Removal of decaying DC offset in current signals for power system phasor estimation

Amir A. A. Eisa, K. Ramar
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引用次数: 19

Abstract

This paper presents a new method for the removal of decaying dc offset from current signals in digital protective devices. The method is based on the fact that a purely sinusoidal signal has a zero average over a full cycle or multiples of the full cycle of its fundamental frequency, whereas an exponential signal has a nonzero average over that same interval. A full cycle plus one sample of post fault data are required to calculate the parameters of the decaying dc offset in order to completely eliminate it from the current signal. Decaying dc offset removal is carried out before applying the current signal to the digital filter used for phasor estimation. The method has been tested by applying it to a fault current signal generated by computer simulation. Results obtained indicate that the method has greatly improved the performance of the full-cycle DFT algorithm. The new method can be applied in real time on digital protective devices because of its simplicity and computational efficiency.
去除电流信号中衰减的直流偏置,用于电力系统相量估计
本文提出了一种消除数字保护装置电流信号中衰减直流偏置的新方法。该方法基于这样一个事实,即纯正弦信号在其基频的整个周期或整个周期的倍数内具有零平均值,而指数信号在相同的区间内具有非零平均值。为了从电流信号中完全消除衰减的直流偏置,需要一个完整的周期加上一个故障后数据样本来计算衰减的直流偏置的参数。在将电流信号应用于用于相量估计的数字滤波器之前,进行衰减直流偏移去除。通过计算机仿真产生的故障电流信号,验证了该方法的有效性。结果表明,该方法大大提高了全周期DFT算法的性能。该方法简单,计算效率高,可用于数字保护装置的实时检测。
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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