• DocumentCode
    19633
  • Title

    An Improved Performance Direct-Drive Permanent Magnet Wind Generator Using a Novel Single-Layer Winding Layout

  • Author

    Abdel-khalik, A.S. ; Ahmed, Shehab ; Massoud, Ahmed Mohamed ; Elserougi, Ahmed Abbas

  • Author_Institution
    Dept. of Electr. Eng., Alexandria Univ., Alexandria, Egypt
  • Volume
    49
  • Issue
    9
  • fYear
    2013
  • fDate
    Sept. 2013
  • Firstpage
    5124
  • Lastpage
    5134
  • Abstract
    Direct-drive permanent magnet (PM) generators have become a strong contender in medium and large rating wind energy conversion systems as they not only provide higher efficiency and annual energy production, but also reduce the operational and maintenance cost. PM generators with nonoverlap single-layer windings provide a cost-effective design variation that eases manufacturing, reduces torque ripples, enhances voltage quality, and provides fault tolerant capability. The performance of such machines depends mainly on the proper selection of the pole and slot numbers, which results in negligible coupling between phases. The preferred slots per phase per pole (SPP) ratios eliminate the effect of low order harmonics in the stator magnetomotive force (MMF), and thereby the vibration and stray loss are reduced. This paper proposes a new three-phase winding configuration based on the 20 slots/18 poles five-phase PM machine. The proposed design is compared with the well-known 24 slots/20 poles three-phase PM machine. The comparison shows that the proposed generator offers reduced torque ripples, improved output voltage quality, and less core loss for the same machine volume.
  • Keywords
    electric drives; harmonics suppression; permanent magnet generators; stators; torque; vibrations; wind power plants; 20 slots-18 poles five-phase PM machine; 24 slots-20 poles three-phase PM machine; MMF; PM generator; SPP ratio; direct-drive permanent magnet wind generator performance; fault tolerant capability; low order harmonics elimination; nonoverlap single-layer winding; single-layer winding layout; slots per phase per pole; stator magnetomotive force; stray loss reduction; three-phase winding configuration; torque ripple reduction; vibration reduction; voltage quality enhancement; wind energy conversion system; Cogging torque; permanent magnet (PM) machines; single layer winding; voltage quality; wind energy generation;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2013.2257823
  • Filename
    6497621