DocumentCode :
1554177
Title :
Losses and flux penetration in non-grain-oriented low-loss steel with nonsinusoidal excitation
Author :
O´Kelly, D.
Author_Institution :
Postgraduate Sch. of Electr. Eng., Bradford Univ., UK
Volume :
135
Issue :
4
fYear :
1988
fDate :
4/1/1988 12:00:00 AM
Firstpage :
199
Lastpage :
207
Abstract :
The cyclic magnetisation of non-grain-oriented low-loss steel laminations with nonsinusoidal excitation is examined, and theoretical values of loss, flux density and magnetising current waveshape are computed. The algorithm uses a simulation technique, previously described, which includes the effects of both hysteresis and eddy-current action with the premise that hysteresis is independent of frequency; i.e. the anomalous loss is negligible. Results are presented for a range of nonsinusoidal voltages including square, quasi-square and pulse-width-modulated square waveshapes for a wide range of frequencies up to several kilohertz. With a near-uniform value of flux density over a lamination the loss can be simply found for any specified voltage waveshape, but at higher frequencies this method generally overestimates the loss. Suppression of the triplen harmonic components in the magnetising current of three single-phase transformers energised by a three-phase supply with isolated star point is also examined
Keywords :
digital simulation; eddy current losses; electrical engineering computing; magnetic fields; magnetic flux; magnetic leakage; magnetisation; power transformers; steel; cyclic magnetisation; eddy-current; flux density; flux penetration; losses; magnetic hysteresis; magnetising current waveshape; nongrain oriented steel; nonsinusoidal excitation; nonsinusoidal voltages; pulse-width-modulated square waveshapes; simulation; single-phase transformers; steel laminations; triplen harmonic components;
fLanguage :
English
Journal_Title :
Physical Science, Measurement and Instrumentation, Management and Education - Reviews, IEE Proceedings A
Publisher :
iet
ISSN :
0143-702X
Type :
jour
Filename :
6235
Link To Document :
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