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Dynamics of Nonlinear Coupled Electrostatic Micromechanical Resonators under Two-Frequency Parametric and External Excitations

机译:非线性耦合静电微机械谐振器在两频参量和外激励下的动力学

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In this paper, nonlinear dynamics and chaos of electrostatically actuated MEMS resonators under two-frequency parametric and external excitations are investigated analytically and numerically. A nonlinear mass-spring-damping model is used to accounting for squeeze film damping and the parallel plate electrostatic force. The micro-structure is excited by a dc bias electrostatic force and a harmonic force with a frequency tuned closely to their fundamental natural frequencies (combination oscillation). The quality factor is calculated for the microcantilever beam of the resonator considering squeeze film damping. The effect of nonlinear squeeze film damping on the frequency response, quality factor, resonant frequency and nonlinear dynamic characteristics of the dynamic system are provided with numerical simulations using the bifurcation diagram, Poicare maps, largest Lyapunov exponent and phase portrait. The results show that the dynamic system goes through a complex nonlinear vibration as the system parameters change. It is indicated that the effect of nonlinear squeeze film damping should be considered due to its decreasing the quality factor and changing the nonlinear phenomena of the MEMS resonators.
机译:本文分析和数值研究了在两个频率参数和外部激励下静电驱动的MEMS谐振器的非线性动力学和混沌。非线性质量弹簧阻尼模型用于说明挤压膜阻尼和平行板静电力。直流偏置静电力和谐波力激发了微结构,其频率与它们的基本固有频率(组合振荡)非常接近。考虑到挤压膜阻尼,针对谐振器的微悬臂梁计算品质因数。使用分叉图,Poicare映射,最大Lyapunov指数和相像,通过数值模拟,提供了非线性挤压膜阻尼对动力系统的频率响应,品质因数,共振频率和非线性动力特性的影响。结果表明,随着系统参数的变化,动态系统会经历复杂的非线性振动。结果表明,应考虑非线性挤压膜阻尼的影响,因为它会降低品质因数并改变MEMS谐振器的非线性现象。

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