One-End Method for Fault Location in Radial Distribution Network with DG

A. Elmitwally, Abdelhady Ghanem
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Abstract

Faulty zone in distribution network might be recognized by protective devices operation. Yet, precise fault point location is required for speeding up system repair. This paper proposes a travelling wave (TW)-based approach for locating faults in a radial distribution system integrating with DGs. Voltage signal at local end only required to be logged and then arrival times of first two TWs is determined. First, threephase signals are transformed into its equivalent aerial and ground mode signals in order to avoid fault type as well as faulty phase identification. Next, first-level discrete wavelet transform (DWT) is applied to the denoised mode signals to estimate the arrival times of the first two backward propagating TWs. For different possible fault zones, mathematical analysis of TW propagation diagrams is obtained to specify the second TW arrival at measuring site. So, broad-based equations are established to accurately estimate the fault position. The proposed approach has immunity to DG existence, fault type and resistance.
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带DG的径向配电网故障定位的一端法
配电网的故障区域可以通过保护装置的运行来识别。然而,为了加快系统修复,需要精确的故障点定位。提出了一种基于行波的径向配电系统故障定位方法。只需记录本端电压信号,然后确定前两个TWs的到达时间。首先,将三相信号转换为其等效的地空模式信号,避免故障类型和故障相位的识别;然后,对降噪后的模态信号进行一级离散小波变换(DWT),估计前两个反向传播波的到达时间。对于不同可能的断裂带,通过对TW传播图的数学分析,确定了到达测点的二次TW。因此,建立了基础广泛的方程来准确估计故障位置。该方法不受DG存在、故障类型和电阻的影响。
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