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Sliding Mode MPPT Control of a Dual Stator Induction Generator for Wind Power Generation


Affiliations
1 Department of Electronics and Telecommunications, (30000) Ouargla University, Algeria
2 Laboratoire des Semiconducteurs et Matériaux Fonctionnels. Université Amar Telidji de Laghouat. Algérie.BP 37G Laghouat 03000, Algeria
3 Department of informatique, (30000) Ouargla University, Algeria
 

This paper proposes a robust sliding mode controller based on an indirect vector control of Dual stator Induction Generator (DSIG) for a variable speed wind integrated into the network. The main goal of this paper is to improve and to optimize the performances of power system using a wind energy conversion system based on DSIG. In first step, The modeling of variable-speed wind energy conversion system is presented. In second step, a field-oriented control of a DSIG is proposed. In the last step, in order to ensure an optimum operating point and a Maximum Power Point Track (MPPT) giving online a maximum production of electric power for different wind speeds, a sliding mode controller have been suggested . The efficiency and validity of the proposed control strategy are illustrated by simulation results.

Keywords

Dual stator Induction Generator, Variable Speed Wind Turbine, Three-phase converters, Field oriented control, Variable structure systems, Sliding control.
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  • . Y. Sreenivasa Rao,A. Jaya Laxmi, “Fuzzy logic based indirect Vector control of Induction generator in Wind Energy Conversion System” Annu. Meeting, IEEE, 2012.
  • . S.Pati “Performance and Power Factor Improvement of Indirect Vector Controlled Cage Induction Generator in Wind Power Application “. Thesis Master .2011G. K. Singh, K. Nam, and S. K. Lim, “A simple indirect field-oriented control scheme for multiphase induction machine,” in Proc.27th Annu. Industrial ElectronicsIEEE Conf, Denver, CO,États-Unis, Aug. 2005, pp.1177-1184.*
  • . A.Tarek ,K.Nishida and M.Nakaoka “Induction Generator Using PWM Converter and Its Small-Scale Power Applications to Variable-Speed Renewable-Energy Generation” Annu. Meeting,Journal of Power Electronics, Vol. 5, No. 4, pp 298-304, October 2005.
  • . K. Kouzi, M–S. Naϊt-Saϊd, M. Hilairet, and E. Berthlot, "A fuzzy sliding-mode adaptive speed observer for vector controlof an induction motor,” presented at IEEE-IECON Annu. Meeting, Florida, USA, Nov. 10-13 2008.
  • . A. Massoum, A. Meroufel, and A. Bentaallah, “ Sliding Mode Speed Controller for a Vector Controlled DoubleStar Induction Motor,” in Electrical Review PRZEGLĄD ELEKTROTECHNICZNY ISSN 0033-2097, pp205-209, 2012.
  • . K. Kouzi, M-S. Naϊt-Saϊd, M. Hilairet and E. Berthlot, “ A Fuzzy Sliding-Mode Adaptive Speed Observer for Vector Control of an Induction Motor,” IEEE –IECON, Annuel Meeting, Florida,USA, pp362-366, Nov 2008.
  • . A. Abo-Khalil, D. C. Lee, and J. K. Seok, “Variable speed wind power generation system based on fuzzy logic control for maximum output power tracking,” in Proc. 35th Annu. IEEE Conf. Power Electronics Specialists, Germany, pp. 2039-2943, June 20-25 2004.
  • . S. Chekkal, D. Aouzellag, K. Ghedamsi, and H. Amimeur, “New control strategy of wind generator based on the dual-stator induction generator,” in Proc. 10th Annu. IEEE Conf. Environmental and electrical engineering (EEEIC), Rome, Italy, May 8–11 2011, pp. 68–71.
  • . H. Amimeur, D. Aouzellag, R. Abdessemed, and K. Ghedamsi, “Sliding mode control of a dual-stator induction generator for wind energy conversion systems,” ELSEVIER Trans, electrical Power and Energy Systems, vol. 42, no. 1, pp. 60–70, Nov. 2012.
  • . V. Pant, G. K. Siugh, and S. N. Singh, “Modeling of a multi-phase induction machtne under fault condjtion,” in Proc. IEEE Conf, Power Electronics and Drive Systems, July 1999, pp. 92-97.
  • . M. Mengoni, L. Zarri, A. Tani, G. Serra, D. Casadei, “Sensorless Multiphase Induction MotorDrive Based on a Speed Observer Operating with Third-Order Field Harmonics,” in Conf. IEEE, Annu. Meeting, pp. 68-74, 2011. .
  • . F.Ameur , and K. Kouzi“Genetic Algorithm Optimized PI and Fuzzy Logic Speed Vector Control of Dual Stator Induction Generator in Wind Energy Conversion System”, in Proc of the 3 rd International Conference on Systems and Control, pp. 174-180,Algiers, Algeria, October 29-31, 2013.
  • . E. Levi, R. Bojoi, F. Profumo, H.A. Toliyat and S. Williamson "Multiphase induction motor drives – a technology status review" The Institution of Engineering and Technology,pp. 489–516,2007.
  • . G.K. Singh , V. Pant, Y.P. Singh "Voltage source inverter driven multi-phase induction machine" Computers and Electrical Engineering pp 813–834.(2003).
  • . P. Vas, Sensorless Vector_and_Direct_Torque, Oxford University P

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  • Sliding Mode MPPT Control of a Dual Stator Induction Generator for Wind Power Generation

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Authors

Fatima Ameur
Department of Electronics and Telecommunications, (30000) Ouargla University, Algeria
Katia Kouzi
Laboratoire des Semiconducteurs et Matériaux Fonctionnels. Université Amar Telidji de Laghouat. Algérie.BP 37G Laghouat 03000, Algeria
Khadidja Ameur
Department of informatique, (30000) Ouargla University, Algeria

Abstract


This paper proposes a robust sliding mode controller based on an indirect vector control of Dual stator Induction Generator (DSIG) for a variable speed wind integrated into the network. The main goal of this paper is to improve and to optimize the performances of power system using a wind energy conversion system based on DSIG. In first step, The modeling of variable-speed wind energy conversion system is presented. In second step, a field-oriented control of a DSIG is proposed. In the last step, in order to ensure an optimum operating point and a Maximum Power Point Track (MPPT) giving online a maximum production of electric power for different wind speeds, a sliding mode controller have been suggested . The efficiency and validity of the proposed control strategy are illustrated by simulation results.

Keywords


Dual stator Induction Generator, Variable Speed Wind Turbine, Three-phase converters, Field oriented control, Variable structure systems, Sliding control.

References