DocumentCode
50884
Title
Nonlinear Magnetostatic Analysis by Unified BIE Utilizing Potential Gap Due to Loop Currents
Author
Ishibashi, Koji ; Andjelic, Zoran ; Takahashi, Y. ; Tawada, Yoshihiro ; Yoshioka, Takashi ; Wakao, Shinji ; Fujiwara, Koji ; Ishihara, Yoshiyuki
Author_Institution
Corp. Res., ABB Switzerland Ltd., Baden, Switzerland
Volume
49
Issue
5
fYear
2013
fDate
May-13
Firstpage
1573
Lastpage
1576
Abstract
Since the line loop current is equivalent to the double layer charge, it gives an integral form of scalar potential. The segmental loop current on the interface between magnetic materials produces a potential gap, which works to give a boundary integral equation (BIE). By virtue of another potential gap due to a fictitious circulating current along the contour of cut-surface in the material, the excitation potential becomes single valued and the BIE becomes applicable to generic problems without any restriction. Regarding the nonlinear magnetic material as composed of segmental materials with different values of permeability, we get the same BIE for the nonlinear analysis as for the linear analysis. In order to check the adequacy and effectiveness of the nonlinear BIE, we solve a typical magnetostatic problem and compare the computed results with those by the conventional magnetic moment method.
Keywords
boundary integral equations; magnetic materials; magnetic moments; magnetic permeability; magnetostatics; boundary integral equation; conventional magnetic moment method; cut-surface contour; double layer charge; excitation potential; fictitious circulating current; generic problems; line loop current; nonlinear BIE; nonlinear magnetic material; nonlinear magnetostatic analysis; permeability; segmental loop current; segmental materials; Boundary integral equation; double layer charge; loop currents; nonlinear magnetostatic analysis;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2013.2242434
Filename
6514577
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