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Design of a Low Torque Ripple Three-Phase SRM for Automotive Shift-by-Wire Actuator

机译:用于汽车换丝执行器的低扭矩纹波三相SRM的设计

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摘要

The shift-by-wire (SBW) system in vehicles aims to increase performance, safety, and comfort during driving. Switched reluctance motors (SRMs) are simple, resilient, and require only minimum maintenance; these factors make it a good option for use as an SBW actuator. Inherently, SRM generates a higher torque ripple than other AC machines, which can lead to a deterioration of its function. In this paper, a non-uniform air-gap rotor structure combined with the careful positioning of holes near the pole surface is proposed to reduce the torque ripple. The finite element method (FEM) is employed to analyze the electromagnetic characteristics of the design. The proposed motor is manufactured, and experiments are done to verify the performance. The design alone can reduce the torque ripple by 7% and flatten the torque waveform. The experimental result shows that the proposed motor can achieve the desired performance. The estimated torque ripple from the experiment is 26.65%.
机译:车辆中的逐线(SBW)系统旨在在驾驶期间提高性能,安全性和舒适性。开关磁阻电机(SRMS)简单,有弹性,并且只需要最小的维护;这些因素使其成为SBW执行器的良好选择。本质上,SRM产生比其他AC机器更高的扭矩波纹,这可能导致其功能的劣化。在本文中,提出了一种与磁极表面附近的孔的仔细定位结合的非均匀气隙转子结构以减小扭矩脉动。采用有限元法(FEM)来分析设计的电磁特性。制造所提出的电动机,进行实验以验证性能。单独的设计可以将扭矩脉动减小7%并压平扭矩波形。实验结果表明,所提出的电动机可以达到所需的性能。实验中的估计扭矩脉动是26.65%。

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