DocumentCode
1260758
Title
Axially laminated reluctance motor: analytical and finite-element methods for magnetic analysis
Author
Bianchi, Nicola ; Chalmers, Brian J.
Author_Institution
Dept. of Electr. Eng., Padova Univ., Italy
Volume
38
Issue
1
fYear
2002
fDate
1/1/2002 12:00:00 AM
Firstpage
239
Lastpage
245
Abstract
This paper describes two methods - one numerical, the other analytical for analyzing an axially laminated reluctance (ALAREL) motor. The numerical method, finite-element analysis (FEA), is generally used for estimation of the motor magnetic loading and capability for given stator currents. The accuracy of the FEA prediction is confirmed by a comparison between computed and measured magnetic quantities. The analytical model allows a rapid evaluation of the flux density in different parts of the motor, as well as of the capability for given stator current. It uses a distributed parameter network. The paper compares the results obtained from this network with those obtained from FEA. The methods agree well. Finally, the paper uses the two methods to investigate the effect of the quality of the magnetic material as well as the effect on motor performance of a nonuniform distribution of the laminations in the rotor. It shows that, with grain-oriented steel and nonuniformly distributed laminations, a higher flux linkage can be obtained. Consequently, lower current is required to develop the same motor torque
Keywords
finite element analysis; laminations; machine theory; magnetic fields; magnetic flux; parameter estimation; reluctance motors; torque; FEA prediction; analytical model; axially laminated reluctance motor; distributed parameter network; finite-element analysis; flux density evaluation; flux linkage; grain-oriented steel; magnetic fields; magnetic material quality; motor magnetic loading; motor performance; motor torque; nonuniformly distributed laminations; numerical method; parameter estimation; stator currents; synchronous motors; Analytical models; Finite element methods; Lamination; Magnetic analysis; Magnetic flux; Magnetic materials; Reluctance motors; Rotors; Stators; Steel;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.990113
Filename
990113
Link To Document