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Nano-precision control of micromirrors using output feedback

机译:使用输出反馈的微镜纳米精度控制

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Micromirror arrays may be used as spatial light modulators, to vary the amplitude and phase of an incident image. The difficulty of controlling analog micromirrors to within a fraction of a wavelength of the incident light - that is, to within a few nanometers - has led to the development and successful commercialization of digital devices, in which the components take one of only two possible configurations. In this paper we revisit true analog operation, in light of recent advances in nonlinear control. Our focus is electrostatically actuated mirrors, for which control objectives include extending the range of motion, improving transient performance, improving positioning accuracy and preventing electrode contact. We consider two models of individual micromirrors, suitable for controller design. The first treats each micromirror as a rigid body, and allows arbitrary rotation and translation. This model is developed in the context of dynamics on the Lie group SE(3). We simulate the performance of an observer-based controller for this system. The second model, based on work by Pelesko, is developed directly from a PDE representation of an electrostatically forced membrane. We show via simulation that an unstable equilibrium point of this model may be stabilized by proportional output feedback.
机译:微镜阵列可以用作空间光调制器,以改变入射图像的幅度和相位。控制模拟微镜的难度在入射光波长的一部分内 - 即在几纳米内导致了数字设备的开发和成功商业化,其中组件仅采用两种可能的配置中的一个。在本文中,根据非线性控制的最近进步,我们重新审视了真正的模拟操作。我们的重点是静电致动反射镜,控制目标包括延长运动范围,提高瞬态性能,提高定位精度和防止电极接触。我们考虑两种单独的微镜型号,适用于控制器设计。首先将每个微镜视为刚体,并且允许任意旋转和翻译。该模型是在LIE组SE(3)的动态的语境中开发的。我们模拟了对该系统的基于观察者的控制器的性能。基于Pelesko的工作的第二种模型直接由静电膜的PDE表示开发。我们通过模拟显示该模型的不稳定平衡点可以通过比例输出反馈来稳定。

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