DocumentCode
1437371
Title
Optimum goodness criterion for linear-induction-motor design
Author
Boldea, I. ; Nasar, S.A.
Author_Institution
Polytechnical Institute `TR. VUIA¿, Department of Electrical Machines, Timisoara, Romania
Volume
123
Issue
1
fYear
1976
fDate
1/1/1976 12:00:00 AM
Firstpage
89
Lastpage
92
Abstract
Linear induction motors (l.i.ms) have many possible applications, ranging from low-speed cranes to high-speed ground-vehicle propulsion. However, in average and high-speed l.i.ms, the end effects cause considerable deterioration in the performance in low-slip regions. The paper introduces the concept of realistic goodness factor GR, which takes into account by appropriate coefficients the airgap leakage, secondary sheet skin effect and transverse edge effects. Approximations involved in obtaining GR are discussed and essentially a one-dimensional analysis is used. It is shown that the end-effect influence can be expressed as a function of GR, slip and the number of poles. An optimum goodness-factor criterion Go to aid an optimum l.i.m. design is proposed. It is demonstrated that Go can be achieved in practice, and leads to a good-performance, low-weight l.i.m. Numerical results based on a full-size existing l.i.m. test vehicle are given.
Keywords
electric propulsion; induction motors; linear motors; machine theory; optimisation; airgap leakage; linear induction motor design; optimum goodness criterion; secondary sheet skin effect; transverse edge effects;
fLanguage
English
Journal_Title
Electrical Engineers, Proceedings of the Institution of
Publisher
iet
ISSN
0020-3270
Type
jour
DOI
10.1049/piee.1976.0015
Filename
5252589
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