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Sizing equation and Finite Element Analysis optimum design of axial-flux permanent-magnet motor for electric vehicle direct drive

机译:轴向通气永磁电动机的轴尺寸方程和有限元分析优化设计直接驱动

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This paper presents the design process of a slotted TORUS axial-flux permanent-magnet motor suitable for direct drive of an electric vehicle through sizing equation and Finite Element Analysis. AFPM motor is a high torque density motor which can be easily and compactly mounted into the automobile's wheel fitting the rim perfectly. A double-sided slotted AFPM motor with 6 rotor poles for high torque density and stable rotation is the preliminary design. In order to determine the design requirements, a simple vehicle dynamic model evaluating the vehicle performance considering an automobile's typical-trip cursing scenario is considered. Axial-flux permanent-magnet machine's fundamental theory and sizing equation are applied to obtain the initial design parameters of the motor with the highest possible torque. The FEA of designed motor was conducted via commercial Vector Field Opera-3D 14.0 software for evaluation and accuracy enhancement of the design parameters. FEA simulation results are compared with those results obtained from sizing equation showing a good agreement of flux density values in various parts of the designed motor at no-load condition. The motor meets all the requirements and limitations of the electric vehicle fitting the shape and the size of a classical rim of the vehicle wheel.
机译:本文介绍了一个开槽轴向磁通永磁电机的设计过程,适用于通过尺寸方程和有限元分析直接驱动电动车辆。 AFPM电机是一种高扭矩密度电机,可以容易地且紧凑地安装在汽车的轮子中完美地装配边缘。双面开槽AFPM电机,具有6个转子极,用于高扭矩密度和稳定的旋转是初步设计。为了确定设计要求,考虑了考虑汽车典型行程诅咒场景的简单车辆动态模型。轴向磁通永磁机的基础理论和大小尺寸方程被应用于获得具有最高可能扭矩的电动机的初始设计参数。设计电机的FEA是通过商业矢量领域Opera-3D 14.0软件进行的,用于评估和准确性的设计参数。将FEA仿真结果与从尺寸方程获得的结果进行了比较,显示在无负载条件下设计的电动机的各个部分中的磁通密度值良好的良好吻合。电动机满足拟合车轮的古典边缘的形状和尺寸的电动车辆的所有要求和限制。

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