High impedance fault detection using orthogonal transforms

H. Yeh, Duc H. Tran, R. Yinger
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引用次数: 15

Abstract

High impedance fault (HIF) detection is very important to utility companies in terms of safety (a threat on human lives), specifically, in power systems and power delivery. In this paper, two groups of fault events from official websites of DOE/EPRI National Database Repository of Power System Events are studied, and a heuristic approach specified for these particular groups of events is applied for developing a reliable detecting method. We investigate two HIF detection methods by applying sliding orthogonal transforms such as fast Fourier transforms (FFTs) and Walsh Hadamard Transforms (WHTs) to its harmonic-current content. The criteria to declare the existence of fault currents are based on the threshold and shape of the magnitude and phase responses of orthogonal transformed results. Simulation shows that both sliding FFT and WHT are effective techniques for HIF detection in studied cases.
基于正交变换的高阻抗故障检测
高阻抗故障(HIF)检测对电力公司的安全(对人类生命的威胁)非常重要,特别是在电力系统和电力输送中。本文以DOE/EPRI国家电力系统事件库官方网站的两组故障事件为研究对象,采用一种针对这两组特定事件的启发式方法,开发了一种可靠的故障检测方法。我们研究了两种HIF检测方法,分别采用快速傅里叶变换(FFTs)和Walsh Hadamard变换(WHTs)对其谐波电流含量进行滑动正交变换。判断故障电流是否存在的准则是基于正交变换结果的幅值和相位响应的阈值和形状。仿真结果表明,滑动FFT和WHT都是有效的HIF检测方法。
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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