• DocumentCode
    930662
  • Title

    Coupled-circuit-model simulation and airgap-field calculation of a dual-stator-winding induction machine

  • Author

    Wu, Z. ; Ojo, O.

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Tennessee Technol. Univ., Cookeville, TN, USA
  • Volume
    153
  • Issue
    3
  • fYear
    2006
  • fDate
    5/1/2006 12:00:00 AM
  • Firstpage
    387
  • Lastpage
    400
  • Abstract
    The computer-simulation model of the dual-stator-winding induction machine in which the space harmonics of the stator windings and those of the rotor circuits are accounted for has been presented. The winding-function method is used to calculate the inductances in the machine. The phase-voltage and torque equations thus obtained are further transformed to the rotor reference frame to facilitate simplicity of modelling and using an n×n complex-variable reference frame transformation. Simulation results of the no-load starting transient are presented with the response of the machine to a change in the load torque. The balance of the paper presents an approach, using the stator-winding and rotor-bar currents determined from the coupled-circuit model and the winding functions of the stator windings and the rotor loops, to generate the airgap flux density. A simplified correction scheme, using the B/H curve of the magnetic steel material to account for magnetic saturation in the airgap is introduced, improving the prediction accuracy. Some measurements of no-load and full-load flux densities confirm the computer simulation and FEA results.
  • Keywords
    air gaps; asynchronous machines; coupled circuits; digital simulation; finite element analysis; harmonics; rotors; stators; torque; B-H curve; FEA; airgap flux density; airgap-field calculation; complex-variable reference frame transformation; computer-simulation model; coupled-circuit-model simulation; dual-stator-winding induction machine; finite element analysis; full-load flux density; inductance; magnetic saturation; magnetic steel material; no-load starting transient; phase-voltage equation; rotor-bar current; space harmonics; torque equation; winding-function method;
  • fLanguage
    English
  • Journal_Title
    Electric Power Applications, IEE Proceedings -
  • Publisher
    iet
  • ISSN
    1350-2352
  • Type

    jour

  • DOI
    10.1049/ip-epa:20050466
  • Filename
    1629520