利用超扭转观测器重建垂直定向探针显微镜剪切力

Thang Nguyen-Tien, S. G. Khan, C. Edwards, G. Herrmann, R. Harniman, S. Burgess, M. Antognozzi, M. Miles
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引用次数: 6

摘要

本文提出了一种利用超扭转滑模观测器重构垂直定向悬臂(VOC)尖端未知剪切力的方案,该悬臂是布里斯托尔大学垂直定向探针显微镜(VOPM)的关键部件。VOPM的独特之处在于,VOC尖端与试样的距离可以使用悬臂梁的水平激励的已知振幅来测量。该振幅直接受到VOC与生物标本上方流体层的相互作用的影响。流体相互作用引起的剪切力随着刀尖与试样的接近而增大。因此,剪切力的知识是另一个重要的措施密切的VOC尖端试样。仿真实例表明了其最终实时应用的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shear force reconstruction in a vertically oriented probe microscope using a super-twisting observer
In this paper, a scheme employing a super-twisting sliding mode observer is proposed to reconstruct the unknown shear forces at the tip of the vertically oriented cantilever (VOC) which is the key component of Bristol University's Vertically Oriented Probe Microscope (VOPM). The VOPM is unique in the sense that the distance of the VOC tip from the specimen can be measured using the known amplitude of the horizontal excitation of the cantilever. This amplitude is directly influenced by the interaction of the VOC with the fluid layer above the biological specimen. The shear forces caused by the fluid interaction increase with the proximity of the tip to the specimen. Thus, knowledge of the shear forces is another important measure of the closeness of the VOC tip to the specimen. Simulation examples show the feasibility of its eventual real-time application.
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