Data-Driven Electromagnetic-Thermal Coupling Optimization of Permanent Magnet Machines for UAVs

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초록

This article presents a data-driven approach for achieving the optimal design of external permanent magnet synchronous machines (PMSMs) used in unmanned aerial vehicles (UAVs). The analysis is grounded in the subdomain (SD) model, which enables precise prediction of electromagnetic (EM) performances. In particular, this approach integrates thermal management to meet the rigorous thermal requirements of UAVs. The methodology is based on previously collected experimental data from a prototype machine, which is then used to develop a mathematical model that correlates with temperature rise under varying loading conditions. Consequently, the proposed approach enables both EM and thermal analyses with remarkable precision and efficiency. Following that, the proposed model is subjected to social group optimization (SGO), an evolutionary algorithm that has been developed recently, to search for optimal solutions while satisfying the thermal constraints. This methodology, therefore, offers a dependable and practical solution for the development of lightweight, high-performance external PMSMs for UAVs, which are highly favored in the final design phase for mass production. Finally, the efficacy of the proposed model is verified by finite element (FE) and experimental results.

키워드

Thermal analysisTorqueMathematical modelsRotorsOptimizationElectromagneticsAnalytical modelsAnalytical modelmulticonstrained optimizationpermanent magnet synchronous machine (PMSM)social group optimization (SGO)subdomain (SD) modelthermal constantunmanned aerial vehicles (UAVs)DESIGNMODELREDUCTIONVIBRATIONSYSTEMPMSM
제목
Data-Driven Electromagnetic-Thermal Coupling Optimization of Permanent Magnet Machines for UAVs
저자
Bae, Choel HeeMin, Seun Guy
DOI
10.1109/TTE.2023.3339493
발행일
2024-09
유형
Article
저널명
IEEE Transactions on Transportation Electrification
10
3
페이지
6473 ~ 6487