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Modeling and design optimization of PM AC machines using computationally efficient- Finite element analysis

  • Gennadi Y. Sizov
  • , Dan M. Ionel
  • , Nabeel A.O. Demerdash

Producción científica: Conference contributionrevisión exhaustiva

23 Citas (Scopus)

Resumen

Computationally Efficient - Finite Element Analysis (CE-FEA) is detailed and demonstrated on a design optimization study for a sine-wave current regulated Interior Permanent Magnet (IPM) machine. In CE-FEA symmetries of electric and magnetic circuits of AC machines are fully exploited to minimize the number of required magnetostatic solutions. CE-FEA employs Fourier analysis and is capable of accurately estimating major steady-state performance parameters (average torque, profiles of cogging torque and torque ripples, back emf waveforms, and core losses), while preserving the main benefits of detailed finite element analysis. Significant reduction of simulation times is achieved (approx. two orders of magnitude) permitting a comprehensive search of large design spaces for optimization purposes. In a case-study IPM machine, three design variables, namely, stator tooth width, pole arc, and slot opening are used to optimize three performance parameters, namely, average torque, efficiency, and full-load torque ripple.

Idioma originalEnglish
Título de la publicación alojada2010 IEEE Energy Conversion Congress and Exposition, ECCE 2010 - Proceedings
Páginas578-585
Número de páginas8
DOI
EstadoPublished - 2010
Evento2010 2nd IEEE Energy Conversion Congress and Exposition, ECCE 2010 - Atlanta, GA, United States
Duración: sept 12 2010sept 16 2010

Serie de la publicación

Nombre2010 IEEE Energy Conversion Congress and Exposition, ECCE 2010 - Proceedings

Conference

Conference2010 2nd IEEE Energy Conversion Congress and Exposition, ECCE 2010
País/TerritorioUnited States
CiudadAtlanta, GA
Período9/12/109/16/10

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. Affordable and clean energy
    Affordable and clean energy

ASJC Scopus subject areas

  • Energy Engineering and Power Technology
  • Renewable Energy, Sustainability and the Environment

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