DocumentCode :
1527883
Title :
Stochastic Modeling of Soft Magnetic Properties of Electrical Steels: Application to Stators of Electrical Machines
Author :
Ramarotafika, R. ; Benabou, A. ; Clénet, S.
Author_Institution :
L2EP, Arts et Metiers ParisTech, Lille, France
Volume :
48
Issue :
10
fYear :
2012
Firstpage :
2573
Lastpage :
2584
Abstract :
To take account of the uncertainties introduced on the soft magnetic materials properties (magnetic behavior law, iron losses) during the manufacturing process, the present work deals with the stochastic modeling of the magnetic behavior law B-H and iron losses of claw pole stator generator. Twenty-eight samples of slinky stator (SS) coming from the same production chain have been investigated. The used approaches are similar to those used in mechanics. The accuracy of existing anhysteretic models has been tested first using cross validation techniques. The well known iron loss separation model has been implemented to take into account the variability of the losses. Then, the multivariate Gaussian distribution is chosen to model the variability and dependencies between identified parameters, for both behavior law and iron loss models. The developed stochastic models allow predicting a 98% confidence interval for the considered samples.
Keywords :
Gaussian distribution; electric machines; magnetic devices; silicon alloys; soft magnetic materials; stators; steel; stochastic processes; anhysteretic models; claw pole stator generator; confidence interval; cross validation techniques; electrical machine stators; electrical steels; iron loss separation model; loss variability; magnetic behavior law B-H; manufacturing process; multivariate Gaussian distribution; production chain; slinky stator; soft magnetic material properties; stochastic modeling; Data models; Iron; Magnetic properties; Magnetomechanical effects; Mathematical model; Stators; Stochastic processes; Iron losses; magnetic behavior law; slinky stator; stochastic model; variability;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2012.2201734
Filename :
6208885
Link To Document :
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