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Performance analysis of rare-earth and rare-earth free external rotor motors under eccentricity faults

机译:偏心故障下稀土和稀土外转子电机的性能分析

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This paper presents the performance comparisons between rare-earth and rare-earth free external rotor permanent magnet assisted synchronous reluctance motors (PMa-SynRMs) under static eccentricity (SE), dynamic eccentricity (DE), and mixed eccentricity (ME) conditions. Recently, external rotor motors are proposed as high power density motors for traction applications in electric vehicles and more electric aircraft. However, these in-wheel external rotor motors are usually under continuous stress of rotational forces due to the tire-road friction which can result in eccentricity faults due to stator and rotor misalignment. Therefore, it is critical to assess the external rotor motors performance under eccentricity faults in traction motors. In this study, various failure modes due to eccentricity faults such as SE, DE, and ME conditions are analyzed on optimal 3.8kW rare-earth based and 3.7kW rare-earth free external rotor PMa-SynRMs. Effects of these eccentricity conditions are translated to performance loss in terms of increased torque ripple and unbalanced magnetic pull (UMP) in the electric motor designs. Also, 3rd harmonics of back-electromotive force (back-EMF) have been analyzed for both motors in all eccentricity conditions to compare their performance in fault detection. Experimental setup is developed to test the motors under load conditions and finite element simulation results are presented to validate the proposed theory.
机译:本文介绍了岩土偏心(SE)下稀土和稀土自由外置转子永磁辅助同步磁阻电动机(PMA-SYNRMS)的性能比较,动态偏心(DE),混合偏心(ME)条件。最近,外部转子电动机被提出为电动车辆和更多电气飞机的牵引应用的高功率密度电动机。然而,由于轮胎道路摩擦,这些轮廓外转子电动机通常在旋转力的连续应力下,这可能导致由于定子和转子未对流引起的偏心故障。因此,在牵引电动机中的偏心故障下评估外转子电机性能至关重要。在这项研究中,在最佳的3.8kW稀土基于稀土和3.7kW稀土外转子PMA - Synrms上分析了由于诸如SE,DE和ME和ME条件的偏心故障引起的各种故障模式。这些偏心条件的效果在电动机设计中增加的扭矩纹波和不平衡磁力拉(UMP)方面转换为性能损失。此外,对于所有偏心条件中的两个电机都已经分析了背部电动势(反EMF)的3 Rd 谐波,以比较它们在故障检测中的性能。实验设置开发用于测试负载条件下的电动机,并提出了有限元模拟结果以验证提出的理论。

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