Abstract

This work introduces a novel permanent-magnet synchronous machine (PMSM) architecture that employs rotational asymmetry to increase the torque density output in constant power variable speed applications. A population based multi-objective design optimization algorithm is used to design and analyze the new machine topology. A number of design studies are presented to show that the proposed machine structure outperforms a conventional PMSM machine. Validation of the analytical machine design model using a three dimensional finite element analyses is performed and the results are presented. Finally, a case study in which a hybrid electric bus traction motor is designed is presented.

Details

Title
An asymmetric salient permanent magnet synchronous machine for wide constant power speed range applications
Author
Alsawalhi, Jamal Yousuf
Year
2014
Publisher
ProQuest Dissertations & Theses
ISBN
978-1-321-63775-5
Source type
Dissertation or Thesis
Language of publication
English
ProQuest document ID
1667442715
Copyright
Database copyright ProQuest LLC; ProQuest does not claim copyright in the individual underlying works.