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Design and experiment of a noncontact electromagnetic vibration isolator with controllable stiffness

机译:刚度可控的非接触式电磁隔振器的设计与实验

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摘要

Isolating low-frequency vibration in current satellites that has a negative effect on the performance of precise payloads has increasing demand. In this work, a simplified model of a noncontact electromagnetic isolator for low-frequency vibration, which has a controllable stiffness with a minimum of zero, is proposed. Starting with the designing process of the vibration isolator, a series of ground-based experiments are carried out to verify the controllable stiffness. Two typical operating scenarios, the vibration isolation and rapid maneuver modes, are experimentally demonstrated. The experimental results indicate that the stiffness has a practically proportional relationship with the input current and the proposed design works well for both of the operation modes.
机译:隔离当前卫星中的低频振动会对精确的有效载荷的性能产生负面影响,因此需求日益增长。在这项工作中,提出了一种用于低频振动的非接触式电磁隔离器的简化模型,该模型具有可控制的刚度,最小值为零。从隔振器的设计过程开始,进行了一系列基于地面的实验,以验证可控制的刚度。实验证明了两种典型的操作场景,即隔振和快速机动模式。实验结果表明,刚度实际上与输入电流成比例关系,所提出的设计在两种工作模式下均能很好地工作。

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