Fault location strategy based on wavelet transform analysis for LVDC micro-grid

A. Rajendran, Arya R Nair
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Abstract

A novel methodology for finding fault location by using Wavelet Transform (WT) analysis and isolating respective faulted zone from rest of the Low Voltage Direct Current (LVDC) microgrid so as to prevent entire system failure is presented in this paper. A fault in the LVDC microgrid can make the entire system to de-energize thereby making it extremely difficult to find the exact location of fault. The main objective is to detect as well as isolate faulted segment whenever fault occurs in LVDC microgrid. Ring bus topology is used to implement the system. Relays are used for isolating zones when fault occurs. A fault location strategy using probe power unit is presented. Damped resonant frequency obtained using PPU at the time of fault is assumed to be equal to the natural frequency of the LVDC microgrid. By extracting the damped frequency from probe current or probe voltage using WT analysis fault location can be obtained accurately.
基于小波变换分析的LVDC微电网故障定位策略
本文提出了一种基于小波变换分析的故障定位新方法,并将相应的故障区与低压直流微电网的其他故障区隔离开来,以防止整个系统发生故障。LVDC微电网的故障会使整个系统失电,从而使故障的准确定位变得极其困难。其主要目的是在LVDC微电网发生故障时对故障段进行检测和隔离。系统采用环总线拓扑实现。当发生故障时,继电器用于隔离区域。提出了一种基于探针功率单元的故障定位策略。假设故障时PPU得到的阻尼谐振频率等于LVDC微电网的固有频率。利用小波变换分析从探头电流或探头电压中提取阻尼频率,可以准确地获得故障定位。
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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