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Transient Inrush and Fault Current Signal Extraction Using Discrete Wavelet Transform for Detection and Classification in Shunt Capacitor Banks

机译:基于离散小波变换的暂态浪涌和故障电流信号提取,用于并联电容器组的检测和分类

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摘要

An unbalanced current protection relay (60C, 51NC) cannot operate fast enough to avoid catastrophic failure against high system fault currents within capacitor units because a traditional unbalanced current protection relay is not capable of classifying the transient fault current and switching inrush current. This article proposes a new algorithm for the detection and classification of these transient current signals. Simulations are performed using PSCAD/EMTDC programs. The outputs of the current signals are used as inputs for the discrete wavelet transform (DWT) process. The wavelet-based fault and inrush current detection and classification unit receive the captured transient current signals and use DWT to detect and analyze these signals. Actual inrush current signals from an experimental setup and shunt capacitor banks of 115 kV, 22 kV, and 6.6 kV are used to verify the proposed algorithm. The results show that the proposed algorithm provides good performance and accuracy in identifying faults and inrush currents.
机译:不平衡电流保护继电器(60C,51NC)的运行速度不足以避免在电容器组内因高系统故障电流而导致的灾难性故障,因为传统的不平衡电流保护继电器无法对瞬态故障电流和开关浪涌电流进行分类。本文提出了一种用于检测和分类这些瞬态电流信号的新算法。使用PSCAD / EMTDC程序进行仿真。当前信号的输出用作离散小波变换(DWT)过程的输入。基于小波的故障和浪涌电流检测和分类单元接收捕获的瞬态电流信号,并使用DWT来检测和分析这些信号。来自实验设置和115 kV,22 kV和6.6 kV并联电容器组的实际浪涌电流信号用于验证该算法。结果表明,该算法在识别故障和突入电流方面具有良好的性能和准确性。

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