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Multi-operating points PM motor design methodology for electric actuation systems

机译:电动执行机构的多工作点永磁电机设计方法

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In this paper, a comparative optimal design of Permanent Magnet Motors (PMMs) for aerospace actuation applications based on single and double layer Fractional Slot Concentrated Winding (FSCW) topologies with different motor segmentation strategies is undertaken, by means of a combined electromagnetic, fault tolerance and thermal evaluation. Initially, analytical machine equations and 2D Finite Element (FE) analysis are employed for the determination of the motors basic dimensional and operating characteristics. Both configurations considered are in a next step optimized regarding the mean torque, efficiency, torque ripple, induced Electromotive Force (EMF) quality and motor weight. The proposed methodology involves appropriate handling of mean torque and induced EMF as constraints through the application of a particular single-objective Particle Swarm Optimization (PSO) technique accounting also for multiple motor operating conditions. Fault tolerance and thermal robustness of the optimized motors are also examined. Both single layer and double layer FSCW PMM optimal configurations present complementary advantages for this class of applications.
机译:在本文中,通过结合电磁,容错的组合,针对具有不同电机分段策略的​​单层和双层分数槽集中绕组(FSCW)拓扑,针对航天致动应用的永磁电机(PMM)进行了比较优化设计。和热评估。最初,使用分析机方程式和2D有限元(FE)分析来确定电动机的基本尺寸和运行特性。下一步考虑的两种配置均会在平均转矩,效率,转矩波动,感应电动势(EMF)质量和电机重量方面进行优化。所提出的方法包括通过应用特殊的单目标粒子群优化(PSO)技术(也考虑到多个电动机运行条件)来适当处理平均转矩和感应电动势作为约束。还检查了优化电机的容错性和热稳定性。单层和双层FSCW PMM最佳配置都为此类应用提供了互补的优势。

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