Optimal fault location algorithm for series-compensated transmission lines based on PMU data

Seyed Sina Mousavi-Seyedi, F. Aminifar, M. Rezaei, R. Hasani
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引用次数: 6

Abstract

A new synchrophasor-based fault location algorithm for series-compensated transmission lines is presented in this paper. Both prefault and fault voltage and current phasors associated with either ends of a given line accessible through the phasor measurement units (PMUs) are taken as input data. The proposed algorithm initially estimates the line parameters using prefault data; thereafter, these parameters are used for estimating the fault location. This method is based on the positive-sequence equivalent π models of transmission lines, and since PMU can measure prefault and fault positivesequence data in both symmetrical and unsymmetrical conditions, the method is applicable to all types of faults. The nonlinear weighted least square error (NWLSE) as a powerful method for tackling nonlinear estimation problem is used for the estimation process. Numerical case studies using MATLAB program demonstrate effectiveness of the new method.
基于PMU数据的串联补偿输电线路故障最优定位算法
提出了一种新的基于同步相量的串联补偿输电线路故障定位算法。通过相量测量单元(pmu)可访问的与给定线路两端相关的预故障和故障电压和电流相量被作为输入数据。该算法利用故障前数据对线路参数进行初步估计;然后,使用这些参数来估计故障位置。该方法基于传输线的正序等效π模型,由于PMU可以测量对称和非对称条件下的故障前和故障正序数据,因此该方法适用于所有类型的故障。将非线性加权最小二乘误差(NWLSE)作为解决非线性估计问题的一种有效方法用于估计过程。用MATLAB程序进行了数值算例分析,验证了该方法的有效性。
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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