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Spectral Correction Approach Based on Desirable Sidelobe Window for Harmonic Analysis of Industrial Power System

机译:基于理想旁瓣窗的频谱校正方法在工业电力系统谐波分析中的应用

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摘要

A novel approach to harmonic analysis for industrial power systems based on windowed fast Fourier transform is presented. First, the desirable sidelobe window (DSW) is constructed through self-convolution of the maximum decay sidelobe window (MDW) in the time domain. Then, the power system signal parameters, i.e., frequency, phase, and amplitude, are calculated by the DSW-based discrete phase difference correction algorithm. It has been shown that the spectral leakage and harmonic interferences can be reduced considerably by weighting samples with the DSW because of its good sidelobe behaviors, i.e., the peak sidelobe level and the sidelobe rolloff rate are proportional to the order of the window (or the times of self-convolution). The DSW-based discrete phase difference correction algorithm can be easily implemented in embedded systems due to the low computation burden. Both simulative and experiment data tests have been performed to verify the effectiveness and practicability of the proposed method.
机译:提出了一种基于加窗快速傅立叶变换的工业电力系统谐波分析的新方法。首先,通过时域中最大衰减旁瓣窗口(MDW)的自卷积来构造理想旁瓣窗口(DSW)。然后,通过基于DSW的离散相位差校正算法来计算电力系统信号参数,即频率,相位和幅度。已经表明,由于DSW具有良好的旁瓣特性,因此可以通过用DSW加权样本来显着降低频谱泄漏和谐波干扰,即,峰值旁瓣电平和旁瓣滚降率与窗口的阶数成正比(或卷积的次数)。基于DSW的离散相差校正算法由于计算量低,可以在嵌入式系统中轻松实现。仿真和实验数据测试均已进行,以验证该方法的有效性和实用性。

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