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Robust Design Optimization of Surface-mounted Permanent Magnet Synchronous Motor Using Uncertainty Characterization by Bootstrap Method

Title
Robust Design Optimization of Surface-mounted Permanent Magnet Synchronous Motor Using Uncertainty Characterization by Bootstrap Method
Author
임명섭
Keywords
Kriging surrogate model; percentile bootstrap interval; robust design optimization; surface-mounted permanent magnet synchronous motor; uncertainty characterization;
Issue Date
2020-12
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Citation
IEEE TRANSACTIONS ON ENERGY CONVERSION, v. 35, no. 4, page. 2056-2065
Abstract
The uncertainty of electric machines and drives is inherent in its manufacturing and assembly. Robust design optimization finds the design under these uncertainties that results in a minimal variance while satisfying all design constraints. To obtain an accurate result, the statistical model is significantly important. Moreover, several uncertainties from a single source can be involved owing to multiple components in the electrical machines and drives. However, this can drastically increase the numerical cost for the conventional robust design optimization technique. In this work an uncertainty characterization method is developed by using a percentile bootstrap interval to consider the experimental results from few prototypes and a kriging surrogate model to reduce the computational cost. Then the sample-based robust design optimization is applied to the surface-mounted permanent magnet synchronous motor. It is seen that the developed methods can efficiently work to minimize both the mean and variance of the cogging torque while satisfying other design constraints.
URI
https://ieeexplore.ieee.org/document/9123585https://repository.hanyang.ac.kr/handle/20.500.11754/173807
ISSN
0885-8969; 1558-0059
DOI
10.1109/TEC.2020.3004342
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > AUTOMOTIVE ENGINEERING(미래자동차공학과) > Articles
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