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Warianty tytułu
Zastosowanie transformaty falkowej do analizy stanów nieustalonych systemu elektroenergetycznego
Języki publikacji
Abstrakty
This paper presents a review of application of discrete wavelet transform in power system transient analyses. Based on the discrete time domain approximation, the system components such as resistor and inductor are modeled respectively in discrete wavelet domain for the purpose of transient and steady state analyses. Numerical results for transient inductor model can be implemented by any kind of power system including normal and emergency operating modes.
W artykule przedstawiono przegląd stosowania dyskretnej transformaty falkowej do analizy stanów nieustalonych systemu elektroenergetycznego. W oparciu o dyskretne zbliżenia w dziedzinie czasu, elementy systemu, takie jak rezystor i cewki indukcyjnej są modelowane jako odpowiednie dyskretne domeny falkowe.
Wydawca
Czasopismo
Rocznik
Tom
Strony
162--165
Opis fizyczny
Bibliogr. 10 poz., rys., wykr.
Twórcy
autor
- Omsk State Technical Univercity, Industrial Enterprises Supply Department ,Omsk, Russia
autor
- Omsk State Technical Univercity, Industrial Enterprises Supply Department ,Omsk, Russia
autor
- Omsk State Technical Univercity, Industrial Enterprises Supply Department ,Omsk, Russia
autor
- Omsk State Technical Univercity, Industrial Enterprises Supply Department ,Omsk, Russia
autor
- Omsk State Technical Univercity, Industrial Enterprises Supply Department ,Omsk, Russia
Bibliografia
- [1] P.F. Ribeiro, “Wavelets: A new approach to analyze power system distortions” in Proc. EPRI-Power Quality Steering Committee, Baltimore, MD, 1993.
- [2] T. Zheng, E. Makram, and A.A. Girgis, “Power system transient and harmonic studies using wavelet transform,” IEEE Trans. Power Del., vol. 14, no. 4, pp. 1461–1468, Oct. 1999.
- [3] S. Santoso, E.J. Powers, and W.M. Grady, “ Wavelet-based Power Quality Event Identification System, Part 1The Wavelet Transform and Feature Extraction of Power Quality Disturbances and Part 2: Design and Implementation,” ERPI Report, August 1997.
- [4] J. Barros, R.I. Diego and M. de Apraiz. “Applications of Wavelet Transform for Analysis of Harmonic Distortion in Power Systems: A Review”. IEEE Transactions on instrumentation and measurement, vol. 61, N) 10, October 2012. pp. 2604-2611
- [5] Mallat, S. “A wavelet tour of signal processing” Academic Press, 1998, New York.
- [6] Dwight F. Mix and Kraig J. Olejniczak “Elements of wavelets for engineers and scientists”. John Wiley & Sons, Inc. New York, NY, USA 2003.
- [7] A.W. Calli, "Analysis of Electrical Transients In Power System Via A Novel Wavelet Recursion Method", Ph.D. Dissertation, Purdue University 1997.
- [8] G. Strang and T. Nguyen. Wavelets and Filter Banks. Wellesly-Cambridge Press. Wellesly. MA. 1996.
- [9] I.D. Nicolae, P.M. Nicolae , M.S. Nicolae. “Real-time Analysis Using Discrete Wavelet Transform in Power Systems” 15th International Power Electronics and Motion Control Conference, EPE-PEMC 2012 ECCE Europe, Novi Sad, Serbia
- [10] A.N. Kirichenko, V.N. Gorunov, A.V. Schekochikhin, V.V. Barskov, “Algorithms of optimal parametric synthesis of RLC models in the problem of parameter identification of electrical devices”, Dynamics of Systems, Mechanisms and Machines, Dynamics 2014.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fe2cf820-db46-40a4-849b-3fad8273a28d