• DocumentCode
    157414
  • Title

    Thermal model of stator slot for small synchronous reluctance machine

  • Author

    Rasid, M.A.H. ; Ospina, A. ; El Kadri Benkara, K. ; Lanfranchi, V.

  • Author_Institution
    Lab. d´Electromec. de Compiegne, Univ. de Technol. de Compiegne, Compiègne, France
  • fYear
    2014
  • fDate
    2-5 Sept. 2014
  • Firstpage
    2199
  • Lastpage
    2204
  • Abstract
    Machine slot thermal behavior is one of the most complex issues in electrical machine thermal modeling. It may however take advantages of various studies on composite winding homogenization to make the slot modeling less complex. In order to reduce computation time of winding, many has developed and adopted winding homogenization method. The composite windings are assimilated to a single homogenous body with an equivalent thermal conductivity, using either analytical or numerical approach. A direct application of these winding homogenization methods on the slot of an electrical machine thermal model has however several limitations. In this paper, a winding homogenization method are chosen and applied on a Syncrel machine stator slot model. Experimental results obtained using the machine prototype submitted to direct current test has shown that modifications have to be made to the homogenized slot model. The proposed modifications on the slot model are presented and the model was tested with different thermal operating points so as to validate the modifications.
  • Keywords
    machine theory; numerical analysis; reluctance machines; stators; thermal conductivity; Syncrel machine stator slot model; analytical approach; composite winding homogenization method; electrical machine thermal modeling; equivalent thermal conductivity; homogenized slot model; machine slot thermal behavior; numerical approach; single homogenous body; small synchronous reluctance machine; Analytical models; Atmospheric modeling; Data models; Stator windings; Thermal conductivity; Windings; automotive application; copper losses; identification; nodal method; slot homogenization; synchronous reluctance machine; thermal model;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Machines (ICEM), 2014 International Conference on
  • Conference_Location
    Berlin
  • Type

    conf

  • DOI
    10.1109/ICELMACH.2014.6960489
  • Filename
    6960489