• DocumentCode
    1084078
  • Title

    Sliding Mode Power Control of Variable-Speed Wind Energy Conversion Systems

  • Author

    Beltran, Brice ; Ahmed-Ali, Tarek ; Benbouzid, Mohamed El Hachemi

  • Author_Institution
    Univ. of Western Brittany, Brest
  • Volume
    23
  • Issue
    2
  • fYear
    2008
  • fDate
    6/1/2008 12:00:00 AM
  • Firstpage
    551
  • Lastpage
    558
  • Abstract
    This paper addresses the problem of controlling power generation in variable-speed wind energy conversion systems (VS-WECS). These systems have two operation regions depending on the wind turbine tip-speed ratio. They are distinguished by minimum phase behavior in one of these regions and a nonminimum phase in the other one. A sliding mode control strategy is then proposed to ensure stability in both operation regions and to impose the ideal feedback control solution despite model uncertainties. The proposed sliding mode control strategy presents attractive features such as robustness to parametric uncertainties of the turbine and the generator as well as to electric grid disturbances. The proposed sliding mode control approach has been simulated on a 1.5-MW three-blade wind turbine to evaluate its consistency and performance. The next step was the validation using the National Renewable Energy Laboratory (NREL) wind turbine simulator called the fatigue, aerodynamics, structures, and turbulence code (FAST). Both simulation and validation results show that the proposed control strategy is effective in terms of power regulation. Moreover, the sliding mode approach is arranged so as to produce no chattering in the generated torque that could lead to increased mechanical stress because of strong torque variations.
  • Keywords
    feedback; power control; variable structure systems; wind power; NREL; National Renewable Energy Laboratory; VS-WECS; ideal feedback control; mechanical stress; power regulation; sliding mode control; sliding mode power control; variable-speed wind energy conversion systems; wind turbine tip-speed ratio; Power generation control; sliding mode control; wind energy conversion system;
  • fLanguage
    English
  • Journal_Title
    Energy Conversion, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8969
  • Type

    jour

  • DOI
    10.1109/TEC.2007.914163
  • Filename
    4458228