• DocumentCode
    3561482
  • Title

    Winding Inductances of an Interior Permanent Magnet (IPM) Machine With Fractional Slot Concentrated Winding

  • Author

    Dutta, Rukmi ; Rahman, M.F. ; Chong, Lester

  • Author_Institution
    Sch. of Electr. Eng. & Telecom, Univ. of New South Wales, Sydney, NSW, Australia
  • Volume
    48
  • Issue
    12
  • fYear
    2012
  • Firstpage
    4842
  • Lastpage
    4849
  • Abstract
    This paper investigates inductance characteristics of a novel 14 pole/18 slot, fractional-slot concentrated-winding (FSCW) IPM machine. The variations of the self and mutual inductances were calculated analytically and also obtained from the finite element model. These results were compared with experimentally measured values of the self and mutual inductances of the prototype machine. Study of the inductance characteristics reveals that both self and mutual inductances vary with rotor positions nonsinusoidally. Presence of harmonics in the magnetomotive force (MMF) is responsible for this nonsinusoidal variation of inductances. The conventional distributed winding machine does not have these harmonics. This paper analyses the contribution of these harmonics in the Ld and Lq parameters in a dq-model of the prototype FSCW machine constructed. The self and mutual inductances were represented by a Fourier series in the inductance matrix of the machine for dq-transformation. It was seen that the difference between d- and q-axis inductance is mainly contributed by the harmonic terms of the mutual inductance.
  • Keywords
    Fourier series; harmonics; inductance; machine windings; permanent magnet machines; rotors; Fourier series; dq-transformation; finite element model; fractional slot concentrated winding; harmonics; interior permanent magnet machine; magnetomotive force; mutual inductance; prototype machine; rotor position; self inductance; winding inductances; Air gaps; Harmonic analysis; Inductance; Magnetic flux; Power capacitors; Rotors; Windings; Air-gap function; MMF harmonics; finite element method (FEM); fractional-slot concentrated winding (FSCW); inductance harmonics; interior permanent magnet (IPM) machine; magnetomotive force (MMF); mutual inductance; self inductance; space harmonics;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • Conference_Location
    6/6/2012 12:00:00 AM
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2012.2203140
  • Filename
    6213114