• DocumentCode
    1295416
  • Title

    DC-link Voltage Control of a Full Power Converter for Wind Generator Operating in Weak-Grid Systems

  • Author

    Xibo Yuan ; Fei Wang ; Boroyevich, D. ; Yongdong Li ; Burgos, R.

  • Author_Institution
    Center for Power Electron. Syst., Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
  • Volume
    24
  • Issue
    9
  • fYear
    2009
  • Firstpage
    2178
  • Lastpage
    2192
  • Abstract
    When the wind power accounts for a large portion of the grid power, it may need to help the grid voltage and frequency regulation. This paper investigates a permanent-magnet wind generator with a full power voltage-source converter in weak-grid mode, where the DC-link voltage needs to be controlled from the generator side instead of the grid side. The energy relationship of the wind generator, DC-link energy storage, and load is established. An intrinsic right-half-plane zero, together with the wind power characteristics, the mechanical system inertia, and the DC-link energy storage, is identified as the physical limitations for the control. With the understanding of the system energy relationship and limitations, a hybrid adaptive control algorithm is proposed that searches for the optimal generator acceleration to achieve the maximum wind generator power change rate to match the load power variation. The proposed control scheme is verified through simulation of a 1.5-MW wind system as well as through the experiment of a scaled 1-kW, DSP-/field-programmable-gate-array-controlled, permanent-magnet-generator-based test bed. The results show that it is feasible to regulate DC link by the generator-side converter through the generator speed control. Some important applications issues are also investigated, including the DC-link energy storage requirement, wind speed change impact, and control transition between the weak-grid and strong-grid modes.
  • Keywords
    adaptive control; angular velocity control; energy storage; frequency control; machine control; permanent magnet generators; power convertors; power generation control; power grids; voltage control; wind power plants; DC-link voltage control; DSP; energy storage; field-programmable-gate-array; frequency regulation; generator-side power converter; grid voltage regulation; hybrid adaptive control algorithm; load power variation; mechanical system inertia; optimal generator acceleration; permanent-magnet wind generator; power 1 kW; power 1.5 MW; voltage-source converter; weak-grid systems; DC generators; Energy storage; Frequency control; Hybrid power systems; Mesh generation; Power generation; Voltage control; Wind energy; Wind energy generation; Wind power generation; Permanent-magnet generator (PMG); voltage control; weak grid; wind power;
  • fLanguage
    English
  • Journal_Title
    Power Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8993
  • Type

    jour

  • DOI
    10.1109/TPEL.2009.2022082
  • Filename
    5200407