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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Design of Axial Flux Induction Motor With Reduced Back Iron for Electric Vehicles
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Design of Axial Flux Induction Motor With Reduced Back Iron for Electric Vehicles

机译:电动汽车用还原铁减少轴向磁通感应电动机的设计

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摘要

Axial flux induction motor is gradually attracting attention because of its advantages over conventional motors in applications of Electric Vehicles. These advantages include compact construction, better efficiency, high utilization of active materials, and good ventilation and cooling. In this paper, a six-pole distributed-winding and double-stator-double-rotor axial flux induction motor with reduced back iron for electric vehicles is proposed. The main design feature is that the rotors of the designed motor will be transparent to the magnetic fluxes from both sets of stator windings. With this structure, the axial attractive force is eliminated thus the mechanical bearing loss is reduced. In addition, the motor will have lighter weight and less volume thus save more materials. Results of finite element analysis in ANSYS Maxwell show that performance and magnetic flux density of the final motor design can meet all the design specifications.
机译:轴向磁通感应电动机由于其在电动汽车应用中优于常规电动机的优势而逐渐引起人们的关注。这些优点包括结构紧凑,效率更高,活性材料利用率高以及良好的通风和冷却。本文提出了一种用于电动汽车的六极分布式绕组双定子双转子轴向铁磁感应电动机。主要设计特征是,所设计的电动机的转子对于两组定子绕组的磁通量都是透明的。利用这种结构,消除了轴向吸引力,因此减小了机械轴承损耗。另外,电动机将具有更轻的重量和更小的体积,从而节省更多的材料。 ANSYS Maxwell有限元分析的结果表明,最终电动机设计的性能和磁通密度可以满足所有设计规范。

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