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Design of a 35kW Permanent Magnet Synchronous Motor for Electric Vehicle Equipped with Nonuniform Airgap Rotor

机译:用于电动汽车的35kW永磁同步电动机设计,配有非均匀气隙转子

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This paper presents a successful design of a 35kW nonuniform airgap permanent magnet synchronous motor (PMSM) developed for electric vehicles. Nonuniform airgap rotor periphery making airgap length maximize at the quadrature axis and minimize at the direct axis is employed to reduce harmonics of the airgap flux density and no-load back EMF. Systematic analysis, including pole-arc coefficient, air gap ratio, stator configuration and slot type, is used on the proposed motor by finite element analysis. Finite element analyses highlight advantages of the designed nonuniform airgap PMSM by comparing with conventional PMSM. In order to further verify the rationality of the structure and ensure the safe and reliable operation of the motor, multi-physical field analysis is applied to nonuniform airgap PMSM.
机译:本文介绍了为电动汽车开发的35kW非粗空气隙永磁同步电动机(PMSM)的成功设计。制造气隙长度的非均匀气隙转子周边在正交轴上最大化,并在直接轴上最小化,以减少气隙助焊剂密度和无负载反向EMF的谐波。通过有限元分析,在所提出的电动机上使用系统分析,包括极电弧系数,气隙比,定子配置和槽型。有限元分析通过与常规PMSM进行比较,突出设计的非均匀气隙PMSM的优点。为了进一步验证结构的合理性并确保电机的安全可靠操作,将多物理场分析应用于非均匀气隙PMSM。

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