• DocumentCode
    1518264
  • Title

    Modeling of Salient-Pole Wound-Rotor Synchronous Machines for Population-Based Design

  • Author

    Bash, Michelle L. ; Pekarek, Steven D.

  • Author_Institution
    P.C. Krause & Assoc., Dayton, OH, USA
  • Volume
    26
  • Issue
    2
  • fYear
    2011
  • fDate
    6/1/2011 12:00:00 AM
  • Firstpage
    381
  • Lastpage
    392
  • Abstract
    In recent years, population-based methods (evolutionary algorithms, particle swarm methods, etc.) have emerged as an effective tool for component and system design. Although relatively straightforward to apply, to capitalize on their potential, one must be able to explore a large design space. Herein, a magnetic equivalent circuit model is described to enable large-design-space exploration of salient-pole wound-rotor synchronous machine drive systems. Specifically, the model has been derived to evaluate machines with an arbitrary number of poles, stator slots (integer slots/pole/phase), winding layout, magnetic material, and a wide range of stator and rotor geometries. In addition, the model and solution technique have been structured to minimize the computational effort. An important attribute of the model is that saturation is handled with relatively few iterations and without the need for a relaxation factor to obtain convergence.
  • Keywords
    equivalent circuits; rotors; synchronous motor drives; large-design-space exploration; magnetic equivalent circuit model; magnetic material; pole number; population-based design; rotor geometry; salient-pole wound-rotor synchronous machine drive system; stator geometry; stator slot; winding layout; Electron tubes; Geometry; Integrated circuit modeling; Rotors; Stator windings; Windings; Magnetic equivalent circuit (MEC); mesh analysis; permeance; reluctance; synchronous machine;
  • fLanguage
    English
  • Journal_Title
    Energy Conversion, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8969
  • Type

    jour

  • DOI
    10.1109/TEC.2011.2105874
  • Filename
    5768138