一种新的相量计算数字滤波器。我的理论。

J. A. de la O Serna, H. Altuve, I. Diaz
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引用次数: 18

摘要

提出了一种新的相量计算正交滤波器。它们具有优良的时频特性,可用于故障定位和测量。对具有强阻带的单叶函数进行傅里叶反变换,得到了它们的脉冲响应。从这个过程中,一个新的窗口出现了。没有侧叶,它克服了矩形窗口造成的时间障碍,隐式在数字傅里叶滤波。它的长度不局限于一个周期的倍数,并且可以调整到覆盖所有可用的故障样本,提取基本成分的精度越来越高。另一方面,它的采样频率可以降低到基频的两倍。特别是,在这个最小采样频率下,数字余弦滤波器抑制均匀谐波和非周期分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new digital filter for phasor computation. I. Theory
A new pair of orthogonal filters for phasor computation is presented. They have excellent time-frequency characteristics for fault location and measurement. Their impulse responses are obtained applying the inverse Fourier transform to a single-lobe function with a strong stopband. From this process, a new window emerges. Without side lobes, it overcomes the temporal barriers imposed by the rectangular window, implicit in digital Fourier filtering. Its length is not restricted to a multiple of one cycle, and it can be adjusted to cover totally the available samples of the fault, extracting the fundamental component with growing precision. On the other hand, its sampling frequency can be reduced to twice the fundamental frequency. In particular, at this minimum sampling frequency, the digital cosine filter rejects the even harmonics and the aperiodic component.
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