DocumentCode
1226432
Title
Comprehensive Dynamic Loss Model of Electrical Steel Applied to FE Simulation of Electrical Machines
Author
Belahcen, Anouar ; Arkkio, Antero
Author_Institution
Dept. of Electr. & Commun. Eng., Helsinki Univ. of Technol., Helsinki
Volume
44
Issue
6
fYear
2008
fDate
6/1/2008 12:00:00 AM
Firstpage
886
Lastpage
889
Abstract
This paper presents a dynamic loss model of electrical steel that can be used with the transient finite-element simulation of electrical machines. The model is used to compute the iron losses in a 37-kW induction machine fed from a sinusoidal and frequency converter voltage supply at different frequencies and loads. The computed losses are compared with results from conventional iron loss computation method based on harmonic analysis as well as with measured losses. The presented dynamic model is based on the investigation of different measurement results as well as on phenomenological backgrounds and analogies. The model is tuned to account for the rotational losses and thus can be used with arbitrary wave form or loci of the magnetic flux density vector (as is the case in the iron core of electrical machines). The parameters of the model are identified from measurements and can be stress dependent to account for the effect of mechanical stresses on the losses in magnetic materials. The presented model differs from previously presented ones in a way that the losses can be calculated at any time and not as an average over a period of the magnetic flux density.
Keywords
asynchronous machines; finite element analysis; internal stresses; magnetic flux; steel; FeCJk; dynamic loss model; electrical machines; electrical steel; frequency converter; harmonic analysis; induction machine; iron losses; magnetic flux density; mechanical stresses; power 37 kW; rotational losses; sinusoidal converter; transient finite-element simulation; Dynamic model; electrical machines; electrical steel; hysteresis; losses; time-stepping;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2007.916358
Filename
4526799
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