Investigating the Emitted Signals of Partial Discharges for Diagnostic Applications in High Voltage Equipment

Máté Szirtes, R. Cselkó, B. Németh
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Abstract

The goal of this paper is to present the time and frequency domain behavior of the emitted electromagnetic signals of the three main types of partial discharges (corona, void and surface discharges) in the VHF and partially the UHF range, and to find the characteristic properties of these signals. A noise and interference free environment was used to measure the undistorted emitted signals of the discharge sources. The individual discharge pulses were investigated in both time and frequency domain, followed by the phase resolved investigation of their time domain behavior. A part of these results showed similarities, making it easier to use these properties for creating a universal digital filtering module. The other part of the results showed significant characteristic differences that were in-line with the traditional measurement results of the literature and can be used for signal separation. The results of this paper can be utilized in the development of the signal processing module of an on-site, real-time partial discharge location approximation system.
高压设备局部放电诊断信号的研究
本文的目标是给出三种主要类型的部分放电(电晕、空穴和表面放电)在甚高频和部分超高频范围内发射的电磁信号的时频域行为,并找出这些信号的特征性质。在无噪声、无干扰的环境中测量了放电源未失真的发射信号。在时域和频域对单个放电脉冲进行了研究,然后对其时域行为进行了相位分解研究。这些结果的一部分显示出相似性,这使得使用这些属性创建通用数字滤波模块变得更加容易。另一部分结果具有显著的特征差异,与文献的传统测量结果一致,可用于信号分离。本文的研究结果可用于现场实时局部放电定位近似系统信号处理模块的开发。
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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