首页> 外文会议>2012 IEEE/ASME International Conference on Advanced Intelligent Mechatronics >Modeling and realization of a 6-DoF contactless electromagnetic anti-vibration system and verification of its static behavior
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Modeling and realization of a 6-DoF contactless electromagnetic anti-vibration system and verification of its static behavior

机译:六自由度非接触式电磁抗振系统的建模与实现及静态性能验证

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摘要

This paper concerns measurements on an electromagnetic six Degrees-of-Freedom (DoF) anti-vibration system that has been realized recently. The heart of this system is a fully passive permanent-magnet device which acts as a contactless magnetic spring. As such, the gravity force of a floating rigid metrology frame (730 kg) is compensated by the passive interaction between the permanent magnets in this device. The low position dependency of this force, or stiffness, is an important system property for floor vibration isolation. This 6-DoF system is stabilized by closed-loop controlled Lorentz actuators based on position feedback. The static force and torque of this system have been obtained experimentally to validate the modeling and design of the device. The results indicate a temperature sensitivity of 1.7%o/K which corresponds to −12.1 N/K compared to the vertical force of 7.2 kN. The passive force and torque produced by the gravity compensator have linear relation with translational and rotational displacements. The predicted low stiffness property of this system is validated by the stiffness matrix derived from static measurements. The total power consumption is position dependent and remains within a range of 0.3∼6 W.
机译:本文涉及最近实现的电磁六自由度(DoF)防振系统的测量。该系统的核心是一个完全无源的永磁装置,它充当非接触式磁性弹簧。这样,浮动刚性计量框架的重力(730 kg)通过该设备中永磁体之间的被动相互作用得到补偿。该力或刚度的低位置依赖性是地板振动隔离的重要系统属性。该6自由度系统通过基于位置反馈的闭环受控洛伦兹执行器来稳定。该系统的静态力和扭矩已通过实验获得,以验证设备的建模和设计。结果表明,与垂直力7.2 kN相比,温度灵敏度为1.7o / K,对应于-12.1 N / K。重力补偿器产生的被动力和转矩与平移和旋转位移具有线性关系。通过静态测量得出的刚度矩阵可以验证该系统的预测低刚度特性。总功耗取决于位置,并且保持在0.3-6 W范围内。

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