Abstract
Finite element analysis (FEA) is a commonly used method in motor design, offering relatively high computational accuracy. However, its high computational complexity and time-consuming nonlinear iteration is not conducive to the rapid and efficient design of motors. In this paper, an accelerated analysis and optimization framework for electric motor design based on surrogate-assisted model is presented. By training a surrogate model, the magnetic permeability distribution in each region of the motor can be predicted. These predicted values are then used as initial values in the motor performance analysis model, such as the high-precision reluctance network analysis (RNA) model, for iterative solutions. This significantly reduces the number of model iterations and accelerates the convergence process. Compared with other surrogate model methods that directly predict motor performance, the proposed method avoids the negative effect of prediction errors from the surrogate model on the results, achieving fast and efficient motor performance analysis. In this paper, the performance analysis of a surface-mounted permanent magnet motor (SPM) is taken as an example. The research result show that the high-precision RNA model accelerated by the surrogate model can reduce the solution time by 82.3%.
| Original language | English |
|---|---|
| Title of host publication | 9th International Conference on Electromagnetic Field Problems and Applications, ICEF 2025 |
| Publisher | Institution of Engineering and Technology |
| Pages | 266-271 |
| Number of pages | 6 |
| Volume | 2025 |
| Edition | 37 |
| ISBN (Electronic) | 9781807050207, 9781807050344, 9781807050351, 9781807050375, 9781837242634, 9781837242900, 9781837242917, 9781837243143, 9781837243150, 9781837243167, 9781837243235, 9781837243341, 9781837243358, 9781837245277, 9781837246847, 9781837246854, 9781837247004, 9781837247011, 9781837247028, 9781837247035, 9781837247042, 9781837247059, 9781837247257, 9781837247264, 9781837247271, 9781837247295, 9781837247325, 9781837247332, 9781837249916 |
| DOIs | |
| State | Published - 1 Dec 2025 |
| Externally published | Yes |
| Event | 9th International Conference on Electromagnetic Field Problems and Applications, ICEF 2025 - Harbin, China Duration: 10 Oct 2025 → 12 Oct 2025 |
Conference
| Conference | 9th International Conference on Electromagnetic Field Problems and Applications, ICEF 2025 |
|---|---|
| Country/Territory | China |
| City | Harbin |
| Period | 10/10/25 → 12/10/25 |
Keywords
- LightGBM
- Optimal design
- motor performance analysis
- reluctance network analysis
- surrogate-assisted model
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