• DocumentCode
    3384126
  • Title

    Optimal Control Study for Fractional Frequency Wind Power System

  • Author

    Song, Zhuoyan ; Wang, Xifan ; Teng, Yufei ; Ning, Lianhui ; Meng, Yongqing

  • Author_Institution
    Dept. of Power Eng., Xi´´an Jiaotong Univ., Xi´´an, China
  • fYear
    2012
  • fDate
    27-29 March 2012
  • Firstpage
    1
  • Lastpage
    5
  • Abstract
    Fractional Frequency Transmission System (FFTS), is suitable to integrate the wind farm into grid, which uses low frequency, e.g. 50/3 Hz. The AC power of fractional frequency is transferred to industrial frequency power, and sent to the power grid by cycloconverter. The paper firstly discusses the structure of the fractional frequency wind power system (FFWPS), which is combined with wind turbine generators and FFTS. In FFWPS, the multi-pole permanent magnet direct-drive synchronous generator (PMSG) wind turbine without converter produces AC power of fractional frequency, and the rotation speed of PMSG is controlled by cycloconverter. Subsequently, the design principle of FFWPS controller is demonstrated. Abiding by the principle of power optimization, the multi-machine optimal speed scheme (MOSS) is proposed, and the simulation model of FFWPS is built in PSCAD/EMTDC. The results of simulation show that, in different wind conditions, PMSG wind turbines could capture wind energy as much as possible when using MOSS, which presents a new method that a single cycloconverter could control multi wind turbines in FFWPS.
  • Keywords
    optimal control; permanent magnet generators; power generation control; power grids; synchronous generators; wind turbines; AC power; FFTS; FFWPS controller; MOSS; PMSG; PSCAD EMTDC simulation; cycloconverter; fractional frequency transmission system; fractional frequency wind power system; industrial frequency power; multimachine optimal speed scheme; multipole permanent magnet direct-drive synchronous generator; optimal control; power grid; power optimization; wind turbine generators; Frequency control; Generators; Mathematical model; Rotors; Wind power generation; Wind speed; Wind turbines;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power and Energy Engineering Conference (APPEEC), 2012 Asia-Pacific
  • Conference_Location
    Shanghai
  • ISSN
    2157-4839
  • Print_ISBN
    978-1-4577-0545-8
  • Type

    conf

  • DOI
    10.1109/APPEEC.2012.6306922
  • Filename
    6306922