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Examination of an Interior Permanent Magnet Type Axial Gap Motor for the Hybrid Electric Vehicle

机译:混合动力电动汽车的内部永磁型轴向间隙电动机的检查

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摘要

Hybrid electric vehicles (HEVs) that emit less carbon dioxide have attracted much attention and rapidly become widespread, but further popularization of HEVs requires further technical advancement of mounted traction motors. Accordingly, our research group focuses on axial gap motors that can realize high torque density. In this paper, an axial gap motor with a novel interior permanent magnet (IPM) rotor structure is proposed and an examination of the proposed motor at the actual motor size of an HEV is presented. For comparison, we selected the newest radial gap-type 60kW IPM synchronous motor equipped in the third-generation Toyota Prius. Under the condition that the size of the proposed motor be the same as the comparison motor, we confirmed through three-dimensional finite-element analysis that the proposed motor could output twice the maximum torque of the comparison motor. In addition, a comparison was made with a previously reported conventional IPM-type axial gap motor, and the proposed motor was found to be more effective in generating reluctance torque. Moreover, the proposed motor exhibited sufficient durability to irreversible demagnetization of the permanent magnets, to stress caused by rotating the rotor, and to unbalanced electromagnetic forces caused by axial rotor eccentricity.
机译:二氧化碳排放量少的混合动力汽车(HEV)引起了广泛关注,并迅速普及,但是HEV的进一步普及要求安装式牵引电动机的技术进一步发展。因此,我们的研究小组专注于可实现高转矩密度的轴向间隙电动机。在本文中,提出了一种具有新型内部永磁体(IPM)转子结构的轴向间隙电动机,并提出了在HEV的实际电动机尺寸下对提出的电动机的检查。为了进行比较,我们选择了第三代丰田普锐斯配备的最新径向间隙型60kW IPM同步电动机。在拟议电动机尺寸与比较电动机相同的条件下,我们通过三维有限元分析确认了拟议电动机可以输出比较电动机最大转矩的两倍。另外,与先前报道的常规IPM型轴向间隙电动机进行了比较,并且发现提出的电动机在产生磁阻转矩方面更有效。此外,提出的电动机对于永磁体的不可逆退磁,由转子旋转引起的应力以及由转子轴向偏心引起的不平衡电磁力具有足够的耐久性。

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