• DocumentCode
    3603286
  • Title

    Design and Analysis of a Cost-Effective Magnetless Multiphase Flux-Reversal DC-Field Machine for Wind Power Generation

  • Author

    Lee, Christopher H. T. ; Chau, K.T. ; Chunhua Liu

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Univ. of Hong Kong, Hong Kong, China
  • Volume
    30
  • Issue
    4
  • fYear
    2015
  • Firstpage
    1565
  • Lastpage
    1573
  • Abstract
    This paper proposes a new four-phase flux-reversal dc-field (FRDC) machine for the wind power generation applications. The key distinction of the proposed generator is to artfully design its stator pole and winding arrangement in a way imitating the permanent-magnet (PM) configurations, which the profound FRPM machine has. Hence, the proposed FRDC generator can provide the bipolar flux-linkage patterns and achieve performances similar to that of the high-quality FRPM generators. The proposed generator can regulate its controllable dc-field winding to vary its flux density effectively. Thus, it can achieve the constant-output-voltage characteristics at different situations in order to extend the battery life and to protect the power grid system. Without installation of any high-cost PM materials, the proposed magnetless FRDC generator can achieve better cost-effectiveness than its PM counterparts. The key performances of the proposed wind power generator are thoughtfully analyzed by the finite-element method, while the experimental prototype is also setup for verifications.
  • Keywords
    DC machines; finite element analysis; permanent magnet machines; power grids; stators; wind power plants; FRDC generator; FRPM machine; battery life; bipolar flux-linkage patterns; cost-effective magnetless multiphase flux-reversal DC-field machine; finite-element method; four-phase flux-reversal DC-field machine; permanent-magnet configurations; power grid system; stator pole; stator winding; wind power generation; wind power generator; Generators; Rotors; Stator windings; Wind power generation; Wind speed; Windings; Flux-reversal; magnetless; multiphase; wind power generation;
  • fLanguage
    English
  • Journal_Title
    Energy Conversion, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8969
  • Type

    jour

  • DOI
    10.1109/TEC.2015.2443155
  • Filename
    7131500