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Integrated hybrid vibration isolator with feedforward compensation for fast high-precision positioning X/Y tables

机译:具有前馈补偿功能的集成式混合振动隔离器,用于快速高精度定位X / Y工作台

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摘要

The design, realization and control technologies of a high-performance hybrid microvibration isolator for ultra-high-precision high-speed moving X/Y tables are presented in this paper--the novel isolator with integrated passive-active high level of damping. The passive damping was implemented using air-springs in both vertical and horizontal directions, with parallel linear motors in two directions to realize the active damping and the positioning functions. It is an actual hybrid isolation system because its air-spring can also be controlled through the pneumatic loop. The isolation servo system also has fast positioning capability via the feedforward compensation for the moving tables. Compared with the conventional filtered reference type control algorithms that rely on the assumption for the adaptive filter and the controlled system, in which the disturbance is estimated from the residual signal, the feedforward compensation here shows high effectiveness of vibration isolation and high-precision positioning performance for its platform. The performance of feedforward compensation has been enhanced via an efficient state estimation adaptive algorithm, the fast Kalman filter. Finally, experimental demonstration has been shown for the prototype system and the results have verified the effectiveness of the proposed isolator system design and the adaptive control algorithm for substantially enhanced damping of the platform system with the moving X/Y tables.
机译:本文介绍了一种用于超高精度高速移动X / Y工作台的高性能混合微振动隔离器的设计,实现和控制技术-一种集成了被动-主动高阻尼水平的新型隔离器。被动阻尼通过在垂直和水平方向上使用空气弹簧来实现,并在两个方向上使用并联的线性电动机来实现主动阻尼和定位功能。这是一个实际的混合隔离系统,因为它的空气弹簧也可以通过气动回路进行控制。隔离伺服系统还具有通过对移动工作台进行前馈补偿的快速定位功能。与依赖于自适应滤波器和受控系统的假设的常规滤波参考类型控制算法相比,该算法从残差信号中估算出干扰,此处的前馈补偿显示出高效的隔振效果和高精度的定位性能为其平台。前馈补偿的性能已通过有效的状态估计自适应算法(快速卡尔曼滤波器)得到了增强。最后,对样机系统进行了实验演示,结果验证了所提出的隔离器系统设计和自适应控制算法的有效性,该算法有效地增强了带有移动X / Y工作台的平台系统的阻尼。

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