TY - JOUR
T1 - Proposal for benchmark model of laminated iron core and the large-scale and highly accurate magnetic field analysis
AU - Takahashi, Yasuhito
AU - Wakao, Shinji
AU - Fujiwara, Koji
AU - Kaimori, Hiroyuki
AU - Kameari, Akihisa
PY - 2007
Y1 - 2007
N2 - This paper describes a benchmark model proposed for the clarification of the characteristic of various methods for modeling the laminated iron core. In order to obtain a reference solution of the benchmark model, a large-scale non-linear magnetostatic field analysis with a fine mesh enough to represent the microscopic structure of the laminated iron core is carried out by using the hybrid finite element-boundary element (FE-BE) method combined with the fast multipole method (FMM) based on diagonal forms for translation operators. The computational costs and accuracy of two kinds of the homogenization methods are discussed comparing the reference solution. As a consequence, it is verified that the homogenization methods can analyze magnetic fields in laminated iron core within acceptable computational costs.
AB - This paper describes a benchmark model proposed for the clarification of the characteristic of various methods for modeling the laminated iron core. In order to obtain a reference solution of the benchmark model, a large-scale non-linear magnetostatic field analysis with a fine mesh enough to represent the microscopic structure of the laminated iron core is carried out by using the hybrid finite element-boundary element (FE-BE) method combined with the fast multipole method (FMM) based on diagonal forms for translation operators. The computational costs and accuracy of two kinds of the homogenization methods are discussed comparing the reference solution. As a consequence, it is verified that the homogenization methods can analyze magnetic fields in laminated iron core within acceptable computational costs.
KW - Fast multipole method
KW - Homogenization method
KW - Hybrid finite element-boundary element method
KW - Laminated iron core
KW - Nonlinear analysis
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U2 - 10.1541/ieejpes.127.894
DO - 10.1541/ieejpes.127.894
M3 - Article
AN - SCOPUS:34548251359
SN - 0385-4213
VL - 127
SP - 894-901+3
JO - IEEJ Transactions on Power and Energy
JF - IEEJ Transactions on Power and Energy
IS - 8
ER -