Various Algorithms to Detect Faults on Underground Cables Based on Impedance Method

L. H. Lam, D. H. Quan, Nguyen Van Tan, N. H. Hieu
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Abstract

Nowadays, the rapid detection of short-circuit faults in the distribution network is very necessary aiming to increase the reliability of the electric network. The shorter the time of detection of faults is, the faster the recovery of the normal operation of the distribution network is. However, this task contains a challenge due to the complexity of distribution networks that are using both overhead and underground cables. Recently, many research activities are presented to detect the short-circuit fault in a distribution network and classified into three catalogs: (i) time domain reflection, (ii) traveling wave method, and (iii) impedance method. However, the first two methods have a very high investment cost, thus they are not used widely in distribution networks even their efficiency performance is confirmed. Therefore, this paper aims to study on many algorithms; e.g. Tagaki, Saha, Personal Algorithm; which are developed based on the last method, then a program is implemented in Matlab Simulink in order to test various algorithms. Moreover, these algorithms are tested with two real underground cables in the Center of Vietnam to figure out the best algorithm for the real application in Vietnam.
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基于阻抗法的各种地下电缆故障检测算法
为了提高配电网的可靠性,快速检测配电网的短路故障是十分必要的。发现故障的时间越短,配电网恢复正常运行的速度就越快。然而,由于使用架空和地下电缆的配电网络的复杂性,这项任务包含一个挑战。近年来,国内外对配电网短路故障检测的研究较多,主要分为时域反射法、行波法和阻抗法三大类。然而,前两种方法的投资成本很高,因此即使它们的效率性能得到证实,也没有在配电网中得到广泛应用。因此,本文旨在研究多种算法;例如Tagaki, Saha, Personal Algorithm;然后在Matlab Simulink中编写了一个程序,对各种算法进行了测试。并在越南中部的两条真实地下电缆上对这些算法进行了测试,以找出适合越南实际应用的最佳算法。
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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