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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Development of a Flat Type Six-Axis Stage Based on Piezoelectric Actuators
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Development of a Flat Type Six-Axis Stage Based on Piezoelectric Actuators

机译:基于压电致动器的平板型六轴位移台的开发

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This study presents and investigates a six-DOF (degrees of freedom) piezoelectric based stage for positioning error compensation. The relationship between the displacement of the piezoelectric actuators and the stage can be computed according to the geometric relationships of the actuators installed. In this study, a feedforward compensator based on the hysteresis model has been designed for compensation and a PI controller was used for positioning. The combination of a feedforward compensator and PI controller gives the stage good positioning and tracking performance. Stage position information is feedback from a six-DOF optical measurement system comprised of three modular two-dimensional measurement devices. Each module employs a quadrant photodiode (QPD), a laser diode, and a lens. The measurement signal is acquired and processed using an FPGA based processor for real time control. The linear and angular positioning resolution is 0.02 μm and 0.1 arcsec, respectively. When the stage is controlled in a closed loop, the positioning errors are in the range of±0.1 μm and±0.5arcsec. The stage is controlled to track a sinusoidal wave with an amplitude of 2.5 μm and a frequency of 5 Hz; tracking errors were within±0.1 μm and±0.2arcsec.
机译:这项研究提出并研究了用于定位误差补偿的六自由度压电平台。压电致动器的位移与平台之间的关系可以根据所安装的致动器的几何关系来计算。在这项研究中,已经设计了基于磁滞模型的前馈补偿器进行补偿,并使用PI控制器进行定位。前馈补偿器和PI控制器的组合使平台具有良好的定位和跟踪性能。载物台位置信息是由包含三个模块化二维测量设备的六自由度光学测量系统反馈的。每个模块都使用一个象限光电二极管(QPD),一个激光二极管和一个透镜。使用基于FPGA的处理器采集和处理测量信号以进行实时控制。线性和角度定位分辨率分别为0.02μm和0.1 arcsec。当平台被闭环控制时,定位误差在±0.1µm和±0.5arcsec的范围内。该载物台被控制为跟踪正弦波,其振幅为2.5μm,频率为5Hz。跟踪误差在±0.1μm和±0.2arcsec之内。

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