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Nonlinear dynamical system of micro-cantilever under combined parametric and forcing excitations in MEMS

机译:MEMS中参数和强迫激励联合作用下的微悬臂梁非线性动力学系统

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In this paper, a simplified model for the dynamics of an electrostatically actuated micro-cantilever in micro-electro-mechanical systems (MEMS) is presented. The harmonic balance (HB) method is applied to simulate the resonant amplitude frequency responses of this system under combined parametric and forcing excitations. The nonlinearities of this system, which is manipulated under different parametrical resonant conditions, applied voltages and various clearances between the two plates, are studied. The possible effects of nonlinear spring stiffness and nonlinear response from the air damping on this system, which can be ignored, are discussed. The nonlinear dynamical behaviors are illustrated using phase portrait and Poincare mapping. In addition, the analytical solutions are agreed well to the numerical resolutions. This investigation is to provide a dependable evidence for design, testing and applications of a micro-cantilever based in MEMS.
机译:在本文中,提出了一种简化的模型,用于微机电系统(MEMS)中静电驱动的微悬臂梁的动力学。应用谐波平衡(HB)方法来模拟在组合参数激励和强迫激励下该系统的共振振幅频率响应。研究了该系统的非线性,该非线性在不同的参数谐振条件,施加的电压和两块板之间的间隙之间进行控制。讨论了非线性弹簧刚度和空气阻尼非线性响应对该系统的可能影响,可以忽略不计。使用相图和庞加莱映射来说明非线性动力学行为。此外,解析解与数值分辨率非常吻合。这项研究旨在为基于MEMS的微悬臂梁的设计,测试和应用提供可靠的证据。

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