DocumentCode
1075740
Title
Impact of iron loss on behavior of vector controlled induction machines
Author
Levi, Ernil
Author_Institution
Sch. of Electr. Eng., Liverpool John Moores Univ., UK
Volume
31
Issue
6
fYear
1995
Firstpage
1287
Lastpage
1296
Abstract
Vector control principles are derived under the assumption that iron core loss may be neglected. The paper discusses effects of this simplification on performance of vector controlled induction machines. Indirect stator, air gap and rotor flux oriented control of a current fed machine are dealt with, with the emphasis on indirect rotor flux oriented control. Models of vector controlled induction machines that account for the iron loss are derived, and the mechanism of core loss influence on behavior of the drives is highlighted. It is shown that detuning caused by neglecting the core loss will inevitably take place. The amount of detuning is investigated for steady-state operation, for all three types of vector control. Some insight into detuning during transient operation is provided for the case of indirect rotor flux oriented induction machine. The concluding part of the paper presents a new decoupling circuit for indirect rotor flux oriented control. The circuit accounts for iron loss and thus eliminates detuning which is otherwise present
Keywords
air gaps; induction motors; losses; machine control; magnetic flux; magnetic variables control; rotors; stators; air gap flux oriented control; core loss; current fed machine; decoupling circuit; detuning; indirect rotor flux oriented control; indirect stator flux oriented control; iron loss impact; steady-state operation; vector controlled induction machines; Circuits; Core loss; Electric machines; Induction machines; Industry Applications Society; Iron; Machine vector control; Magnetic flux; Stator cores; Steady-state;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/28.475699
Filename
475699
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