DocumentCode
1496503
Title
Use of Time-Harmonic Finite-Element Analysis to Compute Stator Winding Eddy-Current Losses Due to Rotor Motion in Surface Permanent-Magnet Machines
Author
Tessarolo, Alberto ; Agnolet, Freddie ; Luise, Fabio ; Mezzarobba, Mario
Author_Institution
Dept. of Ind. Eng. & Inf. Technol., Univ. of Trieste, Trieste, Italy
Volume
27
Issue
3
fYear
2012
Firstpage
670
Lastpage
679
Abstract
It is known from the literature that in electric machines with open stator slots, the air-gap flux partly enters the slot openings and induces eddy currents in the conductors placed closest to the air gap, possibly causing local overheating issues. For the study of such phenomenon, time-stepping finite-element analysis (TSFEA) is employed by many authors. This paper presents an alternative approach based on a set of time-harmonic finite-element analysis (THFEA) simulations. The proposed method can be applied to surface permanent-magnet machines and offers the advantage of a shorter computation time with respect to THFEA. It is also more suitable for being integrated into automatic design optimization programs. The accuracy of the approach is assessed by comparing stator eddy-current losses independently computed by THFEA and TSFEA for different machine geometries and operating conditions. Results obtained in the two ways are shown to be in good accordance.
Keywords
finite element analysis; machine insulation; optimisation; permanent magnet machines; rotors; stators; THFEA simulations; TSFEA; air-gap flux; automatic design optimization programs; electric machines; machine geometries; rotor motion; stator winding eddy-current losses; surface permanent-magnet machines; time-harmonic finite-element analysis; time-harmonic finite-element analysis simulations; time-stepping finite-element analysis; Coils; Computational modeling; Conductors; Magnetization; Rotors; Stator windings; Finite-element methods; losses; modeling; permanent-magnet machines; rotating machine transient analysis; synchronous machines;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/TEC.2012.2192498
Filename
6184297
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