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An Air-Cooled YASA Motor for in-Wheel Electric Vehicle Applications

机译:轮毂式电动汽车应用的风冷YASA电动机

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In-wheel motors present a range of opportunities for innovation in electric vehicle design as the torque produced at each of two or four wheels can be controlled individually. A high aspect ratio (large radius, short axial length) motor is required to fit within the wheel. Due to its location, liquid cooling of the in-wheel motor is difficult and undesirable, but a high power density is required to reduce the mass-which is particularly important as it is unsprung-and fit the space envelope. Furthermore, a high torque density is required to eliminate the need for a gearbox. These constraints create a real challenge for the design of a machine for this application. An axial field machine using a Yokeless and Segmented Armature (YASA) topology is designed to fit these requirements as such a machine has clear advantages when considering the high aspect ratio. A soft magnetic composite (SMC) material is utilised to carry the flux in its non-planar path without incurring excessive losses or requiring an impractical and difficult to manufacture lamination design. A novel cooling arrangement involving heat-spreading elements on each armature segment is employed to improve heat dissipation and hence power density. The design, analysis, manufacturing and testing of the motor is described in this paper to verify the concept against the requirements outlined above.
机译:轮内电动机为电动汽车设计提供了一系列创新机会,因为可以分别控制两个或四个车轮上产生的扭矩。需要高纵横比(大半径,短轴长)的电动机才能安装在车轮内。由于其位置,轮内电动机的液体冷却是困难且不希望的,但是需要高功率密度以减小质量(这是未悬挂的状态,尤其重要)并适合空间范围。此外,需要高扭矩密度以消除对变速箱的需求。这些限制为该应用的机器设计提出了真正的挑战。设计使用无轭和分段电枢(YASA)拓扑的轴场电机来满足这些要求,因为在考虑高长宽比时,这种电机具有明显的优势。利用软磁复合材料(SMC)在其非平面路径中承载磁通量,而不会引起过多的损耗或要求不切实际且难以制造的叠层设计。一种新颖的冷却装置,其在每个电枢段上均包括散热元件,以改善散热并因此提高功率密度。本文介绍了电动机的设计,分析,制造和测试,以根据上述要求验证该概念。

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