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Ultra-Precision Measurement and Control of Angle Motion in Piezo-Based Platforms Using Strain Gauge Sensors and a Robust Composite Controller

机译:使用应变片传感器和鲁棒复合控制器的压电平台中角运动的超精密测量和控制

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摘要

The measurement and control strategy of a piezo-based platform by using strain gauge sensors (SGS) and a robust composite controller is investigated in this paper. First, the experimental setup is constructed by using a piezo-based platform, SGS sensors, an AD5435 platform and two voltage amplifiers. Then, the measurement strategy to measure the tip/tilt angles accurately in the order of sub-μrad is presented. A comprehensive composite control strategy design to enhance the tracking accuracy with a novel driving principle is also proposed. Finally, an experiment is presented to validate the measurement and control strategy. The experimental results demonstrate that the proposed measurement and control strategy provides accurate angle motion with a root mean square (RMS) error of 0.21 μrad, which is approximately equal to the noise level.
机译:本文研究了使用应变片传感器(SGS)和鲁棒复合控制器的压电平台的测量和控制策略。首先,通过使用基于压电的平台,SGS传感器,AD5435平台和两个电压放大器来构建实验设置。然后,提出了一种测量策略,可以精确地测量亚微弧度的倾角/倾角。还提出了一种综合的复合控制策略设计,以一种新颖的驱动原理来提高跟踪精度。最后,提出了一个实验来验证测量和控制策略。实验结果表明,所提出的测量和控制策略可提供精确的角度运动,且均方根(RMS)误差为0.21μrad,大约等于噪声水平。

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