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2006 | Vol. 54, nr 3 | 287-292
Tytuł artykułu

Predictive direct power control of three-phase boost rectifier

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, a new control scheme of an active boost rectifier has been presented. Proposed power control method uses a discretetime model of the converter to predict future behaviour for all possible voltage vectors. The most effective vector is chosen for next sampling period by minimizing a cost function. Presented Predictive Direct Power Control (P-DPC) scheme has been compared with classical Switching Table based Direct Power Control (ST-DPC) method. Laboratory results shows that predictive control in relation to classical ST-DPC method works properly at low sampling frequency and owns better dynamic and steady state performance.
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Wydawca

Rocznik
Strony
287-292
Opis fizyczny
Bibliogr. 14 poz., 12 rys., 1 tab.
Twórcy
  • Institute of Control and Industrial Electronics, Warsaw University of Technology, 75 Koszykowa St., 00-662 Warsaw, Poland, antoniep@isep.pw.edu.pl
Bibliografia
  • [1] J.L. Duarte, A. Van Zwam, C. Wijnands, and A. Vandenput, “Reference frames fit for controlling PWM rectifiers”, IEEE Trans. Ind. Electron. 46, 628–630 (1999).
  • [2] M.P. Kaźmierkowski and L. Malesani, “Current control techniques for three-phase voltage-source PWM converters: A survey”, IEEE Trans. Ind. Electron. 45, 691–703 (1998).
  • [3] B.H. Kwon, J.H. Youm, and J.W. Lim, “A line-voltagesensorless synchronous rectifier”, IEEE Trans. Power Electron. 14, 966–97 (1999).
  • [4] M. Malinowski and M.P. Kazmierkowski, “Simple direct power control of three-phase PWM rectifier using space vector modulation – A comparative study”, EPE-Journal 13 (2), 28–34 (2003).
  • [5] M. Malinowski, “Sensorless control strategies for three-phase PWM rectifiers”, Ph.D. Thesis, Warsaw Univ. of Technology, Poland, 2001.
  • [6] M.P. Ka´zmierkowski, R. Krishnan, and F. Blaabjerg, Control in Power Electronics”, San Diego: Academic Press, 2002.
  • [7] T. Noguchi, H. Tomiki, S. Kondo, and I. Takahashi, “Direct power control of PWM converter without power-source voltage sensors”, IEEE Trans. Ind. Appl. 34, 473–479 (1998).
  • [8] T. Ohnishi, “Three-phase PWM converter/inverter by means of instantaneous active and reactive power control”, Proc. IEEE IECON’91, 819–824 (1991).
  • [9] B.T. Ooi, J.W. Dixon, A.B. Kulkarni, and M. Nishimoto, “An integrated AC drive system using a controlled current PWM rectifier/inverter link”, Proc. IEEE PESC’86, 494–501 (1986).
  • [10] M. Weinhold, “A new control scheme for optimal operation of a three-phase voltage dc link PWM converter”, Proc. PCIM Conf., 371–3833 (1991).
  • [11] A. Ruszczyk, “New algorithms of predictive methods of the current control of AC/DC and DC/AC converters”, Ph.D. Thesis, Technical Univ. of Bialystok, Poland, 2005, (in Polish).
  • [12] R. Kennel, E. El-kholy, S. Mahmoud, A. El-refaei, and F. Elkady, “A simple high performance current control scheme for induction motor drives” Proc. IEEE IECON 2005, 2005.
  • [13] A. Linder and R. Kennel, “Model predictive control for electrical drives”, Proc. IEEE PESC05, 1793–1799 (2005).
  • [14] J. Rodriguez, J. Pontt, P. Correa, P. Lezana, and P. Cortes, “Predictive power control of an AC/DC/AC Converter”, Proc. IEEE IAS 2, 934–939 (2005).
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG5-0014-0085
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