Discrimination Between Power Swing and Faults in Series Compensated Transmission Lines Using the Piecewise Linear Spline Wavelet

Yamen R. Alsyoufi, A. A. Hajjar, R. Aljendy
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引用次数: 2

Abstract

Power swing may cause distance relays to operate incorrectly. Hence, this work presents a fast algorithm dependent on wavelet transform to differentiate a power swing from any fault that may occur in series compensated transmission lines. In this algorithm, the Piecewise Linear Spline Wavelet is used to analyze current/voltage waveforms into distinctive levels of frequencies. The eighth level of the single-phase current signal is used to identify power swing and thus to block the operation of the distance relay, whereas the first levels of the three-phase voltage signals are used to identify any fault case even in the presence of power swing, and thus to deblock the distance relay. To assess the efficacy of the presented algorithm, lots events of faults and power swings are examined on a test system modeled in MATLAB/Simulink. The results prove the advantages of the presented algorithm in terms of speed, reliability and efficiency.
分段线性样条小波在串联补偿线路功率摆动与故障判别中的应用
功率摆动可能导致距离继电器操作不正确。因此,本文提出了一种基于小波变换的快速算法来区分功率摆动和串联补偿输电线路中可能发生的任何故障。在该算法中,采用分段线性样条小波分析电流/电压波形到不同的频率水平。单相电流信号的第8级用于识别功率摆幅,从而阻止距离继电器的操作,而三相电压信号的第1级用于即使在存在功率摆幅的情况下识别任何故障情况,从而断开距离继电器。为了评估该算法的有效性,在MATLAB/Simulink建模的测试系统上对大量故障和功率波动事件进行了测试。实验结果证明了该算法在速度、可靠性和效率方面的优势。
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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