DocumentCode :
799
Title :
Core Loss Estimation of Various Materials Magnetized With the Symmetrical/Asymmetrical Rectangular Voltage
Author :
Hatakeyama, T. ; Onda, Kohei
Author_Institution :
Hitachi Res. Lab., Hitachi Ltd., Hitachi, Japan
Volume :
29
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
6628
Lastpage :
6635
Abstract :
Core losses were estimated for various magnetic core materials magnetized with a duty-cycle-changed symmetrical and asymmetrical rectangular voltage. Each voltage waveform is applied to a transformer and a dc reactor in a dc/dc converter, respectively. Core losses were measured for the four typical magnetic core materials often used in power electronics: 3% grain-oriented silicon steel sheet, 6.5% silicon steel sheet, amorphous material, and nanocrystalline material. Measurement results were evaluated by the loss separation model. An approximation method was proposed for the core loss magnetized with asymmetrical rectangular voltage that divides the total core loss into the core loss of the magnetization from -Bm to Bm and that of the magnetization from Bm to -Bm. This method was confirmed to approximate the core loss accurately except for silicon steel sheet in an extreme duty cycle condition. However, it was demonstrated experimentally that dc component of the magnetic field strength caused this error.
Keywords :
DC-DC power convertors; amorphous semiconductors; approximation theory; magnetic fields; magnetic materials; nanostructured materials; power electronics; power transformers; silicon; steel; transformer cores; Si; amorphous material; approximation method; core loss estimation; dc reactor; dc-dc converter; grain-oriented silicon steel sheet; loss separation; magnetic core materials; magnetic field strength; nanocrystalline material; power electronics; power transformer; symmetrical-asymmetrical rectangular voltage; voltage waveform; Core loss; Magnetic cores; Magnetization; Nanostructured materials; Silicon; Steel; Core loss calculation; dc reactor; high-frequency transformer; rectangular voltage magnetization;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2014.2306755
Filename :
6746649
Link To Document :
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