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Robust Control of a Doubly Fed Induction Generator (DFIG) Fed by a Direct AC-AC Converter

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Sterowanie o zwiększonej odporności dla generatora indukcyjnego o zasilaniu dwustronnym, zasilanego przekształtnikiem matrycowym
Języki publikacji
EN
Abstrakty
EN
The aim of this paper is to propose a robust control method for a doubly-fed induction generator fed by a direct AC-AC converter used in wind energy conversion systems. First, we carried out a study of modelling on the matrix converter controlled by the venturini modulation technique. Thereafter, stator active and reactive powers are regulated by controlling the machine inverter with two different controllers : proportional–integral and Sliding mode. Simulations results are presented and discussed for the whole system.
PL
W artykule opisano metodę sterowania dla generatora indukcyjnego o zasilaniu dwustronnym z przekształtnika matrycowego (ACAC) w aplikacji do turbiny wiatrowej. Przedstawiono model przekształtnika matrycowego o modulacji metodą venturini oraz wyniki badań symulacyjnych.
Rocznik
Strony
213--221
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
autor
autor
  • Intelligent Control & Electrical Power Systems Laboratory, Faculty of Engineer Science, Electrical Engineering Department, University of Djillali Liabes, BP 98 Sidi Bel-Abbes 22000 Algeria, boudjemaa1983@yahoo.fr
Bibliografia
  • [1] Anaya-Lara O., Jenkins N., Ekanayake J., Cartwright P. and Hughes M., Wind Energy Generation, Wiley, (2009).
  • [2] Venturini M., A new sine wave in sine wave out conversion technique which eliminates reactive elements, In: Proc Powercon 7, San Diego, CA, pp E3-1, E3-15, 27-24 March 1980.
  • [3] Alesina A., Venturini M., Solid-state power conversion: a Fourier analysis approach to generalized transformer synthesis, IEEE T Circuits Syst 28: 319-330, (1981).
  • [4] Pena R., Clare J.C., Asher G.M., A doubly fed induction generator using back to back converters supplying an isolated load from a variable speed wind turbine, IEE Proceeding on Electrical Power Applications 143 (September (5)) (1996).
  • [5] Poller M.A., Doubly-fed induction machine models for stability assessment of wind farms, in: Power Tech Conference Proceedings, 2003, IEEE, Bologna, vol. 3, 23-26 June 2003.
  • [6] Brekken T., Mohan N., A novel doubly-fed induction wind generator control scheme for reactive power control and torque pulsation compensation under unbalanced grid voltage conditions, in: IEEE 34th Annual Power Electronics Specialist Conference, 2003, PESC ‘03, 15-19 June 2003, vol. 2, pp. 760-764.
  • [7] Brekken T.K.A., Mohan N., Control of a doubly fed induction wind generator under unbalanced grid voltage conditions, IEEE Transaction on Energy Conversion 22 (March (1)) (2007) 129- 135.
  • [8] Lopez J., Sanchis P., Roboam X., Marroyo L., Dynamic behavior of the doubly fed induction generator during threephase voltage dips, IEEE Transaction on Energy Conversion 22 (September (3)) (2007) 709-717.
  • [9] Sun T., Chen Z., Blaabjerg F., Flicker study on variable speed wind turbines with doubly fed induction generators, IEEE Transactions on Energy Conversion 20 (December (4)) (2005) 896-905.
  • [10] Piegari L., Rizzo R., A control technique for doubly fed induction generators to solve flicker problems in wind power generation, in: International Power and Energy Conference, Putrajaya, Malaysia, 28 and 29 November 2006, pp. 19-23.
  • [11] Sünter S., A vector controlled matrix converter induction motor drive, PhD Thesis, University of Nottingham, Nottingham, UK, (1995).
  • [12] Ghedamsi K., Aouzellag D. and Berkouk E. M., Matrix converter based variable speed wind generator system, International Journal of Electrical and Power Engineering 2 (1), 39-49, (2008).
  • [13] Amari A., Nonlinear control of a doubly fed induction generator for wind energy conversion systems, PG1 Thesis, University of Mostaganem, Algiers (2011).
  • [14] Poitier F., Study and control of induction generators for wind energy conversion systems, PhD Thesis, University of Nantes, (2003).
  • [15] Boyette A., Control of a doubly fed asynchronous generator with a storage system for the wind production, PhD Thesis, University of Nancy 1, (2006).
  • [16] Utkin V. I., Variable Structure Systems with Sliding Modes, IEEE Trans. Automat. contr, AC-22 (February 1993), 212-221.
  • [17] Yan Z., Jin C., Utkin V. I., Sensorless Sliding-Mode Control of Induction Motors, IEEE Trans. Ind. electronic. 47 No. 6 (December 2000), 1286-1297.
  • [18] Abid M., Ramdani Y., Meroufel A., Speed sliding mode control of sensorless induction machine, JEE, Vol. 57, N°1, 2006, 47-51.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS1-0050-0071
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