• DocumentCode
    1612120
  • Title

    Azimuth weight coefficient based independent variable pitch control strategy

  • Author

    Qin Bin ; Guo Baishun

  • Author_Institution
    Sch. of Electr. & Inf. Eng., Hunan Univ. of Technol., Zhuzhou, China
  • fYear
    2013
  • Firstpage
    143
  • Lastpage
    147
  • Abstract
    In order to decrease the fatigue of units caused by imbalance loads, the weight number assignment variable-pitch control strategy based on the azimuth angle signal of the pitch was presented according to the aerodynamics principle, wind shear characteristic and tower shadow effect. First the collective pitch angle is acquired according to the output power approximately equal to the rated power, then the blade pitch angles are redistributed through the related weight number according to each wind turbine blades under different wind speed. So the collective pitch angle was transformed into the individual variable pitch angle. At last, the collective pitches and individual pitches systems are designed, and mathematical models are built using MATLAB. The simulation results show that the proposed strategy not only ensure the pitch angle to change with the wind speed and obtain the stable output power, but also reduce the loads of blade and prolong service life of wind turbine, it has better dynamic performance and static error than general collective pitch control and easy to implement.
  • Keywords
    aerodynamics; blades; performance index; position control; power system stability; variable structure systems; wind power; wind turbines; MATLAB; aerodynamics principle; azimuth weight coefficient; blade load reduction; blade pitch angle redistribution; collective pitch angle; dynamic performance; imbalance load; independent variable pitch control strategy; mathematical model; output power stability; pitch azimuth angle signal; service life; static error; tower shadow effect; unit fatigue; weight number assignment variable-pitch control strategy; wind shear characteristic; wind speed; wind turbine blade; Aerodynamics; Azimuth; Blades; Force; Poles and towers; Wind speed; Wind turbines; Matlab software; azimuth angle weight coefficient; individual variable-pitch control; load; tower shadow effect; wind shear effect;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Chinese Automation Congress (CAC), 2013
  • Conference_Location
    Changsha
  • Print_ISBN
    978-1-4799-0332-0
  • Type

    conf

  • DOI
    10.1109/CAC.2013.6775717
  • Filename
    6775717