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Observer-Based Contouring Controller Design of a Biaxial Stage System Subject to Friction

机译:基于观察者的双轴位移系统轮廓控制器设计

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摘要

Friction is a major source of disturbances for common stage systems. For the purpose of high precision contouring performance, both contouring control and friction compensation are necessary. Hence, this brief studies the contouring controller design problem of a biaxial stage system subject to friction. Moreover, to cope with the real situation happening in most stage systems, position is assumed to be the only available information for design. By incorporating a friction model into system dynamics and with the help of the task coordinate formulation, an observer-based contouring controller is proposed to solve this problem. Based on the results of state observation, friction forces can be well estimated and compensated. The resulted contouring controller possesses an integrated structure such that the feedforward, feedback, contouring, and friction compensation controls can be synthesized in a systematic manner. Simulation and experimental results are consistent to the theoretical analyses and verify the proposed scheme.
机译:摩擦是普通级系统的主要干扰源。为了达到高精度的轮廓加工性能,轮廓控制和摩擦补偿都是必要的。因此,本文简要研究了受摩擦的双轴位移台系统的轮廓控制器设计问题。此外,为了应对大多数舞台系统中发生的实际情况,位置被认为是唯一可用于设计的信息。通过将摩擦模型纳入系统动力学并借助任务坐标公式,提出了一种基于观察者的轮廓控制器来解决该问题。根据状态观察的结果,可以很好地估计和补偿摩擦力。最终的轮廓控制器具有集成的结构,因此可以以系统的方式合成前馈,反馈,轮廓和摩擦补偿控制。仿真和实验结果与理论分析相吻合,验证了所提方案。

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