Analysis of Chopped Partial Discharge sequence

M. Florkowski, B. Florkowska, P. Zydroń
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Abstract

In order to investigate partial discharge mechanism and dynamics, a novel methodology - Chopped Partial Discharges - has been elaborated. Typically, either during laboratory measurements or at on-site field testing, partial discharges are detected by applying a continuous sinusoidal excitation, most regularly 50/60 Hz. A chopped partial discharge sequence consists of a number of packets of a base waveform, separated by a variable time delay. The base waveform may be sinusoidal, square-like, trapezoidal or with the different shapes reflecting various switching phenomena and stresses occurring in insulation systems. In this paper, a chopped partial discharge approach is applied in the investigation of the internal mechanism inside voids, especially with respect to void surface conditions and charge decay phenomena. The void embedded in epoxy resin was investigated. In order to properly understand the mechanism of partial discharge in a void, it is necessary to understand the field created by surface charges which remain after previous discharge events. Such deposited charges create an internal field, which interplays with superimposed external electric field in terms of the discharge inception conditions. As a result partial discharge inception occurs at a different phase angle of the external background field relative to the equivalent inception angle for a continuous sequence.
斩波局部放电序列分析
为了研究局部放电的机理和动力学,提出了一种新的局部放电方法——切碎局部放电。通常,在实验室测量或现场测试中,通过施加连续正弦激励(通常为50/60 Hz)来检测局部放电。斩波部分放电序列由基态波形的若干包组成,由可变时间延迟分隔。基波可以是正弦波、方形波、梯形波,也可以是反映绝缘系统中发生的各种开关现象和应力的不同形状。本文采用截波局部放电的方法研究了孔洞的内部机理,特别是孔洞表面条件和电荷衰减现象。对环氧树脂中嵌入的空隙进行了研究。为了正确地理解真空中局部放电的机理,有必要了解在先前的放电事件之后仍然存在的表面电荷所产生的场。这样沉积的电荷产生一个内部电场,在放电开始条件下与叠加的外部电场相互作用。因此,相对于连续序列的等效起始角,局部放电起始发生在外部背景场的不同相角处。
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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