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Operational characteristics of an IPM-type bearingless motor with 2-pole motor windings and 4-pole suspension windings

机译:具有2极电动机绕组和4极悬架绕组的IPM型无轴承电动机的工作特性

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A bearingless motor (BelM) integrates the characteristics of an electric motor and a magnetic bearing. Typically, a surface-mounted permanent magnet (SPM)-type BelM with a ring magnet magnetized in parallel is employed for high-speed operation. It is noteworthy that a carbon fiber bandage is needed to fix the ring magnet. However, when an SPM-type BelM is applied to a high-output motor, it becomes difficult to generate sufficient suspension force because of the wide magnetic gap arising from the carbon fiber bandage and the ring magnet. In addition, the manufacturing cost for the large-scale ring magnet and the carbon fiber bandage is high. Therefore, to realize a high-output and high-speed BelM at a low cost, we have focused on an interior permanent magnet (IPM)-type BelM with 2-pole motor windings and 4-pole suspension windings. Moreover, a rotor structure for suppressing suspension force ripple arising in the IPM-type BelM has been proposed based on three-dimensional finite element analysis. In this study, a prototype of the IPM-type BelM with the proposed rotor structure is produced. Experiments with this prototype show that the proposed rotor structure is effective in reducing suspension-force ripple. Additionally, the operational characteristics of the prototype are shown in detail.
机译:无轴承电动机(BelM)融合了电动机和磁性轴承的特性。通常,将具有平行磁化的环形磁体的表面安装式永磁体(SPM)型BelM用于高速操作。值得注意的是,需要用碳纤维绷带固定环形磁铁。然而,当将SPM型BelM应用于高输出电动机时,由于由碳纤维绷带和环形磁体引起的宽磁隙,使得难以产生足够的悬架力。另外,大型环形磁体和碳纤维绷带的制造成本高。因此,为了以低成本实现高输出和高速BelM,我们集中于具有2极电动机绕组和4极悬架绕组的内部永磁体(IPM)型BelM。此外,基于三维有限元分析,已经提出了用于抑制在IPM型BelM中产生的悬浮力波动的转子结构。在这项研究中,生产了具有建议的转子结构的IPM型BelM原型。用该原型进行的实验表明,提出的转子结构可有效减少悬浮力波动。另外,详细显示了原型的操作特性。

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