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Axial Flux Segmented SRM With a Higher Number of Rotor Segments for Electric Vehicles

机译:轴向通量分段式SRM,电动汽车用转子数更多

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摘要

Motors for in-wheel electric vehicle application should have high specific torque. In addition, these motors should be rugged, insensitive to vibration, and temperature variation. Therefore, segmented rotor switched reluctance motor (SSRM) could be an attractive alternative to permanent magnet-based motors, which are being used for this application. A limitation of SSRM is that it requires full pitch winding for its operation. Since, in-wheel motors have high diameter to axial length (D/L) ratio, SSRM of these dimensions would be bulky and has high copper loss due to full pitch winding. Hence, in this paper, a novel SSRM with nonoverlapping winding is proposed. This motor is an axial flux SSRM (AFSSRM) with toroidal winding arrangement. It has single-stator, dual-rotor configuration with 12 stator poles and 16 rotor segments on each rotor disc. Design procedure for AFSSRM is developed and a flowchart describing the design algorithm is presented. A finite element method-based simulation is carried out to verify the performance of the proposed AFSSRM. In order to validate the performance of the motor, a prototype is fabricated and experimental results are presented.
机译:轮毂电动汽车应用中的电动机应具有较高的比扭矩。此外,这些电动机应坚固耐用,对振动和温度变化不敏感。因此,分段转子开关磁阻电动机(SSRM)可能是基于永磁体的电动机的一种有吸引力的替代方案,该电动机已在此应用中使用。 SSRM的局限性在于其运行需要全螺距绕组。由于轮毂电动机具有高的直径与轴向长度(D / L)之比,因此,这些尺寸的SSRM体积庞大,并且由于全节距绕组而导致铜损较高。因此,本文提出了一种新型的不重叠绕组的SSRM。该电机是具有环形绕组布置的轴向磁通SSRM(AFSSRM)。它具有单定子,双转子配置,每个转子盘上有12个定子磁极和16个转子扇形。开发了AFSSRM的设计程序,并给出了描述设计算法的流程图。进行了基于有限元方法的仿真,以验证所提出的AFSSRM的性能。为了验证电动机的性能,制造了一个原型并给出了实验结果。

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