DocumentCode
3806960
Title
Analytical Solution for Cogging Torque in Surface Permanent-Magnet Motors Using Conformal Mapping
Author
Damir Zarko;Drago Ban;Thomas A. Lipo
Author_Institution
Zagreb Univ., Zagreb
Volume
44
Issue
1
fYear
2008
Firstpage
52
Lastpage
65
Abstract
We present an analytical method for the calculation of cogging torque in surface permanent-magnet (PM) motors. The cogging torque is calculated by integrating the Maxwell stress tensor inside the air gap. The principle of complex relative air-gap permeance derived from conformal transformation of the slot geometry is used to take into account the effect of slotting and to calculate the radial and tangential components of the air-gap flux density required for integration of the tangential component of the Maxwell stress tensor. We implemented the proposed analytical solution on a 7-kW four-pole surface PM motor and compared the results with finite-element solutions. We present an example of finding the optimal magnet angular span to yield minimum cogging torque as an example of the effectiveness of the method.
Keywords
"Forging","Torque","Permanent magnet motors","Conformal mapping","Tensile stress","Air gaps","Geometry","Magnetic analysis","Finite element methods","Magnetic flux"
Journal_Title
IEEE Transactions on Magnetics
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2007.908652
Filename
4407617
Link To Document