DocumentCode
3070623
Title
Cogging torque fast computation method for Surface Permanent Magnet machines based on winding function theory
Author
Branz, L. ; Bortolozzi, M. ; Tessarolo, Alberto
Author_Institution
R&D Dept., Sicor S.p.A., Trento, Italy
fYear
2013
fDate
5-7 June 2013
Firstpage
239
Lastpage
243
Abstract
Various analytical techniques have been proposed in the literature for cogging torque computation in Surface Permanent Magnet (SPM) machines. Among the various available methods, the ones found to be satisfactorily accurate are based on the Maxwell´s stress tensor, which involves both normal and tangential air-gap field and lead to quite involved calculation formulas. In this paper, a relatively simple alternative is proposed where permanent magnets are modeled as equivalent field circuits to which a well defined winding function can be associated. The approach leads to a plain cogging torque formulation where only the normal no-load air-gap flux density appears. The accuracy of the method is assessed by Finite Element (FE) analysis on some sample SPM machine geometries. The results are shown to match FE simulations with a satisfactory accuracy compared to Maxwell-stress-tensor-based analytical techniques available from the literature.
Keywords
Maxwell equations; air gaps; equivalent circuits; finite element analysis; machine windings; magnetic flux; permanent magnet machines; tensors; torque; Maxwell stress tensor-based analytical technique; SPM machine geometry; cogging torque fast computation method; equivalent field circuit; finite element analysis; normal air gap field; normal no-load air gap flux density; surface permanent magnet machine; tangential air gap field; winding function; Air gaps; Forging; Permanent magnets; Tensile stress; Torque; Windings; Analytical methods; Cogging torque; Electric machine analysis; Finite element analysis; Permanent magnet machines;
fLanguage
English
Publisher
ieee
Conference_Titel
Compatibility and Power Electronics (CPE), 2013 8th International Conference on
Conference_Location
Ljubljana
ISSN
2166-9538
Print_ISBN
978-1-4673-4911-6
Type
conf
DOI
10.1109/CPE.2013.6601162
Filename
6601162
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