Environmental detection module; 111. Water immersion sensor; 112. Temperature and humidity sensor; 113. Smoke sensor; 12. Data processing module; 13. Backup storage module; 14. Power management module; 15. Address wake-up module; 2. Communication network system; 3. Concentrator; 4. Alarm system; 5. Background monitoring system.

具体实施方式Detailed ways

下面将结合本实用新型实施例中的附图,对本实用新型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实用新型一部分实施例,而不是全部的实施例。The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the implementations. example.

如图1-2所示,基于物联网技术的变电站电缆沟环境状态监测系统包括:电缆沟智能数据采集系统1、通信网络系统2、报警系统4、集中器3以及后台监控系统5,电缆沟职能数据采集系统检测的电缆沟内的环境数据通过通信网络系统2传送至集中器3;集中器3控制报警系统4发出告警信号;集中器3与后台监控系统5通信,实现数据的远传以及远程控制指令的接收;As shown in Figure 1-2, the substation cable trench environmental condition monitoring system based on the Internet of Things technology includes: cable trench intelligent data acquisition system 1, communication network system 2, alarm system 4, concentrator 3 and background monitoring system 5, cable trench The environmental data in the cable trench detected by the functional data acquisition system is transmitted to the concentrator 3 through the communication network system 2; the concentrator 3 controls the alarm system 4 to issue an alarm signal; the concentrator 3 communicates with the background monitoring system 5 to realize remote transmission of data and Receipt of remote control instructions;

进一步的,所述电缆沟智能数据采集系统1:包括智能数据采集智能数据采集装置设置于电缆盖板下方,包括环境检测模块11、数据处理模块12、备份存储模块13、电源管理模块14和地址唤醒模块15;环境检测模块11与数据处理模块12相连,数据处理模块12接收环境检测模块11采集的数据,同时控制环境检测模块11的开启;数据处理模块12分别与备份存储模块13和通信网络系统2相连,备份存储模块13与电源管理模块14相连,电源管理模块14和地址唤醒模块15相连;地址唤醒模块15与通信网络系统2相连,将定位信息通过集中器3最终传送给后台监控系统5。Further, the cable trench intelligent data acquisition system 1 includes an intelligent data acquisition and an intelligent data acquisition device arranged under the cable cover, including an environmental detection module 11, a data processing module 12, a backup storage module 13, a power management module 14 and an address The wake-up module 15; the environment detection module 11 is connected with the data processing module 12, the data processing module 12 receives the data collected by the environment detection module 11, and controls the opening of the environment detection module 11 at the same time; the data processing module 12 is respectively connected with the backup storage module 13 and the communication network The system 2 is connected, the backup storage module 13 is connected with the power management module 14, and the power management module 14 is connected with the address wake-up module 15; the address wake-up module 15 is connected with the communication network system 2, and finally transmits the positioning information to the background monitoring system through the concentrator 3 5.

进一步的,环境检测模块11包括水浸传感器111、温湿度传感器112、烟雾传感器113,用于采集电缆沟内液位、温湿度或者烟雾浓度。Further, the environment detection module 11 includes a water immersion sensor 111, a temperature and humidity sensor 112, and a smoke sensor 113, which are used to collect the liquid level, temperature and humidity or smoke concentration in the cable trench.

进一步的,数据处理模块12对接收的电缆沟内的环境数据与备份存储模块 13中预存的正常阈值比较分析,检测到的数据是否超过阈值。Further, the data processing module 12 compares and analyzes the received environmental data in the cable trench with the normal threshold value pre-stored in the backup storage module 13, and determines whether the detected data exceeds the threshold value.

进一步的,电缆沟智能数据采集系统1检测到电缆沟内液位、温湿度或者烟雾浓度超过设定阈值时,通信网络系统2向集中器3传递信号,集中器3控制报警系统4发出告警信号,并将报警信号传输至后台监控系统5通信,及时告知相关工作人员。Further, when the cable trench intelligent data acquisition system 1 detects that the liquid level, temperature and humidity or smoke concentration in the cable trench exceeds the set threshold, the communication network system 2 transmits a signal to the concentrator 3, and the concentrator 3 controls the alarm system 4 to issue an alarm signal. , and transmit the alarm signal to the background monitoring system 5 for communication, and inform the relevant staff in time.

进一步的,后台监控系统5包括计算机用户终端和手机终端。Further, the background monitoring system 5 includes a computer user terminal and a mobile phone terminal.

变电站电缆沟环境状态监测方法,包括:The method for monitoring the environmental condition of cable trenches in substations includes:

(1)电缆沟智能数据采集系统1定期检测电缆沟内液位、温湿度或者烟雾浓度是否超过设定阈值;(1) The intelligent data acquisition system 1 of the cable trench regularly detects whether the liquid level, temperature and humidity or smoke concentration in the cable trench exceeds the set threshold;

(2)若超过设定阈值,则通过通信网络系统2向集中器3传递信号,集中器3则控制报警系统4发出告警信号,并将报警信号传输至后台监控系统5通信,及时告知相关工作人员;若未超过设定阈值,则通信网络系统2直接将信号传递给后台监控系统5;(2) If the set threshold is exceeded, the signal is transmitted to the concentrator 3 through the communication network system 2, and the concentrator 3 controls the alarm system 4 to issue an alarm signal, and transmits the alarm signal to the background monitoring system 5 for communication to inform the relevant work in time personnel; if the set threshold is not exceeded, the communication network system 2 directly transmits the signal to the background monitoring system 5;

(3)与步骤(2)同时,若检测电缆沟内液位、温湿度或者烟雾浓度超过设定阈值。则电缆沟智能数据采集系统1内设置的地址唤醒模块15将被唤醒,并通过通信网络系统2将定位信息传送给后台监控系统5。(3) At the same time as step (2), if the liquid level, temperature and humidity or smoke concentration in the detected cable trench exceeds the set threshold. Then the address wake-up module 15 set in the cable trench intelligent data acquisition system 1 will be woken up, and the positioning information will be transmitted to the background monitoring system 5 through the communication network system 2 .

进一步的,电缆沟智能数据采集方法包括:Further, the intelligent data acquisition method of the cable trench includes:

S1、环境检测模块11定期检测电缆沟内液位、温湿度或者烟雾浓度;将数据传送给数据处理模块12;S1. The environment detection module 11 regularly detects the liquid level, temperature and humidity or smoke concentration in the cable trench; transmits the data to the data processing module 12;

S2、数据处理模块12对接收的电缆沟内的环境数据与备份存储模块13中预存的正常阈值比较分析,检测到的数据是否超过阈值;并将信号通过通信网络系统2与后台监控系统5通信;S2, the data processing module 12 compares and analyzes the environmental data in the received cable trench and the normal threshold value pre-stored in the backup storage module 13, and whether the detected data exceeds the threshold value; and communicates the signal with the background monitoring system 5 through the communication network system 2 ;

S3、若步骤2检测到的数据超过阈值,数据处理模块12向备份存储模块13 发送指令,唤醒电源管理模块14,电源管理模块14向地址唤醒模块15供电,并通过通信网络系统2将定位信息传送给后台监控系统5。S3. If the data detected in step 2 exceeds the threshold, the data processing module 12 sends an instruction to the backup storage module 13 to wake up the power management module 14, and the power management module 14 supplies power to the address wake-up module 15, and sends the positioning information through the communication network system 2 Sent to the background monitoring system 5 .

以上所述,仅为本实用新型较佳的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,根据本实用新型的技术方案及其实用新型构思加以等同替换或改变,都应涵盖在本实用新型的保护范围之内。The above description is only a preferred embodiment of the present invention, but the protection scope of the present invention is not limited to this. Equivalent replacement or modification of the new technical solution and its utility model concept shall be included within the protection scope of the present utility model.

Claims (5)

1. Transformer substation's cable pit environmental condition monitoring system, its characterized in that includes: the system comprises a cable trench intelligent data acquisition system (1), a communication network system (2), an alarm system (4), a concentrator (3) and a background monitoring system (5), wherein environmental data in a cable trench detected by the cable trench intelligent data acquisition system is transmitted to the concentrator (3) through the communication network system (2); the concentrator (3) controls the alarm system (4) to send out an alarm signal; the concentrator (3) is communicated with a background monitoring system (5) to realize remote transmission of data and receiving of remote control instructions;
the cable trench intelligent data acquisition system (1): the intelligent data acquisition device is arranged below a cable cover plate and comprises an environment detection module (11), a data processing module (12), a backup storage module (13), a power management module (14) and an address awakening module (15); the environment detection module (11) is connected with the data processing module (12), and the data processing module (12) receives data acquired by the environment detection module (11) and controls the environment detection module (11) to be started; the data processing module (12) is respectively connected with a backup storage module (13) and the communication network system (2), the backup storage module (13) is connected with a power management module (14), and the power management module (14) is connected with an address awakening module (15); the address awakening module (15) is connected with the communication network system (2) and finally transmits the positioning information to the background monitoring system (5) through the concentrator (3).
2. The substation cable trench environment condition monitoring system according to claim 1, wherein the environment detection module (11) comprises a water sensor (111), a temperature and humidity sensor (112) and a smoke sensor (113) for collecting liquid level, temperature and humidity or smoke concentration in the cable trench.
3. The substation trench environment monitoring system according to claim 2, wherein the data processing module (12) compares the received environment data in the trench with a normal threshold value pre-stored in the backup storage module (13) and analyzes whether the detected data exceeds the threshold value.
4. The substation cable trench environmental condition monitoring system of claim 3, wherein: when the intelligent cable trench data acquisition system (1) detects that the liquid level, the temperature and the humidity or the smoke concentration in the cable trench exceed a set threshold value, the communication network system (2) transmits signals to the concentrator (3), the concentrator (3) controls the alarm system (4) to send out alarm signals, the alarm signals are transmitted to the background monitoring system (5) for communication, and relevant workers are informed in time.
5. The substation cable trench environment condition monitoring system according to claim 4, wherein the background monitoring system (5) comprises a computer user terminal and a mobile phone terminal.
CN201922314079.6U 2019-12-20 2019-12-20 Environmental state monitoring system for cable trench of transformer substation Expired - Fee Related CN210952945U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922314079.6U CN210952945U (en) 2019-12-20 2019-12-20 Environmental state monitoring system for cable trench of transformer substation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922314079.6U CN210952945U (en) 2019-12-20 2019-12-20 Environmental state monitoring system for cable trench of transformer substation

Publications (1)

Publication Number Publication Date
CN210952945U true CN210952945U (en) 2020-07-07

Family

ID=71373070

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922314079.6U Expired - Fee Related CN210952945U (en) 2019-12-20 2019-12-20 Environmental state monitoring system for cable trench of transformer substation

Country Status (1)

Country Link
CN (1) CN210952945U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110823295A (en) * 2019-12-20 2020-02-21 国网湖北省电力公司咸宁供电公司 Transformer substation cable trench environment state monitoring system and monitoring method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110823295A (en) * 2019-12-20 2020-02-21 国网湖北省电力公司咸宁供电公司 Transformer substation cable trench environment state monitoring system and monitoring method thereof

Similar Documents

Publication Publication Date Title
CN110823295A (en) Transformer substation cable trench environment state monitoring system and monitoring method thereof
CN104092310B (en) A kind of intelligent power distribution monitoring and energy management system backstage
CN204177912U (en) Based on Distribution Network Failure early warning and the positioning system of GIS application
CN108155719A (en) For the intelligent cloud acquisition system and method for monitoring power distribution
CN212970114U (en) Comprehensive intelligent monitoring system for electrical equipment
CN110095203A (en) A kind of temperature of cable junction remote supervision system and its method based on NB-IoT
CN203743860U (en) Self-generating water supply network monitoring system based on Internet of Things technology
CN110113415A (en) Cloud platform-based power utilization potential safety hazard monitoring service system
CN103106765A (en) Wind-power cabin fire hazard early-stage monitoring system and monitoring method thereof
CN210952945U (en) Environmental state monitoring system for cable trench of transformer substation
CN202929155U (en) Real-time Detection System of Overhead Line Based on Wireless Sensor Network
CN207456618U (en) A kind of ring-main unit temperature of cable junction monitoring device
CN212061411U (en) Early warning monitoring system for power equipment
CN205027867U (en) System for be used for interior arc light fault detection of generator slip ring cell
CN106685076A (en) A low-voltage power failure alarm management system and circuit breaker signal acquisition equipment
CN203660665U (en) Equipment running state real-time monitoring system for electric power switching station
CN111262914A (en) Monitoring equipment and monitoring system for electric power well environment
CN110136401A (en) Setting tool management terminal
CN212158839U (en) Power distribution equipment operation monitoring system based on NB-IOT
CN201429663Y (en) On-line detection device for surge protector
CN207459830U (en) A kind of ring-main unit comprehensive monitoring system
CN209264883U (en) On-line residual current monitoring device
CN211183537U (en) Intelligent monitoring system for running state of power equipment
CN106154947B (en) Family's gas safe support method and control system based on micro-capacitance sensor control strategy
CN219893019U (en) High-low voltage distribution room point inspection control structure

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200707