Voltage Flicker Extraction Based on Wavelet Analysis

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Abstract:

Extracting voltage flicker from the sampling voltage signal is a precondition for management of flicker. Voltage flicker signal is a low frequency time-varying non-stationary signal. The traditional fourier transform has great limitations when analyze the non-stationary signal for not having the time resolution. As wavelet transform has good property of time-frequency localization, it become a powerful tool for analyze this kind of signal. This paper adopts multi-resolution analysis of wavelet to extract voltage flicker signal. Furthermore, according to the characteristics of wavelet function, this paper selects Daubechies wavelet to accomplish the multi-level decomposition and reconstruction of signal, in order to get the frequency and amplitude of voltage flicker signals. Based on the principle of modulus maximum, it can be determined what time the voltage flicker happen and over. The results of MATLAB simulation indicate that voltage flicker signal can be effectively extracted by wavelet multi-resolution analysis. Wavelet multi-resolution analysis is considerably ideal for voltage flicker extraction.

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1389-1393

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] LIU Tao, ZENG Xiang-li, ZENG Jun., Practical Introduction to Wavelet Analysis[M], Beijing: Nation Defense Industry Press, (2006).

Google Scholar

[2] Fecit Technology R & D center, Awavelet analysis theory and MATLAB7 Implementation[M], Beijing: Electronics Industry Press, (2003).

Google Scholar

[3] LIU Hui-jin, WU Yu-rong, XIONG Ling-ling, Application of Wavelet Multi-resolution Decomposition using Daubechies in Voltage flicker analysis[J], RELAY, 2004, 32(13).

Google Scholar

[4] Reng Zheng, Wavelet Analysis and Applications to Power Systems[M], Beijing: China Electric Power Press, (2003).

Google Scholar

[5] DU jun, SHAO Zhen-guo, GUO Xiao-li, Tracking the Envelope of Voltage Flicker Using Wavelet Analysis[J], Proceedings of the Chinese Society of Universities, 2006, 18(3).

Google Scholar

[6] XIE Ji-juan, WU Wei-wei, Wavelet-based Method Voltage Flicker Analysis[J]. Chinese Journal of Scientific Instrument, 2003, 24(z1).

Google Scholar