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Overvoltage measurement method based on non-contact wireless measurement

机译:基于非联系无线测量的过电压测量方法

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Effective monitoring of transient overvoltage is the key to field testing, fault analysis and optimal design of power systems. Nowadays, the voltage monitoring and overvoltage monitoring of the power grid mostly use the traditional contact voltage divider system. This measurement method needs to be connected to a device to obtain the signal, which has certain safety hazards and has a narrow measurement frequency band, weak anti-electromagnetic interference ability, and poor installation and maintenance. Therefore, research on the grid overvoltage non-contact sensor with good broadband response characteristics can effectively avoid the cumbersome coaxial cable wiring at the test site, and eliminate the risk of personal electric shock caused by the wired test of high-voltage equipment. It is safe, reliable, and can provide data support for further research. This paper studies a non-contact overvoltage measurement system based on an integrated electro-optic field sensor and applies it to on-site measurement. The on-site testing results of the measurement system are compared with the waveform recorded by the fault recorder to verify the effectiveness of the method.
机译:有效监控瞬态过电压是现场测试,故障分析和电力系统最优设计的关键。如今,电网的电压监控和过电压监测主要使用传统的接触式电压分频器系统。该测量方法需要连接到设备,以获得具有一定的安全危险的信号,并且具有窄的测量频带,弱抗电磁干扰能力,安装和维护差。因此,对具有良好宽带响应特性的电网过电压传感器的研究可以有效地避免在测试场所的麻烦的同轴电缆布线,并消除了由高压设备的有线测试引起的个人电击的风险。它是安全,可靠的,可以提供进一步研究的数据支持。本文研究了基于集成电光场传感器的非接触过电压测量系统,并将其应用于现场测量。将测量系统的现场测试结果与故障记录器记录的波形进行比较,以验证该方法的有效性。

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