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A Space-Vector Discrete Fourier Transform for Unbalanced and Distorted Three-Phase Signals

机译:不平衡和失真的三相信号的空间矢量离散傅里叶变换

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In this paper, a space-vector discrete-time Fourier transform is proposed for fast and precise detection of the fundamental-frequency and harmonic positive- and negative-sequence vector components of three-phase input signals. The discrete Fourier transform is applied to the three-phase signals represented by Clarke's $alphabeta$ vector. It is shown that the complex numbers output from the Fourier transform are the instantaneous values of the positive- and negative-sequence harmonic component vectors of the input three-phase signals. The method allows the computation of any desired positive- or negative-sequence fundamental-frequency or harmonic vector component of the input signal. A recursive algorithm for low-effort online implementation is also presented. The detection performance for variable-frequency and interharmonic input signals is discussed. The proposed and other usual method performances are compared through simulations and experiments.
机译:本文提出了一种空间矢量离散时间傅立叶变换,用于快速精确地检测三相输入信号的基频和谐波正负矢量分量。离散傅立叶变换应用于由Clarke的$ alphabeta $向量表示的三相信号。示出了从傅立叶变换输出的复数是输入的三相信号的正序和负序谐波分量矢量的瞬时值。该方法允许计算输入信号的任何期望的正序或负序基频或谐波矢量分量。还提出了一种省力的在线实现的递归算法。讨论了变频和间谐波输入信号的检测性能。通过仿真和实验比较了建议方法和其他常用方法的性能。

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