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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Design, Modeling, Control and Experiment for a 2-DOF Compliant Micro-Motion Stage
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Design, Modeling, Control and Experiment for a 2-DOF Compliant Micro-Motion Stage

机译:符合2自由度微动位移台的设计,建模,控制和实验

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摘要

A new XY micro-motion stage is proposed with the double four-bar prismatic joints to transfer linear motions and mechanical displacement amplifier. The compliance models of the amplifier, the prismatic joints, and the whole stage are established based on the flexibility matrix method. The simulation is made by using finite element analysis ANSYS software. The output cross-talk is about 2% and the parasitic motions of the input points in the other limbs are less than 1.8%, which shows a good decoupling property. The mechanical prototype is fabricated, the experimental results show that the input/output of the stage has a very good linearity, the ratio of output displacement to input displacement is 5.06 and the working range is 156 μm × 1.56 μm. To tackle for the serious hysteresis nonlinear problems of the stage, model reference adaptive PID controller is designed, the final resolution can reach ±0.2 μm.
机译:提出了一种新的XY微动平台,它带有双四杆棱柱形关节以传递线性运动和机械位移放大器。基于柔度矩阵法,建立了放大器,棱柱形接头和整个舞台的柔顺模型。通过使用有限元分析ANSYS软件进行仿真。输出串扰约为2%,其他分支中输入点的寄生运动小于1.8%,这表明其具有良好的去耦特性。制作了机械样机,实验结果表明该平台的输入/输出具有很好的线性度,输出位移与输入位移之比为5.06,工作范围为156μm×1.56μm。针对平台严重的滞后非线性问题,设计了模型参考自适应PID控制器,最终分辨率可达±0.2μm。

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