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Linear Modeling and Control of Comb-Actuated Resonant MEMS Mirror With Nonlinear Dynamics

机译:具有非线性动力学梳理谐振MEMS镜的线性建模与控制

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This article presents a novel method to derive and identify an accurate small perturbation model of a comb-actuated resonant microelectromechanical system (MEMS) mirror with highly nonlinear dynamics. Besides the nonlinear stiffness and damping, the comb-drives add nonlinearities due to their electrostatic nature and their effect on the dynamic mirror amplitude over frequency behavior. The proposed model is based on a period to period energy conservation and applies for most nonlinearities present in an oscillator such as MEMS mirrors. It is shown that for specific nominal operation points with square wave excitation, the small perturbation model is linear for a wide range. The full dynamics of the derived linear model are parametrized by three constants, that can be estimated by the phase locked loop (PLL), performing a proposed identification method only based on phase measurements. An analysis of control laws usually applied in a PLL provides important information for the proper design of controllers to meet the desired behavior for individual applications.
机译:本文介绍了一种新的方法来得出和识别具有高度非线性动力学的梳斗谐振微机电系统(MEMS)镜的精确小扰动模型。除了非线性刚度和阻尼之外,梳状驱动因其静电性质而增加非线性,以及它们对频率行为的动态镜幅度的影响。所提出的模型基于周期的节能,并且适用于诸如MEMS镜中的振荡器中存在的大多数非线性。结果表明,对于具有方波励磁的特定标称操作点,小扰动模型是宽范围的线性。衍生的线性模型的完整动态由三个常数参数化,其可以由锁相环(PLL)估计,仅基于相位测量执行所提出的识别方法。对PLL通常应用的对照法的分析提供了适当设计控制器的重要信息,以满足各个应用程序的所需行为。

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