Traveling-wave-based Fault location Using Time Delays Between Modal Components in Electrical Distribution Systems

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Yang Lei, Fan Yang, Zhijiang Yin, Jinrui Tang, Guoqing Zhang, Bo Ma, Y. Shen, Zhichun Yang
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引用次数: 0

Abstract

The distribution feeders usually include many laterals, too many sensors need to be installed to locate the fault positions in electrical distribution systems by using the traditional double-ended traveling-wave-based fault-location methods Fault location based on the time delays between the moments of the first wavefronts of zero-mode voltages and that of aerial-mode voltages arriving at one end of the distribution feeder. Large decomposition level in wavelet transformation is adopted in this paper to obtain the zero-mode velocity. Both theoretical research and simulation experiments have proved that the proposed fault location method can greatly improve the accuracy of the fault location in the electrical distribution systems without many sensors. The proposed fault location method can provide one feasible way to locate the faults in the electrical distribution systems.
基于模态分量时延的配电系统行波故障定位
传统的基于双端行波的故障定位方法在配电系统中通常包含许多分支,需要安装太多的传感器来定位故障位置。故障定位基于到达配电馈线一端的零模电压第一波前矩与航模电压矩之间的时间延迟。本文采用小波变换中的大分解阶来获得零模速度。理论研究和仿真实验都证明了该方法可以大大提高在无传感器情况下配电系统故障定位的精度。所提出的故障定位方法为配电系统故障定位提供了一种可行的方法。
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来源期刊
Recent Advances in Electrical & Electronic Engineering
Recent Advances in Electrical & Electronic Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.70
自引率
16.70%
发文量
101
期刊介绍: Recent Advances in Electrical & Electronic Engineering publishes full-length/mini reviews and research articles, guest edited thematic issues on electrical and electronic engineering and applications. The journal also covers research in fast emerging applications of electrical power supply, electrical systems, power transmission, electromagnetism, motor control process and technologies involved and related to electrical and electronic engineering. The journal is essential reading for all researchers in electrical and electronic engineering science.
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