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Specific Torque Optimization of Control Moment Gyroscope Motor Based on Linear Regression Technique
- Kim, Jin Ho;
- Min, Seun Guy
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0초록
Maximizing specific torque is crucial in the design of electric machines for control moment gyroscopes (CMG). This article presents an in-depth investigation into specific torque optimization in permanent magnet machines with fractional-slot concentrated windings. Our research highlights three key findings: 1) The coil end-winding, though often overlooked, significantly impacts specific torque. 2) The multiple 2-pole/3-slot configuration ( = 1/2) is the most cost-effective, requiring minimal magnets (the most expensive material) and maximizing iron usage (the least expensive material). 3) Generalized equations for material weight composition ratios are derived using weight-optimized datasets and linear regression techniques. To verify these analyses, the optimization results of the single-objective (i.e., specific torque) are collected by combining the analytical model with the sine-cosine algorithm. Finally, finite-element and experimental results validate the accuracy of the analysis derived in this article, demonstrating its applicability to CMG motor in the aerospace sector.
키워드
- 제목
- Specific Torque Optimization of Control Moment Gyroscope Motor Based on Linear Regression Technique
- 저자
- Kim, Jin Ho; Min, Seun Guy
- 발행일
- 2025-08
- 유형
- Article
- 권
- 61
- 호
- 4
- 페이지
- 8210 ~ 8224