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A Hardware and Software Complex for Remote Monitoring of a High-Voltage Line Arrester under Operating Voltage

机译:用于在工作电压下远程监视高压线路避雷器的硬件和软件组合

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A hardware and software complex for remote monitoring of high-voltage line arresters (HVLAs) under operating voltage has been developed. The complex is a two-level distributed system with autonomous monitoring points. The main functional units of the complex are a block of current sensors, a registration and communication device, a self-contained power supply, a receiving base station, and an automated workplace (AWP). Apart from the total leakage current and number of operations, the complex registers the amplitude and duration of the HVLA lightning pulse. These parameters may be used for the assessment of the HVLA residual resources and making a decision as to the feasibility of its further operation. An optical sensor on the basis of a bismuth silicate crystal is used as a sensor of an impulse current; its operating principle is based on the Faraday linear magnetooptic effect. The advantage of the bismuth silicate crystal is the feasibility of the noncontact measurement of the pulse magnetic field strength, high temperature stability and high noise immunity. The standard of the wireless LoRa communication was selected for the transmission of information; its advantage is a high noise immunity, larger range of radio signal transmission (up to 10 km), low energy consumption, and high penetrating capacity penetrability. A solar battery with a standby power supply—a rechargeable battery—was selected as the self-contained power supply. Program modules for receiving and transmission of information and AWP were developed. The hardware and software system allow preventing the emergency situations on the high-voltage line, planning more service and repair operations more effectively and efficiently, and starting the operation of HVLAs based on technical conditions.
机译:已经开发了用于在工作电压下远程监视高压线路避雷器(HVLA)的硬件和软件组合。该综合系统是具有自治监视点的两级分布式系统。该综合大楼的主要功能单元是一个电流传感器块,一个注册和通信设备,一个独立的电源,一个接收基站以及一个自动化工作场所(AWP)。除了总泄漏电流和操作次数外,该组合系统还记录了HVLA雷电脉冲的幅度和持续时间。这些参数可用于评估HVLA剩余资源,并决定进一步操作的可行性。基于硅酸铋晶体的光学传感器被用作脉冲电流的传感器。它的工作原理是基于法拉第线性磁光效应。硅酸铋晶体的优点是可以非接触式测量脉冲磁场强度,高温稳定性和高抗噪性。选择了无线LoRa通信标准来传输信息。它的优点是具有较高的抗噪性,较大的无线电信号传输范围(最长10 ​​km),较低的能耗和较高的穿透能力。选择了具有备用电源的太阳能电池(可充电电池)作为独立电源。开发了用于接收和传输信息以及AWP的程序模块。硬件和软件系统可以防止高压线路上的紧急情况,更有效地规划更多的服务和维修操作,并根据技术条件启动HVLA的运行。

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