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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >A Principle and Winding Design of Consequent-Pole Bearingless Motors
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A Principle and Winding Design of Consequent-Pole Bearingless Motors

机译:磁极无轴承电动机的原理与绕组设计

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摘要

Recently, bearingless motors have been developed to enhance motor drive systems with magnetic suspension. Several types of motors have been proposed as bearingless motors, such as induction, surface mounted permanent magnet, inset permanent magnet, interior permanent magnet, buried permanent magnet, homopolar, hybrid, and switched reluctance bearingless motors. Permanent magnet bearingless motors have been attracting more interests in these years because of the high efficiency. In this paper, a consequent-pole bearingless motor is proposed. A rotor has buried permanent magnets, of which polarities are like. The radial force of a consequent-pole bearing-less motor is generated by dc current. Thus, rotational angular position is not needed in a magnetic suspension controller. Radial force variations caused by a rotor rotation are minimized by improving arrangement of stator suspension conductors. A prototype bearingless motor and its controller are built. In experiment, principles of magnetic suspension in the proposed consequent-pole bearingless drive are confirmed.
机译:近来,已经开发了无轴承电动机以增强具有磁悬浮的电动机驱动系统。已经提出了几种类型的电动机作为无轴承电动机,例如感应,表面安装永磁体,嵌入永磁体,内部永磁体,埋入式永磁体,同极,混合和开关磁阻无轴承电动机。近年来,永磁无轴承电动机由于其高效率而受到越来越多的关注。本文提出了一种多极无轴承电机。转子具有埋入式永磁体,其极性类似。因此,无极电动机的径向力是由直流电流产生的。因此,在磁悬浮控制器中不需要旋转角位置。通过改进定子悬挂导体的布置,可以将由转子旋转引起的径向力变化降到最低。建立了无轴承电动机原型及其控制器。在实验中,证实了所提出的结果极无轴承驱动中的磁悬浮原理。

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