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A Minimum Side-Lobe Optimization Window Function and Its Application in Harmonic Detection of an Electricity Gird

机译:最小旁瓣优化窗函数及其在电网检测中的应用

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Several window functions are currently applied to improve the performance of the discrete Fourier transform (DFT) harmonic detection method. These window functions exhibit poor accuracy in measuring the harmonic contents of a signal with high-order and weak-amplitude components when the power frequency fluctuates within a small range. In this paper, a minimum side-lobe optimization window function that is aimed at overcoming the abovementioned issue is proposed. Moreover, an improved DFT harmonic detection algorithm based on the six-term minimum side-lobe optimization window and four-spectrum-line interpolation method is proposed. In this context, the minimum side-lobe optimization window is obtained by optimizing the conventional cosine window function according to the optimization rules, and the characteristics of the new proposed window are provided to analyze its performance. Then, the proposed optimization window function is employed to improve the DFT harmonic detection algorithm based on the six-term minimum side-lobe optimization window and four-spectrum-line interpolation method. The proposed technique is used to detect harmonics of an electricity gird in which the six-term minimum side-lobe optimization window is utilized to eliminate the influence of spectrum leakage caused by nonsynchronous sampling of signal processing. The four-spectrum-line interpolation method is employed to eliminate or mitigate the fence effect caused by the inherent measurement error of the DFT method. Simulation experiments in two complex conditions and an experiment test are carried out to validate the improved performance of the proposed window. Results reveal that the six-term minimum side-lode optimization window has the smallest peak side lobe when compared with existing windows, which can effectively reduce the interaction influence of spectrum leakage, improve the measurement accuracy of the DFT harmonic detection method, and meet the standard requirement of harmonic measurement in complex situations.
机译:当前应用了几种窗口函数来改善离散傅里叶变换(DFT)谐波检测方法的性能。当功率频率在较小范围内波动时,这些窗口函数在测量具有高阶和弱幅分量的信号的谐波含量时显示出较差的精度。本文提出了一种克服上述问题的最小旁瓣优化窗函数。提出了一种基于六项最小旁瓣优化窗和四谱线插值法的改进的DFT谐波检测算法。在这种情况下,通过根据优化规则对常规余弦窗函数进行优化来获得最小旁瓣优化窗,并提供了新提出的窗的特性以分析其性能。然后,基于六项最小旁瓣优化窗和四谱线插值法,利用提出的优化窗函数对DFT谐波检测算法进行改进。所提出的技术用于检测电网的谐波,其中利用六项最小旁瓣优化窗口来消除由于信号处理的非同步采样而引起的频谱泄漏的影响。采用四谱线插值法消除或减轻了由DFT方法固有的测量误差引起的围栏效应。进行了两个复杂条件下的仿真实验和实验测试,以验证所提出窗口的改进性能。结果表明,与现有窗口相比,六项最小旁瓣优化窗口的峰旁瓣最小,可以有效地减少频谱泄漏的相互作用影响,提高DFT谐波检测方法的测量精度,满足复杂情况下谐波测量的标准要求。

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