DocumentCode
3679816
Title
Large-scale electromagnetic design optimization of PM machines over a target operating cycle
Author
Alireza Fatemi;Nabeel A. O. Demerdash;Dan M. Ionel;Thomas W. Nehl
Author_Institution
Department of Electrical and Computer Engineering, Marquette University Milwaukee, WI 53233
fYear
2015
Firstpage
4383
Lastpage
4390
Abstract
A novel automated design algorithm for application-based optimization of permanent magnet (PM) machines is presented in this paper. The proposed algorithm features precise performance evaluation of the potentially heavily saturated machines at high-energy-throughput operating zones using finite element (FE) techniques. First, the energy consumption function associated with the machine´s operating cycle is efficiently modeled by a number of representative load points using a k-means clustering algorithm. Subsequently, a new approach is developed to assess the performance of the machine at each representative load point with proper control to conform to practical operational constraints imposed by voltage and current limits of the motor-drive system. The developed algorithm is applicable to the optimization of any configuration of PM and synchronous reluctance motors over any conceivable operating cycle. Its effectiveness is demonstrated by optimizing the well-established reference/benchmark design represented by the 2004 Toyota Prius IPM motor configuration over a compound operating cycle consisting of common US driving schedules.
Keywords
"Torque","Traction motors","Reluctance motors","Algorithm design and analysis","Optimization","Permanent magnet motors"
Publisher
ieee
Conference_Titel
Energy Conversion Congress and Exposition (ECCE), 2015 IEEE
ISSN
2329-3721
Electronic_ISBN
2329-3748
Type
conf
DOI
10.1109/ECCE.2015.7310279
Filename
7310279
Link To Document