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Topology Optimization Combined with a Parametric Algorithm for Industrial Synchronous Reluctance Motor Design

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Abstract
In this paper, we propose combining topology optimization with a parametric algorithm (TOCPA) to design an industrial synchronous reluctance motor (SynRM) that satisfies super-premium efficiency (IE4). TOCPA consists of two main processes. An improved niching algorithm is proposed as an existing parametric algorithm, and multiple optimal points were identified quickly and effectively within the design range specified by the user. Existing parametric algorithms lack the ability to find unpredictable new optimal shapes; therefore, topology optimization has been added. TOCPA converges the two optimization methods to compensate for the shortcomings of each and maximizes the advantages. In addition, the boundary surface ON–OFF method is applied to accelerate the topology optimization process. Subsequent ratio-based smoothing techniques smooth out discontinuous interfaces and remove clusters to improve the torque characteristics and reduce the manufacturing difficulty. Finally, the torque ripple was reduced using the skew technique, and mechanical stability was confirmed using a stress analysis. An IE4 industrial SynRM was successfully designed using TOCPA.
Author(s)
Tae-Hee LeeDong-Kuk LimKi-Young MoonKyung-Won Jeon
Issued Date
2022
Type
Article
Keyword
niching algorithmON–OFF methodsmoothing methodsynchronous reluctance motortopology optimization
DOI
10.3390/pr10040746
URI
https://oak.ulsan.ac.kr/handle/2021.oak/15466
Publisher
PROCESSES
Language
영어
ISSN
2227-9717
Citation Volume
10
Citation Number
4
Citation Start Page
1
Citation End Page
14
Appears in Collections:
Engineering > Engineering
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