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Steady-state modelling method for matrix-reactance frequency converter with boost topology

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Języki publikacji
EN
Abstrakty
EN
This paper presents a method intended for calculation of steady-state processes in AC/AC three-phase converters that are described by nonstationary periodical differential equations. The method is based on the extension of nonstationary differential equations and the use of Galerkin's method. The results of calculations are presented in the form of a double Fourier series. As an example, a three-phase matrix-reactance frequency converter (MRFC) with boost topology is considered and the results of computation are compared with a numerical method.
Rocznik
Strony
137--148
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
Bibliografia
  • [1] Fedyczak Z., Szcześniak P., Korotyeyev I.Ye., New family of matrix-reactance frequency converters based on unipolar PWM AC matrix-reactance choppers. Proc. of EPEPEMC, pp. 236-242 (2008).
  • [2] Korotyeyev I.Ye., Fedyczak Z., Steady and transient states modelling methods of matrix-reactance frequency converter with buck-boost topology. COMPEL – The International Journal for Computation and Mathematics in Electrical and Electronic Engineering 28(3): 626-638 (2009).
  • [3] Korotyeyev I.Ye., Klytta M., Zięba B. Approximation of a steady-state solution in AC/AC converters. Tehnična Elektrodinamika: Silova Elektronika ta Energoefektivnist 2: 50-53 (2007).
  • [4] Korotyeyev I.Ye., Klytta M., Zięba B., Analize of the steady-state in AC/AC converters. Tehnična Elektrodinamika: Problemi Suczasnoi Elektrotehniki 7: 62-65 (2008).
  • [5] Middlebrook R.D., Ćuk S. A general unified approach to modelling switching-converter power stages. PESC’76 Conf. Rec., pp. 18-34 (1976).
  • [6] Hill G.W., On the part of the motion of the lunar perigee which is a function of the mean motions of the sun and the moon. Acta Mathematica 8: 112-123 (1886).
  • [7] Taft V.A., Spectral Methods of Calculation of Non-stationary Circuits and Systems. Moscow, Energiya 272 (1978).
  • [8] Zienkiewicz O.C., Taylor R.L., Finite Element Method. Vol. 1, The Basis (2000).
  • [9] Korotyeyev I.Ye., Zięba B., Mathematical modelling of steady-state processes in AC/AC converters using Galerkin's method. Tehnična Elektrodinamika 3: 100-103 (2009).
  • [10] Tolstov G.P., Szeregi Fouriera. PWN (1954).
  • [11] Korotyeyev I.Ye., The calculation of steady-state processes in circuits of voltage converters, which are working on periodical load. Modeling and Simulation of Electric Machines, Converters and Systems − Electrimacs '99: Proceedings of the 6th International Conference, Lisbona, Portugal 3: 215-220 (1999).
  • [12] Korotyeyev I.Ye., Fedyczak Z., Szcześniak P., Steady and transient states analysis of matrixreactance frequency converter based on boost PWM AC matrix-reactance chopper. Przegląd Elektrotechniczny 11: 279-284 (2008).
  • [13] Venturini M., Alesina A. The generalized transformer: a new bi-directional sinusoidal waveform frequency converter with continuously adjustable input power factor. IEEE Power Electronics Specialists Conference Record, PESC’80, pp. 242-252 (1980).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0060-0019
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