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Evaluation of One- and Two-Pole-Pair Slotless Bearingless Motors With Toroidal Windings

机译:带有环形绕组的一极和两极对无槽无轴承电动机的评估

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摘要

In this paper, winding topologies for one- and two-pole-pair rotors are analyzed and compared for a slotless bearingless disk drive with toroidal windings. The basis of the studies is a six-phase motor with a diametrically magnetized one-pole-pair rotor. Due to the absence of mechanical bearings and the significantly large air-gap capability, the motor is suitable for applications with high purity and special chemical demands. Its slotless design results in low losses even at high rotational speeds. To improve the operational behavior of the rotor in different applications, the influence of higher pole pair numbers on the passive bearing stiffness is examined. A possible winding configuration for these rotors is proposed and evaluated for their bearing and motor performance. Based on the results, a further prototype was built and is presented in this paper.
机译:在本文中,分析并比较了具有环形绕组的无槽无轴承磁盘驱动器的一极对和两极对转子的绕组拓扑。研究的基础是带有径向磁化的单极对转子的六相电动机。由于没有机械轴承,并且气隙能力非常大,因此该电机适用于高纯度和特殊化学要求的应用。其无槽设计即使在高转速下也可实现低损耗。为了提高转子在不同应用中的运行性能,研究了较高的极对数对被动轴承刚度的影响。对于这些转子,提出了一种可能的绕组配置,并对其轴承和电机性能进行了评估。基于结果,构建了另一个原型,并在本文中进行了介绍。

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