Title
Harmonic Phasor Analysis Based on Improved FFT Algorithm
Abstract
An approach for power system harmonic phasor analysis under asynchronous sampling is proposed in this paper. It is based on smoothing sampled data by windowing the signal with the four-term fifth derivative Nuttall (FFDN) window, and then calculating harmonic phasors in the frequency domain with an improved fast Fourier transform (IFFT) algorithm. The applicable rectification formulas of the IFFT are obtained by using the polynomial curve fitting, dramatically reducing the computation load. The FFDN window can effectively inhibit the spectral leakage and the picket fence effect can be modified by the IFFT algorithm under asynchronous sampling, and the overall algorithm can easily be implemented in embedded systems. The effectiveness of the proposed method was analyzed by means of simulations and practical experiments for multifrequency signals with the fluctuation of the fundamental frequency and with the presence of white noise and interharmonics.
Year
DOI
Venue
2011
10.1109/TSG.2010.2078841
IEEE Trans. Smart Grid
Keywords
Field
DocType
Harmonic analysis,Power system harmonics,Algorithm design and analysis,Least squares approximation,Time frequency analysis,Interpolation
Frequency domain,Phasor,Harmonic,Cooley–Tukey FFT algorithm,Electronic engineering,Smoothing,Harmonic analysis,Fast Fourier transform,Mathematics,Spectral leakage
Journal
Volume
Issue
ISSN
2
1
1949-3053
Citations 
PageRank 
References 
12
1.92
11
Authors
5
Name
Order
Citations
PageRank
Bo Zeng17613.74
Zhaosheng Teng2407.71
Yulian Cai3121.92
Siyu Guo4457.71
Baiyuan Qing5121.92