Grid frequency estimation using Rife-Vincent Class I Window based Discrete Fourier Transform

Farshina Nazrul, Sayada Afia Masuma, H. Kafi, M. S. Reza, M. Hossain, F. Abedin
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Abstract

This paper presents the performance analysis of the frequency estimation technique based on the Discrete Fourier Transform (DFT) for single-phase grid voltage waveform under distorted grid conditions. Time varying fundamental frequency estimation requires three DFT operations. In this work, different types of fixed size windows by utilizing a special type of window function called Rife-Vincent window of class I are used for the DFT operations. The fixed size window based DFT operations are implemented as finite impulse response (FIR) filters. The frequency responses of the FIR filters using different windows are shown in this paper. Matlab/Simulink software is considered for the simulations. All the simulation results show that the presented technique does not have stability issue as it is an open loop based technique, and it can successfully estimate the grid fundamental frequency.
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基于Rife-Vincent类窗口的离散傅里叶变换的栅格频率估计
本文分析了基于离散傅立叶变换(DFT)的单相电网电压波形频率估计技术在畸变电网条件下的性能。时变基频估计需要三次DFT运算。在这项工作中,不同类型的固定大小窗口通过使用一种特殊类型的窗口函数称为I类的Rife-Vincent窗口用于DFT操作。基于固定大小窗口的DFT运算被实现为有限脉冲响应(FIR)滤波器。本文给出了不同窗口下FIR滤波器的频率响应。采用Matlab/Simulink软件进行仿真。仿真结果表明,该方法是一种基于开环的方法,不存在稳定性问题,并能很好地估计出电网基频。
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