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An Optimal Design of Large Scale Permanent Magnet Pole Shape Using Adaptive Response Surface Method With Latin Hypercube Sampling Strategy

Authors
Shin, Pan SeokWoo, Sung HyunKoh, Chang Seop
Issue Date
Mar-2009
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
BLDC motor; cogging torque; Latin hypercube sampling; optimization; Pareto-optimization; response surface method
Citation
IEEE TRANSACTIONS ON MAGNETICS, v.45, no.3, pp.1214 - 1217
Journal Title
IEEE TRANSACTIONS ON MAGNETICS
Volume
45
Number
3
Start Page
1214
End Page
1217
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/21898
DOI
10.1109/TMAG.2009.2012565
ISSN
0018-9464
Abstract
The Latin hypercube sampling (LHS) strategy is applied to the optimization of a magnet pole shape of large scale BLDC motor to minimize the cogging torque with an adaptive response surface method. In the strategy, the qualities of sampling points are evaluated in the viewpoint of uniform space-filling by using Min-distance and Max-distance metrics, and optimum sampling points are obtained in Pareto-optimal sense. An adaptive sampling point insertion is also achieved utilizing design sensitivities computed by using finite element method to get a reasonable response surface with a relatively small number of sampling points. The LHS strategy is incorporated with (I + lambda) evolution strategy, and applied to the permanent magnet pole shape optimization of 6 MW BLDC motor, and the results are compared with those of other algorithms.
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