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Application of quadratic controller to control the pull-in instability of a micro-resonator

机译:二次控制器在微谐振器吸合不稳定性控制中的应用

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摘要

This study is on the nonlinear dynamics of a clamped-clamped electro-statically actuated capacitive micro-beam. The micro-resonator is composed of silicon and PZT as a piezoelectric material. PZT is functionally distributed along the height of the micro-beam according to the power law distribution law. The micro-resonator is simultaneously subjected to DC piezoelectric and AC harmonic actuations. The governing equation of the motion is derived by the minimization of the Hamiltonian and generalized to the viscously damped systems. The static and dynamic analysis of an electrostatically actuated micro beam with and without controller is presented. The results depict that by adding the controller we can increase the pull-in voltage of micro-resonator and consequently prevent the pull-in phenomena in micro-beam. The effect of varies controllers are discussed and changing the coefficients of quadratic controller are presented. Using frequency response curves, the effect of adding controller in the vicinity of primary resonance is presented.
机译:这项研究是关于一个钳位的静电驱动电容微束的非线性动力学。微谐振器由硅和作为压电材料的PZT组成。根据幂律分布定律,PZT在功能上沿微束高度分布。微谐振器同时受到直流压电和交流谐波的激励。运动的控制方程式通过最小化哈密顿量得出,并推广到粘性阻尼系统。介绍了带和不带控制器的静电致动微束的静态和动态分析。结果表明,通过增加控制器,可以提高微谐振器的引入电压,从而防止了微束中的引入现象。讨论了各种控制器的影响,并提出了改变二次控制器系数的方法。使用频率响应曲线,显示了在主共振附近添加控制器的效果。

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