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Vibration Suppression of a Slotless Self-Bearing Permanent-Magnet Motor for Optical Applications

机译:用于光学应用的无缝自轴承永磁电动机的振动抑制

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Magnetic bearings, particularly of slotless type, are ideally suited for optical applications by enabling operation in vacuum at high speeds with high lifetime, avoiding particle generation and allowing active control, and therefore suppression of bearing stator force and rotor displacements. In this paper, different approaches for vibration suppression are compared and experimentally verified with a dual hetero-/homopolar slotless self-bearing motor. A feed forward has advantages compared to a notch-filter approach as it allows rotor vibration suppression and lowering the stator vibration suppression activation speed into the rigid-rotor critical speed range. Finally, the rotational speed fluctuations, important for optical applications, are investigated.
机译:磁性轴承,特别是无缝型,非常适合通过高速寿命的高速启用操作,避免颗粒生成并允许主动控制,因此抑制轴承定子力和转子位移来实现光学应用。 在本文中,比较了振动抑制的不同方法,并用双异质/均色光盘无轴承自轴承电动机进行了实验验证。 与缺口滤波器方法相比,前馈具有优点,因为它允许转子振动抑制并将定子振动抑制激活速度降至刚性转子临界速度范围。 最后,研究了对光学应用的转速波动,是重要的。

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