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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Nonlinear dynamics and bifurcations in external feedback control of microcantilevers in atomic force microscopy
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Nonlinear dynamics and bifurcations in external feedback control of microcantilevers in atomic force microscopy

机译:原子力显微镜中微悬臂梁外部反馈控制中的非线性动力学和分叉

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摘要

We study nonlinear dynamics and bifurcations in external feedback control of vibrating microcantilevers in atomic force microscopy. The efficiency and validity of the control methodology for microcantilevers was demonstrated and abundant nonlinear phenomena were observed in a previous numerical study. Using the averaging method and center manifold theory, we analyze a degenerate bifurcation of codimension two to explain a key feature of the previous numerical results. Numerical examples are also given, in which theoretical results are compared with numerical computations for bifurcations and unstable manifolds.
机译:我们在原子力显微镜中研究振动微悬臂梁的外部反馈控制中的非线性动力学和分叉。证明了微悬臂梁控制方法的有效性和有效性,并且在先前的数值研究中观察到了丰富的非线性现象。使用平均方法和中心流形理论,我们分析了二维的退化分叉,以解释先前数值结果的关键特征。还给出了数值示例,其中将理论结果与分叉和不稳定歧管的数值计算进行了比较。

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