DocumentCode :
58945
Title :
Study of the Copper Losses in a High-Speed Permanent-Magnet Machine With Form-Wound Windings
Author :
Gonzalez, Delvis A. ; Saban, Daniel M.
Author_Institution :
Danfoss Turbocor Compressors, Tallahassee, FL, USA
Volume :
61
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
3038
Lastpage :
3045
Abstract :
This paper investigates the profile of the copper losses in a 5.0-MW high-speed permanent-magnet machine with form-wound winding. The machine was tested, and the test data were used in conjunction with the results obtained from finite-element simulations to calculate the copper losses over the complete speed range. A retardation test in open-circuit conditions was performed to calculate the eddy current loss induced inside the stator coils by the rotor magnetic flux. The results demonstrate that this component of the copper losses is significantly high in form-wound machines at high-speed operation. The impact of the slot configuration on the proximity effect was also investigated. Open and semiclosed slots were compared, and the study results show that the high flux concentration in the slot opening region associated with semiclosed slots increases the proximity copper loss compared with the open-slot topology. At the end, this paper proposes the stator-alone test as a valid method to calculate resistance per phase at high frequency and estimates its increment over the direct current resistance.
Keywords :
coils; eddy current losses; finite element analysis; machine testing; magnetic flux; permanent magnet machines; stators; copper loss calculation; direct current resistance; eddy current loss calculation; finite-element simulation; form-wound winding; high-speed permanent-magnet machine; machine testing; open-circuit condition; open-slot topology configuration; power 5.0 MW; proximity effect; retardation testing; rotor magnetic flux; semiclosed slot configuration; stator coil; stator-alone testing; AC copper losses; high-speed electric machines; permanent-magnet (PM) machine; skin and proximity effects;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2013.2262759
Filename :
6515614
Link To Document :
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