基于改进重复控制的压电管扫描仪利萨轨迹运动控制

Linlin Li, Guoying Gu, Limin Zhu
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引用次数: 0

摘要

为了提高原子力显微镜中压电管扫描仪对Lissajous轨迹的跟踪性能,提出了改进的重复控制(MRC)方法,该方法能够抑制由迟滞非线性和交叉耦合效应引起的周期性跟踪误差。首先介绍了利萨约轨迹的基本原理和MRC技术。利用MRC方案的插件特性,在反馈回路中设计了比例积分(PI)控制器,实现高精度运动控制。将PI+MRC与传统PI控制器的跟踪性能进行了比较,验证了该方法对利萨轨迹跟踪的有效性。另外,通过不同的控制策略,给出了期望的Lissajous轨迹和实际的扫描轨迹。实验结果表明,基于mrc的技术显著提高了跟踪性能,在扫描频率为25 hz时,均方根跟踪误差从4328nm减小到63.3nm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motion Control of the Piezoelectric Tube Scanner for Lissajous Trajectories with Modified Repetitive Control
In this paper, the modified repetitive control (MRC) approach is developed to improve the tracking performance of piezoelectric tube scanner in Atomic Force Microscope for Lissajous trajectories, which has the capability to reject the periodic tracking errors induced by hysteresis nonlinearity and the cross-coupling effect. The fundamental of Lissajous trajectory and the MRC technique are presented initially. As the plug-in feature of MRC scheme, a proportional-integral (PI) controller is also designed in feedback loop for realizing the high-precision motion control. The tracking performance of the scanner with PI+MRC is compared with the conventional PI controller to show the effectiveness of the developed method for Lissajous trajectory tracking. The desired Lissajous trajectory and the actual scan trajectory are additionally demonstrated for the scanner with different control strategies. According to the experiment results, the MRC-based technique improves the tracking performance significantly, in which the root mean square tracking error is reduced from 4328nm to 63.3nm for the scanning frequency of 25-Hz.
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