具有正凸极的永磁型无轴承电机的基本特性

H. Kusayanagi, M. Takemoto, Y. Tanaka, A. Chiba, T. Fukao
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引用次数: 5

摘要

将磁性轴承与永磁同步电动机集成在一起的各类永磁型无轴承电动机得到了积极的开发。然而,这些电机不能有效地为转子轴悬浮产生电磁悬浮力,因为悬浮磁通会通过永磁体的高磁阻而衰减。据此,作者提出了一种具有正凸极且q轴方向电感Ld大于q轴方向电感Lq的新型永磁型无轴承电机。在之前的论文中,通过二维有限元分析表明,由于悬浮磁链不通过永磁体,因此所提出的电机可以有效地产生悬浮力。本文介绍了该电机的转矩和悬挂力的基本特性,并给出了样机的试验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Basic characteristics of a permanent-magnet type bearingless motor with positive salient pole
Various types of permanent-magnet type bearingless motors, which have integrated magnetic bearings with permanent magnet synchronous motors, have been developed actively. However, these motors cannot effectively generate electromagnetic suspension force for rotor shaft suspension, because suspension flux is attenuated owing to passing through high magnetic reluctance of permanent magnets. Accordingly, the authors have proposed a novel permanent-magnet type bearingless motor with positive salient pole that inductance Ld in the q-axis direction is greater than inductance Lq in the q-axis direction. In previous papers, it was shown with 2D-FEM that the proposed motor can generate the suspension force effectively, because the suspension flux does not pass through the permanent magnets. This paper introduces basic characteristics of torque and suspension force in the proposed motor with test results of a prototype machine.
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