A Fast Method for Fault Phase Selection Based on the Fitting Error of Transmission Line Differential Equation Algorithm

He He, Zhang Youqiang, Zhong Jiayong, Dai Jian, Gong Qiujing
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Abstract

A new fast method for fault phase selection which can apply to the differential equation algorithm of transmission lines is proposed in this paper. Six kinds of transmission line differential equations are established to describe different types of single-phase fault and phase to phase fault which can be solved by the least square method. The least-squares fitting error of the differential equation which is consistent with the real fault type is smaller, while others are bigger. A fault phase identification method by comparing the relative size of fitting error when solving differential equations under different fault types is proposed. The simulation results show that the proposed method can quickly identify any types and phases of faults with a typical time of 5~6ms and can be unaffected by the fault location and fault resistance. Meanwhile, the method could also work in the weak infeed conditions and has sufficient reliability.
基于传输线微分方程算法拟合误差的快速故障选相方法
提出了一种适用于输电线路微分方程算法的快速故障选相方法。针对不同类型的单相故障和相间故障,建立了6种输电线路微分方程,用最小二乘法求解。与实际故障类型一致的微分方程的最小二乘拟合误差较小,而与实际故障类型一致的微分方程的最小二乘拟合误差较大。提出了一种在不同故障类型下求解微分方程时,通过比较拟合误差相对大小来识别故障相位的方法。仿真结果表明,该方法可以快速识别任意类型和相位的故障,典型识别时间为5~6ms,且不受故障位置和故障电阻的影响。同时,该方法也能在弱馈入条件下工作,具有足够的可靠性。
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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