DocumentCode :
868530
Title :
An improved approach to power losses in magnetic laminations under nonsinusoidal induction waveform
Author :
Fiorillo, Fausto ; Novikov, Alexander
Author_Institution :
Mater. Dept., Istituto Elettrotecnico Nazionale Galileo Ferraris, Torino, Italy
Volume :
26
Issue :
5
fYear :
1990
fDate :
9/1/1990 12:00:00 AM
Firstpage :
2904
Lastpage :
2910
Abstract :
It is shown that it is possible to accurately predict power losses in ferromagnetic laminations under nonsinusoidal magnetic flux by specifically considering the dependence of hysteresis, classical, and excess loss components (Ph, Pc, and Pe, respectively) on the magnetic induction derivative B˙. Basically, it is assumed, through generalization of experimental and theoretical results under sinusoidal induction, that Ph is proportional to the average value of the instantaneous induction derivative, Pc is proportional to the average value of the square of the instantaneous induction derivative, and Pe is proportional to the average value of the instantaneous induction derivative to the three-halves power. An analytical expression for total power losses under distorted flux is consequently worked out. Experiments are reported concerning grain-oriented, nonoriented, and amorphous laminations, with distortion introduced by a variable amount of the third harmonic flux component
Keywords :
electromagnetic induction; ferromagnetic properties of substances; laminations; losses; magnetic flux; magnetic hysteresis; amorphous laminations; excess loss; ferromagnetic laminations; grain orientated laminations; hysteresis loss; instantaneous induction derivative; nonorientated laminations; nonsinusoidal induction waveform; nonsinusoidal magnetic flux; power losses; third harmonic flux component; Amorphous magnetic materials; Distortion measurement; Frequency; Lamination; Magnetic domains; Magnetic flux; Magnetic hysteresis; Magnetic losses; Magnetic materials; Magnetic separation;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.104905
Filename :
104905
Link To Document :
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