• DocumentCode
    2759069
  • Title

    Modeling and control of a small wind turbine

  • Author

    Arifujjaman, Md ; Iqbal, M. Tariq ; Ouaicoe, J.E. ; Khan, M. Jahangir

  • Author_Institution
    Newfoundland Memorial Univ., St. John´´s, Nfld.
  • fYear
    2005
  • fDate
    1-4 May 2005
  • Firstpage
    778
  • Lastpage
    781
  • Abstract
    This paper starts with a detailed survey of control methods commonly employed by commercially available small wind turbines. This detailed survey indicates that the most commonly used control method of small wind turbines is horizontal furling method. Such furling mechanism and resulting dynamics are described in the paper. Furling is used to control the aerodynamic power extraction from the wind. A dynamic model of a small wind turbine with furling dynamics is presented in this paper. Such small wind turbines are based on permanent magnet generators and their speed can be regulated using the load control. The extraction of maximum power output from such wind turbines is investigated using tip speed ratio control and hill-climbing control methods. The system is simulated in Matlab/Simulink to determine a suitable control strategy. Two dynamic controllers are designed and simulated. In the first method, a controller uses the wind speed and rotor speed information and controls the load in order to operate the wind turbine at the optimum tip speed ratio. The generator output is observed in varying wind condition as the furl angle increases and decreases. In the second method, a controller compares the output power of the turbine with the previous power and based on the comparison it controls the load. Using a hill-climbing algorithm the controller tries to extract the maximum power from the wind, while the generator output is observed as the furl angle increase or decreases. Finally, the output of these two controllers is compared and investigated to determine which controller leads to the best results
  • Keywords
    angular velocity control; load regulation; permanent magnet generators; power generation control; rotors; wind turbines; Matlab-Simulink simulation; aerodynamic power extraction; hill-climbing control methods; horizontal furling method; load control; permanent magnet generators; rotor speed information; tip speed ratio control; wind turbines; Aerodynamics; Load flow control; Mathematical model; Permanent magnets; Power generation; Rotors; Wind energy generation; Wind power generation; Wind speed; Wind turbines;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical and Computer Engineering, 2005. Canadian Conference on
  • Conference_Location
    Saskatoon, Sask.
  • ISSN
    0840-7789
  • Print_ISBN
    0-7803-8885-2
  • Type

    conf

  • DOI
    10.1109/CCECE.2005.1557044
  • Filename
    1557044