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A Robust Sliding Mode Control Applied To The Double Fed Induction Machine

Year 2012, Volume: 12 Issue: 1, 1445 - 1451, 02.09.2013

Abstract

In this paper we propose to design a robust control using sliding mode for double-fed induction machine (DFIM), the stator and rotor are fed by two converters. The purpose is therefore to make the speed and the flux control resist to parameter variations, because the variation of parameters during motor operation degrades the performance of the controllers. The use of the nonlinear sliding mode method provides very satisfactory performance for DFIM control, and the chattering effect is also eliminated by the function "sat". Simulation results show that the implementation of the DFIM sliding mode controllers leads to robustness and dynamic performance satisfaction, even when the electrical and mechanical parameters vary.

References

  • P-E. Vidal, and M. Pietrzak-david, “Flux Sliding Mode Control of a Doubly Fed Induction Machine”, European Conference on Power Electronics and Applications, 2005.
  • G. Salloum, R. Mbayed, and M. Pietrzak-david, “Mixed Sensitivity H∞ Control of Doubly Fed Induction Motor”, IEEE International Symposium on Industrial Electronics, pp: 1300 - 1304, 2007.
  • M. Abdellatif, M. Pietrzak-David and I. Slama-Belkhodja, “Sensitivity of the Currents Input-Output Decoupling Vector Control of the DFIM versus Current Sensors Fault”, 13th International Power Electronics and Motion Control Conference, EPE-PEMC, pp 938-944, 2008.
  • G. Salloum, “Contribution à la commande robuste de la machine asynchrone à double Alimentation", Thèse de Doctorat en Génie Électrique, Institut National Polytechnique deToulouse, France, 2007.
  • P-E. Vidal, "Commande non-linéaire d'une machine asynchrone à double alimentation", Thèse de doctorat en Génie Electrique, Institut National Polytechnique de Toulouse, France, 2004.
  • J.J.E. Slotine, W. Li, “Applied nonlinear control”, Prence Hall, USA, 1998.
  • P. Lopez and A. S. Nouri, "Théorie Elémentaire Et Pratique de La Commande Par Les Régimes Glissants", Springer, 2006.
  • V. I. Utkin, “Sliding mode control design principles and applications to electric drives”, IEEE Trans. Ind. electronic, vol. 40, pp.23-36, Feb.1993.
  • V.I. Utkin, “Variable structure systems with sliding modes”, IEEE Trans. Automat. Contr., vol. AC-22, no. 2. pp. 212-222, Apr.1977
Year 2012, Volume: 12 Issue: 1, 1445 - 1451, 02.09.2013

Abstract

References

  • P-E. Vidal, and M. Pietrzak-david, “Flux Sliding Mode Control of a Doubly Fed Induction Machine”, European Conference on Power Electronics and Applications, 2005.
  • G. Salloum, R. Mbayed, and M. Pietrzak-david, “Mixed Sensitivity H∞ Control of Doubly Fed Induction Motor”, IEEE International Symposium on Industrial Electronics, pp: 1300 - 1304, 2007.
  • M. Abdellatif, M. Pietrzak-David and I. Slama-Belkhodja, “Sensitivity of the Currents Input-Output Decoupling Vector Control of the DFIM versus Current Sensors Fault”, 13th International Power Electronics and Motion Control Conference, EPE-PEMC, pp 938-944, 2008.
  • G. Salloum, “Contribution à la commande robuste de la machine asynchrone à double Alimentation", Thèse de Doctorat en Génie Électrique, Institut National Polytechnique deToulouse, France, 2007.
  • P-E. Vidal, "Commande non-linéaire d'une machine asynchrone à double alimentation", Thèse de doctorat en Génie Electrique, Institut National Polytechnique de Toulouse, France, 2004.
  • J.J.E. Slotine, W. Li, “Applied nonlinear control”, Prence Hall, USA, 1998.
  • P. Lopez and A. S. Nouri, "Théorie Elémentaire Et Pratique de La Commande Par Les Régimes Glissants", Springer, 2006.
  • V. I. Utkin, “Sliding mode control design principles and applications to electric drives”, IEEE Trans. Ind. electronic, vol. 40, pp.23-36, Feb.1993.
  • V.I. Utkin, “Variable structure systems with sliding modes”, IEEE Trans. Automat. Contr., vol. AC-22, no. 2. pp. 212-222, Apr.1977
There are 9 citations in total.

Details

Primary Language English
Journal Section Articles
Authors

Sid Ahmed El Mahdi Ardjoun

Mohamed Abıd This is me

Abdel Ghani Aıssaouı This is me

Ahmed Tahour This is me

Publication Date September 2, 2013
Published in Issue Year 2012 Volume: 12 Issue: 1

Cite

APA Ardjoun, S. A. E. M., Abıd, M., Aıssaouı, A. G., Tahour, A. (2013). A Robust Sliding Mode Control Applied To The Double Fed Induction Machine. IU-Journal of Electrical & Electronics Engineering, 12(1), 1445-1451.
AMA Ardjoun SAEM, Abıd M, Aıssaouı AG, Tahour A. A Robust Sliding Mode Control Applied To The Double Fed Induction Machine. IU-Journal of Electrical & Electronics Engineering. September 2013;12(1):1445-1451.
Chicago Ardjoun, Sid Ahmed El Mahdi, Mohamed Abıd, Abdel Ghani Aıssaouı, and Ahmed Tahour. “A Robust Sliding Mode Control Applied To The Double Fed Induction Machine”. IU-Journal of Electrical & Electronics Engineering 12, no. 1 (September 2013): 1445-51.
EndNote Ardjoun SAEM, Abıd M, Aıssaouı AG, Tahour A (September 1, 2013) A Robust Sliding Mode Control Applied To The Double Fed Induction Machine. IU-Journal of Electrical & Electronics Engineering 12 1 1445–1451.
IEEE S. A. E. M. Ardjoun, M. Abıd, A. G. Aıssaouı, and A. Tahour, “A Robust Sliding Mode Control Applied To The Double Fed Induction Machine”, IU-Journal of Electrical & Electronics Engineering, vol. 12, no. 1, pp. 1445–1451, 2013.
ISNAD Ardjoun, Sid Ahmed El Mahdi et al. “A Robust Sliding Mode Control Applied To The Double Fed Induction Machine”. IU-Journal of Electrical & Electronics Engineering 12/1 (September 2013), 1445-1451.
JAMA Ardjoun SAEM, Abıd M, Aıssaouı AG, Tahour A. A Robust Sliding Mode Control Applied To The Double Fed Induction Machine. IU-Journal of Electrical & Electronics Engineering. 2013;12:1445–1451.
MLA Ardjoun, Sid Ahmed El Mahdi et al. “A Robust Sliding Mode Control Applied To The Double Fed Induction Machine”. IU-Journal of Electrical & Electronics Engineering, vol. 12, no. 1, 2013, pp. 1445-51.
Vancouver Ardjoun SAEM, Abıd M, Aıssaouı AG, Tahour A. A Robust Sliding Mode Control Applied To The Double Fed Induction Machine. IU-Journal of Electrical & Electronics Engineering. 2013;12(1):1445-51.