DocumentCode
1513952
Title
Calculation of losses in ferro- and ferrimagnetic materials based on the modified Steinmetz equation
Author
Reinert, Jürgen ; Brockmeyer, Ansgar ; De Doncker, Rik W A A
Author_Institution
Emotron AB, Helsingborg, Sweden
Volume
37
Issue
4
fYear
2001
Firstpage
1055
Lastpage
1061
Abstract
This paper discusses the influence of nonsinusoidal flux waveforms on the remagnetization losses in ferro- and ferrimagnetic materials of inductors, transformers, and electrical machines used in power electronic applications. The nonsinusoidal changes of flux originate from driving these devices by nonsinusoidal voltages and currents at different switching frequencies. A detailed examination of a dynamic hysteresis model shows that the physical origin of losses in magnetic material is the average rate of remagnetization rather than the remagnetization frequency. This principle leads to a modification of the most common calculation rule for magnetic core losses, i.e., to the “modified Steinmetz equation” (MSE). In the MSE, the remagnetization frequency is replaced by an equivalent frequency which is calculated from the average remagnetization rate. This approach allows, for the first time, the calculation of the losses in the time domain for arbitrary waveforms of flux while using the available set of parameters of the classical Steinmetz equation. DC premagnetization of the material, having a substantial influence on the losses, can also be included. Extensive measurements verify the MSE presented in this paper
Keywords
electric machines; ferrimagnetic materials; ferromagnetic materials; inductors; magnetic cores; magnetic flux; magnetic leakage; magnetisation; transformers; DC premagnetization; arbitrary flux waveforms; average remagnetization rate; dynamic hysteresis model; electrical machines; equivalent frequency; ferrimagnetic materials; ferromagnetic materials; inductors; losses calculation; magnetic core losses; magnetic material; modified Steinmetz equation; nonsinusoidal currents; nonsinusoidal flux waveforms; nonsinusoidal voltages; power electronic applications; switching frequencies; time domain; transformers; Equations; Ferrimagnetic materials; Inductors; Magnetic cores; Magnetic hysteresis; Magnetic losses; Magnetic materials; Power electronics; Switching frequency; Transformers;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/28.936396
Filename
936396
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