DocumentCode
1447021
Title
Equivalent circuits for transformers based on one-dimensional propagation: accounting for multilayer structure of windings and ferrite losses
Author
Schellmanns, Ambroise ; Fouassier, Patrick ; Keradec, Jean-Pierre ; Schanen, Jean-Luc
Author_Institution
Lab. d´´Electrotech. de Grenoble, CNRS, St. Martin d´´Heres, France
Volume
36
Issue
5
fYear
2000
fDate
9/1/2000 12:00:00 AM
Firstpage
3778
Lastpage
3784
Abstract
In a recent paper, we linked the electromagnetic power propagation in a two-winding transformer to an electrical equivalent circuit. This study pointed out that an electrical equivalent circuit can be associated with each layer (conductor, insulator, ferrite) passed through, and that connecting all of these elementary circuits together leads to the equivalent circuit of the entire component. Propagation was assumed to be one-dimensional, and each winding was supposed to be made of a single layer of turns. In this paper, we first investigate the consequences of the multilayer structure of each winding, following the above approach. Skin and proximity effects are taken into account this way, and theoretical results are compared with experimental data. Then, we focus on the representation of the linear behavior of the ferrite core. On the basis of an experimental approach, it is shown that an accurate equivalent circuit must include a capacitor. This is consistent with the high permittivity of the material
Keywords
dielectric losses; eddy current losses; equivalent circuits; ferrite devices; skin effect; transformer cores; transformer magnetic circuits; transformer windings; dielectric losses; eddy currents; electromagnetic power propagation; equivalent circuit; ferrite core; ferrite losses; ferrite magnetic circuit; impedance; linear behavior; lumped-element circuits; one-dimensional propagation; proximity effects; single layer of turns; skin effects; two-winding transformer; winding multilayer structure; Conductors; Dielectrics and electrical insulation; Electromagnetic propagation; Equivalent circuits; Ferrites; Joining processes; Nonhomogeneous media; Power transformer insulation; Proximity effect; Skin;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.908359
Filename
908359
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