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Hybrid Fuzzy sliding mode performance control applied to a DFIG system for the production and integrated wind energy into a power grid based three-level converters

Year 2013, Volume: 1 Issue: 2, 93 - 101, 01.06.2013

Abstract

— In this paper we have developed a hybrid nonlinear robust control law, called fuzzy sliding mode (FSMC), which combines the advantages of both: the sliding mode (SMC) and fuzzy logic (FLC). This controller has the feature to eliminate the ripples caused by SMC; it will be applied to a doubly fed asynchronous generator to produce power from the wind. We have used the FSMC to control the active and reactive power exchanged between the stator and the grid. The two powers are decoupled by the mean of using an indirect vector control with power loop. The performance of this cascade and control are analyzed by simulation of Matlab / Simulink software

References

  • M. Adjoudj et al, "Sliding mode control of a doubly fed induction generator for wind turbines", conversion systems. Rev. Roum. Sci. Techn. – Électrotechn. et Énerg., Vol.56, No.1, 2011, pp.15-24.
  • R. Manavalan, C.S. Kumar, "Analysis of Hybrid Renewable Energy System using NPC Inverter", Research Inventy: International Journal of Engineering and Science, Vol.2, No.7, March 2013, pp. 26-30.
  • G. Abad J. Lopez, M.A. Rodrıguez, L. Marroyo, G. Iwanski, "Doubly fed induction machine: modeling and control for wind energy generation", IEEE press Series on Power Engineering, Aug 2011.
  • F. Poitiers, M. Machmoum, R.L. Doeuff and M.E. Zaim, “Control of a doubly-fed induction generator for wind energy conversion system”, Australasian Universities Power Engineering Conference AUPEC 2009, Australia.
  • M. Hilal, Y. Errami, M. Benchagra and M. Maaroufi "Fuzzy Power Control For Doubly Fed Induction Generator Based Wind Farm," Journal of Theoretical and Applied Information Technology, 30th September 2012, Vol. 43 No.2, pp.321-330.
  • F. Valenciaga, C.A. Evangelista "Sliding active and reactive power control of a wind energy conversion system", IET Control Theory and Applications, Vol.4, No.11, 2010, pp.2479-2490.
  • R. Palm, "Sliding mode fuzzy control," Fuzzy Systems, IEEE conference proceeding, Vol.2, 2002, pp. 1393-1398.
  • S. Arezki, M. Boudour, “Contribution to the improvement of the performances of a chain of conversion of energy fed by a double source”, 2nd International Conference on Advances in Energy Engineering (ICAEE 2011), December 2011, Bangkok , Thailand.
  • F. Piltan, N. Sulaiman, S. Roosta, A. Gavahian, S. Soltani, “Artificial Chattering Free on-line Fuzzy Sliding Mode Algorithm for Uncertain System: Applied in Robot Manipulator, International Journal of Engineering, Vol.5, No.5, 2011, pp.360-379.
  • L. Xu and P. Cartwright, "Direct Active and Reactive Power Control of DFIG for Wind Energy Generator", IEEE Transactions on Energy Conversion, Vol.21, No.3, September 2006, pp. 750–758.
Year 2013, Volume: 1 Issue: 2, 93 - 101, 01.06.2013

Abstract

References

  • M. Adjoudj et al, "Sliding mode control of a doubly fed induction generator for wind turbines", conversion systems. Rev. Roum. Sci. Techn. – Électrotechn. et Énerg., Vol.56, No.1, 2011, pp.15-24.
  • R. Manavalan, C.S. Kumar, "Analysis of Hybrid Renewable Energy System using NPC Inverter", Research Inventy: International Journal of Engineering and Science, Vol.2, No.7, March 2013, pp. 26-30.
  • G. Abad J. Lopez, M.A. Rodrıguez, L. Marroyo, G. Iwanski, "Doubly fed induction machine: modeling and control for wind energy generation", IEEE press Series on Power Engineering, Aug 2011.
  • F. Poitiers, M. Machmoum, R.L. Doeuff and M.E. Zaim, “Control of a doubly-fed induction generator for wind energy conversion system”, Australasian Universities Power Engineering Conference AUPEC 2009, Australia.
  • M. Hilal, Y. Errami, M. Benchagra and M. Maaroufi "Fuzzy Power Control For Doubly Fed Induction Generator Based Wind Farm," Journal of Theoretical and Applied Information Technology, 30th September 2012, Vol. 43 No.2, pp.321-330.
  • F. Valenciaga, C.A. Evangelista "Sliding active and reactive power control of a wind energy conversion system", IET Control Theory and Applications, Vol.4, No.11, 2010, pp.2479-2490.
  • R. Palm, "Sliding mode fuzzy control," Fuzzy Systems, IEEE conference proceeding, Vol.2, 2002, pp. 1393-1398.
  • S. Arezki, M. Boudour, “Contribution to the improvement of the performances of a chain of conversion of energy fed by a double source”, 2nd International Conference on Advances in Energy Engineering (ICAEE 2011), December 2011, Bangkok , Thailand.
  • F. Piltan, N. Sulaiman, S. Roosta, A. Gavahian, S. Soltani, “Artificial Chattering Free on-line Fuzzy Sliding Mode Algorithm for Uncertain System: Applied in Robot Manipulator, International Journal of Engineering, Vol.5, No.5, 2011, pp.360-379.
  • L. Xu and P. Cartwright, "Direct Active and Reactive Power Control of DFIG for Wind Energy Generator", IEEE Transactions on Energy Conversion, Vol.21, No.3, September 2006, pp. 750–758.
There are 10 citations in total.

Details

Primary Language English
Journal Section Reviews
Authors

B. Belabbas This is me

Publication Date June 1, 2013
Published in Issue Year 2013 Volume: 1 Issue: 2

Cite

APA Belabbas, B. (2013). Hybrid Fuzzy sliding mode performance control applied to a DFIG system for the production and integrated wind energy into a power grid based three-level converters. Balkan Journal of Electrical and Computer Engineering, 1(2), 93-101.

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