Cantilever dynamics modelling for the Transverse Dynamic Force Microscope

Thang Nguyen-Tien, C. Edwards, G. Herrmann, T. Hatano, S. Burgess, M. Miles
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引用次数: 4

Abstract

This paper studies the dynamics of the cantilever in a Transverse Dynamic Force Microscope (TDFM). A series expansion approach for the irrational transfer functions of modelling the cantilever dynamics is presented in terms of an infinite sum of second-order rational transfer functions and a finite dimensional linear time invariant (LTI) system model is developed. An approximate model of the cantilever can then be obtained using a finite number of rational transfer functions. This approach preserves the physical constants from the underlying partial differential equation, and retains them in the approximate model. Future work will use these finite dimensional LTI systems as the basis for the design of observers and controllers for the TDFM at the NSQI centre at the University of Bristol.
横向动力显微镜悬臂梁动力学建模
本文在横向动力显微镜(TDFM)上研究了悬臂梁的动力学特性。提出了用二阶有理传递函数的无穷和来描述悬臂梁动力学的不合理传递函数的级数展开方法,建立了有限维线性时不变系统模型。然后可以使用有限数量的有理传递函数获得悬臂梁的近似模型。这种方法保留了基础偏微分方程中的物理常数,并将它们保留在近似模型中。未来的工作将使用这些有限维LTI系统作为布里斯托尔大学NSQI中心TDFM的观测器和控制器设计的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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