DocumentCode :
1450297
Title :
Harmonic Iron Loss Analysis of Electrical Machines for High-Speed Operation Considering Driving Condition
Author :
Seo, Jang-Ho ; Chung, Tae-Kyung ; Lee, Cheol-Gyun ; Jung, Sang-Yong ; Jung, Hyun-Kyo
Author_Institution :
Sch. of Electr. Eng. & Comput. Sci., Seoul Nat. Univ., Seoul, South Korea
Volume :
45
Issue :
10
fYear :
2009
Firstpage :
4656
Lastpage :
4659
Abstract :
In this paper, we proposed new harmonic iron loss calculation methods for electrical machines. The new methods based on the concept of variable loss coefficients due to their flux density and frequency estimate harmonic iron loss in the time domain and the frequency domain. In order to verify the performance of the proposed method, we calculated the iron loss with conventional methods. Then, the estimated iron losses were compared with the experimental data. It was clarified that the proposed methods are more effective than the conventional methods at high-speed operation. Based on these newly proposed methods, we analyzed the iron loss of the machine for electric vehicle (EV) according to its driving condition. From the analysis results, it was shown that the harmonic iron losses of stator are larger than before at field-weakening region. In addition, it was revealed that rotor iron loss mainly induced by stator slot ripples does not show strong dependence on the current angle and only varied primarily according to the speed.
Keywords :
electric machines; electric vehicles; driving condition; electric vehicle; electrical machines; flux density; frequency domain; frequency estimate harmonic iron loss; harmonic iron loss analysis; high-speed operation; stator slot ripples; time domain; variable loss coefficients; Electric vehicle (EV); electrical machine; field-weakening control; iron loss; maximum torque control; variable loss coefficient;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2009.2022316
Filename :
5257177
Link To Document :
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