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Torque ripple reduction of a synchronous reluctance motor for electric vehicle applications

机译:用于电动车辆应用的同步磁阻电动机的扭矩脉动降低

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Synchronous reluctance motor (SynRM) is a potential candidate for high starting torque requirements of traction drives. Any demagnetization risk is prevented since there is not any permanent magnet on the rotor or stator structure. On the other hand, the high rotor starting current problem, that is common in induction machines is ignored since there is not any winding on the rotor. Indeed, absence of permanent magnet in motor structure and its simplicity leads to lower finished cost in comparison with other competitors. Also high average torque and low ripple content is important in electrical drives employed in electric vehicle applications. High amount of torque ripple is one of the problems of SynRM, which is considered in many researches. In this paper, a new design of the SynRM is proposed in order to reduce the torque ripple while maintaining the average torque. For this purpose, auxiliary flux barriers in the rotor structure are employed that reduce the torque ripple significantly. Proposed design electromagnetic performance is simulated by finite element analysis. It is shown that the proposed design reduces torque ripple significantly without any reduction in average torque.
机译:同步磁阻电机(SYNRM)是牵引驱动器的高启动扭矩要求的潜在候选者。由于转子或定子结构上没有任何永磁体,因此防止了任何退磁风险。另一方面,忽略了在感应机器中常见的高转子启动电流问题,因为转子没有任何绕组。实际上,与其他竞争对手相比,电动机结构中的永磁体和其简单性导致成本降低。在电动汽车应用中采用的电气驱动器中,高平均扭矩和低纹波含量也很重要。大量的扭矩纹波是SynrM的问题之一,在许多研究中被认为是在许多研究中。在本文中,提出了一种新的SYNRM设计,以减少扭矩脉动,同时保持平均扭矩。为此目的,采用转子结构中的辅助磁通屏障,从而显着减小扭矩脉动。提出的设计电磁性能通过有限元分析模拟。结果表明,所提出的设计显着减少了扭矩纹波,而不会在平均扭矩下降任何减小。

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