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Design optimization of spoke-type PM motors for Formula E racing cars

机译:电动方程式赛车辐条式永磁电动机的设计优化

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This paper presents the performance trade-offs in the design optimization of spoke-type permanent magnet (PM) motors for high speed and very high torque density traction motors. An example 18-slot 16-pole machine for a direct drive Formula E race car over the Le Mans driving cycle is considered. Both low speed and extended speed/field-weakening operations are evaluated using high fidelity finite element (FE) simulations, to simultaneously increase the torque density and decrease the power losses over the high energy-throughput-zones of the machine torque-speed plane. The results of the design optimization process yielding 3,400 design candidates are utilized to quantify the performance trade-offs for increasing the power density in spoke-type PM motors. These trade-offs include the impacts on other performance metrics such as power losses, PM demagnetization, and torque ripple. The analysis is supplemented by multi-physics simulation of three counterpart optimized designs, and successful experimental verification of a prototype of one of those three designs which represents a record high power density motor in traction applications.
机译:本文介绍了高速和非常高扭矩密度牵引电动机的辐条型永磁体(PM)电机设计优化中的性能权衡。考虑了LE MANS驱动周期的用于直接驱动公式E赛车的示例18-槽16极机。使用高保真有限元(FE)模拟评估低速和扩展速度/场 - 弱化操作,以同时增加扭矩密度并通过机器扭矩速度平面的高能通量区降低功率损耗。设计优化过程的结果利用了3,400个设计候选者来量化用于增加辐条型PM电动机的功率密度的性能权衡。这些权衡包括对其他性能指标的影响,例如功率损耗,PM退磁和扭矩波动。该分析由三个对应的优化设计的多物理模拟,以及成功的实验验证了这三种设计之一的原型,其表示牵引应用中的记录高功率密度电动机。

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