DocumentCode :
3560243
Title :
Harmonic Distortion of Magnetizing Current in Combined Wound Toroidal Cores
Author :
Jaroslaw, Chojnacki ; Piotr, Liszewski ; Marian, Soinski ; Roman, Rygal ; Wojciech, Pluta ; Stan, Zurek ; Przemyslaw, Pinkosz
Author_Institution :
ABB Ltd., Warsaw
Volume :
44
Issue :
11
fYear :
2008
Firstpage :
3816
Lastpage :
3819
Abstract :
The aim of this paper is to compare the properties of cores designed for medium voltage current transformers. The cores were made of SiFe, NiFe polycrystalline strips, and nanocrystalline strips. The properties of cores combined of two different soft magnetic materials, i.e., grain-oriented electrical steel SiFe and NiFe polycrystalline strip (SiFe+NiFe) or grain-oriented electrical steel and Fe-based nanocrystalline strip (SiFe+Nano) also have been determined. The content of harmonic distortions in a magnetizing current in various combinations of toroidal cores is presented. The lowest harmonic distortions occur in cores with grain-oriented electrical steel SiFe and the largest - in cores with NiFe polycrystalline strips among all the tested magnetic circuits. Taking into consideration magnetic properties, the best solution is the SiFe+Nano combined cores this is because of the content of harmonic distortions in comparison to SiFe+NiFe and high values of relative magnetic permeability and the shape of the magnetization curve supporting the use of SiFe+Nano in instrument transformers.
Keywords :
iron alloys; magnetisation; nickel alloys; silicon compounds; soft magnetic materials; transformer cores; NiFe; SiFe; combined wound toroidal cores; harmonic distortion; magnetizing current; nanocrystalline strips; polycrystalline strips; soft magnetic materials; transformers; Current transformers; ferromagnetic materials; harmonic distortion; magnetic circuits; magnetic cores; magnetic fields; magnetic losses; magnetic permeability; nanostructured materials; permalloy; soft magnetic materials;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2002189
Filename :
4717595
Link To Document :
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