Analysis of Waveform of Partial Discharge in Air Insulation Measured by RC Detector

Michael Stevano Sinurat, U. Khayam
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引用次数: 2

Abstract

This study discusses the measurement of Partial Discharge (PD) in air insulation. Partial Discharge Measurement is very important to know the condition of electrical equipment. The cause of partial discharge is not only old equipment, but also from set-up errors and insulation problems. In this research partial discharge measurement was performed by using electrical methods. Electrical method use RC Detector. The modeling of partial discharge was done by using needle-plane electrode distant 1 cm in air insulation. Partial discharge measurement parameters include the measurement of Background Noise (BGN), Partial Discharge Inception Voltage (PDIV) and PD Waveform. The Partial Discharge measurement result show that Vpp of BGN ON is higher than Vpp of BGN OFF. The negative PDIV signal first appeared for the RC Detector at a voltage 3.55 KV and Positive PDIV at 4.01 KV. Negative and positive PD waveform for RC Detector at 5 KV, 5.5 KV, 6 KV, 6.5 KV and 7 KV respectively, it has been found that the fall time is greater than the rise time, and peak to peak voltage (Vpp) will be greater when the applied voltage is greater.
RC检测仪测量空气绝缘局部放电波形分析
本文讨论了空气绝缘中局部放电的测量方法。局部放电测量是了解电气设备运行状况的重要手段。局部放电的原因不仅是设备陈旧,还有设置错误和绝缘问题。本研究采用电学方法进行局部放电测量。电法采用RC检测器。在空气绝缘中采用距离为1cm的针面电极进行局部放电模拟。局部放电测量参数包括背景噪声(BGN)、局部放电起始电压(PDIV)和局部放电波形的测量。局部放电测量结果表明,BGN ON的Vpp高于BGN OFF的Vpp。RC检测器在电压为3.55 KV时首先出现负PDIV信号,在电压为4.01 KV时出现正PDIV信号。分别在5 KV、5.5 KV、6 KV、6.5 KV和7 KV时RC检测器的负、正PD波形,发现其下降时间大于上升时间,且施加电压越大,峰值电压(Vpp)越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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