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Real-Time Sliding Mode Observer Scheme for Shear Force Estimation in a Transverse Dynamic Force Microscope

机译:横向动力力显微镜中用于剪切力估计的实时滑模观测器方案

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摘要

This paper describes a sliding mode observer scheme for estimation of the shear force affecting the cantilever in a (TDFM). The vertically oriented cantilever is oscillated in proximity to the specimen under investigation. The amplitude of oscillation of the cantilever tip is affected by these shear forces. They are created by the ordered-water layer above the specimen. The oscillation amplitude is therefore a measure of distance between the tip and the surface of the specimen. Consequently, the estimation of the shear forces provides useful information about the specimen characteristics. For estimating the shear forces, an approximate finite dimensional model of the cantilever is created using the method of lines. This model is subsequently reduced for its model order. An unknown input sliding mode observer has been used to reconstruct the unknown shear forces using only tip position measurements and the cantilever excitation. This paper describes the development of the sliding mode scheme and presents experimental results from the TDFM set up at the Centre for Nanoscience and Quantum Information (NSQI) at Bristol University.
机译:本文介绍了一种滑模观测器方案,用于估计影响(TDFM)中悬臂的剪切力。垂直定向的悬臂在所研究的样本附近振荡。悬臂尖端的振动幅度受这些剪切力的影响。它们是由标本上方的有序水层创建的。因此,振荡幅度是尖端与样本表面之间距离的量度。因此,剪切力的估算可提供有关样品特性的有用信息。为了估计剪切力,使用线法创建了悬臂的近似有限尺寸模型。此模型随后因其模型顺序而减少。一个未知的输入滑模观测器已被用于仅使用尖端位置测量和悬臂激励来重建未知的剪力。本文介绍了滑模方案的发展,并提供了由布里斯托大学纳米科学与量子信息中心(NSQI)设立的TDFM的实验结果。

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