Investigations Into the Linear Coupling Between Symmetric and Anti-Symmetric Modes of V-Shaped MEMS Resonators Under Electrostatic Perturbation

N. Alcheikh, H. Ouakad, Sofiane Ben Mbarek, M. Younis
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引用次数: 1

Abstract

In this paper, we investigate experimentally and theoretically the linear coupling between the first two symmetric and anti-symmetric modes of an electrothermally and electrostatically actuated in-plane V-shaped micro-beam. The micro-beam is fabricated from highly doped silicon and is sandwiched between four electrodes to electrostatically activate both modes of vibrations. When tuning the electrothermal voltage, the natural frequencies of the two modes approach each other until they cross. Under electrostatic actuation, it is shown experimentally that the system undergoes a transition between modes crossing to veering. In addition, an analytical study is presented based on a Galerkin-based reduced-order model of a nonlinear Euler–Bernoulli shallow arch beam equation. The analytical results are compared to experimental data showing excellent agreement.
静电扰动下v形MEMS谐振器对称与反对称模式的线性耦合研究
本文从实验和理论上研究了电热和静电驱动平面内v型微光束的前两个对称模和反对称模之间的线性耦合。微光束由高度掺杂的硅制成,夹在四个电极之间,以静电激活两种振动模式。当调整电热电压时,两种模式的固有频率彼此接近,直到它们交叉。实验表明,在静电驱动下,系统经历了从模式交叉到转向的过渡。此外,本文还对非线性欧拉-伯努利浅拱梁方程的伽辽金降阶模型进行了分析研究。将分析结果与实验数据进行了比较,结果吻合良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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