High-precision time-domain convolution in harmonic detection

Wang Jingfang
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引用次数: 0

Abstract

In this paper, a time-frequency filter is designed, which can detect the frequency, amplitude and phase of any order harmonics and interharmonics in signal by means of time domain convolution. Negative half-axis frequency is restrained with Hilbert transform. The theory analysis are carried to this method and the calculate formula are concluded, the spectral leakage and the barrier domino offect are shun, the non-integer order wave are eluded, which are engendered in Fourier domain. Experiment simulation results show that time-frequency filtering convolution flunction can be designed and realized neatly and be real-time implemented conveniently in engineering application; the influences of fundamental frequency fluctuation on harmonic analysis are restrained by using the approach presented in this paper; the calculating frequencies with many order harmonics and interharmonics are nicety, the amplitudes and the initial phases are detected in high-accurately.
高精度时域卷积谐波检测
本文设计了一种时频滤波器,通过时域卷积可以检测信号中任意阶谐波和间谐波的频率、幅度和相位。用希尔伯特变换抑制负半轴频率。对该方法进行了理论分析,得出了计算公式,避免了谱泄漏和垒垒多米诺效应,避免了在傅里叶域中产生的非整数阶波。实验仿真结果表明,时频滤波卷积函数的设计与实现较为简洁,在工程应用中便于实时实现;该方法有效地抑制了基频波动对谐波分析的影响;多次谐波和间谐波的频率计算精度高,幅值和初始相位检测精度高。
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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