首页> 外文会议>2012 20th International Conference on Electrical Machines. >Rotor structure suppressing suspension force ripple in an IPM type bearingless motor with 2-pole motor windings and 4-pole suspension windings
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Rotor structure suppressing suspension force ripple in an IPM type bearingless motor with 2-pole motor windings and 4-pole suspension windings

机译:具有2极电机绕组和4极悬挂绕组的IPM型无轴承电机的转子结构可抑制悬挂力波动

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A bearingless motor has integrated characteristics of an electrical motor and a magnetic bearing. In general, surface permanent magnet (SPM) type rotor structure with a ring magnet magnetized in parallel is employed in high-speed PM type bearingless motors. However, in case of increasing motor size for high output, this rotor structure has problems of insufficient suspension force due to a wide air gap and high cost by using the large-diameter ring magnet magnetized in parallel. Therefore, this paper discusses a novel interior permanent magnet (IPM) type rotor structure for the high-speed and high-output bearingless motor. In the novel IPM type rotor structure, suspension force ripple is suppressed by means of arranging flux barriers at the suitable position in a rotor. It is confirmed with 2D-FEM that the proposed rotor structure using the flux barriers is effective in suppressing the suspension force ripple.
机译:无轴承电动机具有电动机和磁性轴承的集成特征。通常,在高速PM型无轴承电动机中,采用将具有平行磁化的环形磁铁的表面永磁体(SPM)型转子结构。然而,在增大电动机尺寸以实现高输出的情况下,通过使用平行磁化的大直径环形磁体,该转子结构具有由于较大的气隙而导致悬架力不足以及成本高的问题。因此,本文讨论了一种用于高速大功率无轴承电动机的新型内部永磁体(IPM)型转子结构。在新颖的IPM型转子结构中,通过在转子的适当位置上布置磁通屏障来抑制悬浮力波动。通过2D-FEM证实,所提出的使用磁通屏障的转子结构可有效抑制悬浮力波动。

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