DocumentCode :
1134647
Title :
Analysis of Axial Leakage in High-Speed Slotless PM Motors for Industrial Hand Tools
Author :
Wallmark, Oskar ; Kjellqvist, Peter ; Meier, Florence
Author_Institution :
Swedish Center of Excellence in Electr. Power Eng. (EKC2), R. Inst. of Technol. (KTH), Stockholm, Sweden
Volume :
45
Issue :
5
fYear :
2009
Firstpage :
1815
Lastpage :
1820
Abstract :
This paper presents an analysis of axial-leakage effects in high-speed slotless permanent-magnet (PM) motors for industrial hand-tool applications. Analytical predictions based on a 2-D model and results from a 3-D finite-element (3DFEM) simulation model are compared with experimental results from three series-produced PM motors. The reduction in flux density (resulting from 3DFEM simulations and measurements) outside the motor´s axial ends is substantial; the flux density has practically vanished only a few millimeters outside the stator lamination stack. To predict the resulting flux linkage, a simple winding model is presented where the winding is made up of a discrete number of winding layers. Using this winding model, it is verified that the reduction in flux linkage, manifested as a reduction in the back electromotive force, is not only dependent on the motor´s axial length but also that the effect is minor for slotless PM motors with dimensions suitable for hand-tool applications. The results are also supported by no-load line-to-line voltage measurements on the three PM motors.
Keywords :
finite element analysis; hand tools; permanent magnet motors; 3D finite element simulation model; axial leakage; back electromotive force; flux density; flux linkage; high-speed slotless PM motors; industrial hand tools; no-load line-to-line voltage measurements; permanent magnet motors; stator lamination stack; winding model; AC motor drives; high-speed motors; machine tools; machine windings; permanent-magnet (PM) motors; slotless windings;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2009.2027109
Filename :
5165020
Link To Document :
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