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Hilbert-Transform-Based Transient/Intermittent Earth Fault Detection in Noneffectively Grounded Distribution Systems

机译:非有效接地配电系统中基于希尔伯特变换的暂态/间歇性接地故障检测

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摘要

Conventional relaying algorithms are mostly based on phasor computation. Since it is difficult to obtain accurate phasor results in fast transient situations, most of the feeder relays fail to correctly respond to transient/intermittent earth faults, which are, however, frequent fault cases in distribution systems. This paper presents a novel approach for fault detection and direction determination for these transient/intermittent faults. The basic idea is to extract the fault direction using the instantaneous power's direction. The instantaneous power is obtained by using Hilbert transform. The proposed direction element inherently utilizes the high-frequency components of the transient fault signals at a conventional sampling rate. Together with an intermittence detection algorithm, a scheme for transient/intermittent earth fault detection has been proposed. It has been implemented as a prototype relay. Electromagnetic Transients Program tests as well as physical model tests have proved the effectiveness of the proposed scheme.
机译:常规的中继算法主要基于相量计算。由于在快速瞬态情况下很难获得准确的相量结果,因此大多数馈线继电器都无法正确响应瞬态/间歇性接地故障,但是,这是配电系统中常见的故障情况。本文提出了一种新颖的方法,用于这些瞬态/间歇性故障的故障检测和方向确定。基本思想是使用瞬时功率方向提取故障方向。通过使用希尔伯特变换获得瞬时功率。所提出的方向元件固有地以常规采样率利用瞬态故障信号的高频分量。结合间歇检测算法,提出了一种暂态/间歇性接地故障检测方案。它已被实现为原型继电器。电磁暂态程序测试以及物理模型测试已证明了该方案的有效性。

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