DocumentCode
1759895
Title
Influence of Rotor-Sleeve Electromagnetic Characteristics on High-Speed Permanent-Magnet Generator
Author
Weili Li ; Hongbo Qiu ; Xiaochen Zhang ; Junci Cao ; Sainan Zhang ; Ran Yi
Author_Institution
Beijing Jiaotong Univ., Beijing, China
Volume
61
Issue
6
fYear
2014
fDate
41791
Firstpage
3030
Lastpage
3037
Abstract
Alloy rotor sleeves are used extensively in high-speed permanent-magnet machines since they could fasten the permanent magnets availably. However, it is inevitable that eddy-current losses will be generated in the sleeve, which may make the permanent magnets overheated. In order to reduce the rotor eddy-current losses, this paper focuses on the influence of the rotor-sleeve electromagnetic characteristics. Taking a high-speed permanent-magnet generator (HSPMG) as an example, the variations of output performance and rotor eddy-current losses were analyzed when the generator adopts the steel sleeve and the copper-iron alloy sleeve, respectively, and therewith, the principles of the variations were exposed. Then, the rotor eddy-current losses were further analyzed when the generator sleeve conductivity was changed. The worst range of the sleeve conductivity was also given, in which the rotor eddy-current losses were the largest. Additionally, the increase of the sleeve permeability could reduce the main magnetic circuit reluctance and improve the operating point of permanent magnets. On the other hand, it can increase the pole-to-pole flux leakage dramatically. So, the generator performance should be analyzed by considering the two factors when the rotor-sleeve permeability was different.
Keywords
copper alloys; eddy current losses; permanent magnet generators; permanent magnets; permeability; rotors; steel; alloy rotor sleeves; copper-iron alloy sleeve; flux leakage; generator sleeve conductivity; high-speed permanent magnet generator; permanent magnets; rotor eddy-current losses; rotor sleeve electromagnetic characteristics; rotor-sleeve permeability; steel sleeve; Conductivity; Eddy currents; Generators; Metals; Permanent magnets; Permeability; Rotors; Eddy-current losses; electromagnetic field; high-speed permanent-magnet generator (HSPMG);
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2013.2253074
Filename
6480858
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