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Armature reaction magnetic field and inductance of tubular linear synchronous machines with axially magnetized permanent magnets accounting for flux-passing iron pole effect

Authors
Shin, K.-H.Kim, K.-H.Hong, K.Choi, J.-Y.
Issue Date
2017
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
Analytical model; Armature reaction field; Inductance; Tubular linear synchronous machine
Citation
IEEE CEFC 2016 - 17th Biennial Conference on Electromagnetic Field Computation
Journal Title
IEEE CEFC 2016 - 17th Biennial Conference on Electromagnetic Field Computation
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/8491
DOI
10.1109/CEFC.2016.7816100
ISSN
0000-0000
Abstract
This paper presents an armature reaction magnetic field and inductance of tubular linear synchronous machines with axially magnetized permanent magnets, accounting for the flux-passing iron pole effect. The armature reaction field can be derived using a subdomain model and boundary conditions. On the basis of the obtained armature reaction field solution, the inductance can also be derived. Analytical results for the flux density distribution, as compared with the one-dimensional permeance method, are validated extensively with the results of finite element analysis (FEA). The validity of the analytical method presented in this paper is verified by comparing it with the results of the FEA and an experiment. ? 2016 IEEE.
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