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PVPF control of piezoelectric tube scanners

机译:压电管扫描仪的PVPF控制

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摘要

As in most applications of nanotechnology speed and precision are important requirements for getting good topographical maps of material surfaces using Scanning Tunneling Microscopes (STM) and Atomic Force Microscopes (AFM). Many STMs and AFMs use Piezoelectric tubes for scanning and positioning with nanometer resolution. In this work a piezoelectric tube of the type typically used in STMs and AFMs is considered. Scanning using this piezoelectric tube is hampered by the presence of a low-frequency resonance mode that is easily excited to produce unwanted vibrations. The presence of this low-frequency resonance mode restricts the scanning speed of the piezoelectric tube. Concept of a Positive Velocity and Position Feedback (PVPF) controller is introduced and a controller is designed to dampen the effect of the undesired first resonance mode. To achieve good precision, specific control signals are designed for the closed loop system to track a raster pattern. Experimental results revel a significant damping of the resonance mode of interest, and consequently, a good tracking performance.
机译:像在纳米技术的大多数应用中一样,速度和精度是使用扫描隧道显微镜(STM)和原子力显微镜(AFM)获得材料表面良好地形图的重要要求。许多STM和AFM使用压电管进行纳米分辨率的扫描和定位。在这项工作中,考虑了通常用于STM和AFM的类型的压电管。低频共振模式的存在阻碍了使用该压电管的扫描,该共振模式很容易被激发而产生不必要的振动。这种低频谐振模式的存在限制了压电管的扫描速度。引入了正速度和位置反馈(PVPF)控制器的概念,并设计了一种控制器来抑制不需要的第一共振模式的影响。为了获得良好的精度,为闭环系统设计了特定的控制信号以跟踪光栅图案。实验结果显示出对感兴趣的共振模式的显着衰减,因此具有良好的跟踪性能。

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