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Distributed sensing and shape control of piezoelectric bimorph mirrors

机译:压电双压电镜的分布式传感与形状控制

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As pan of a collaborative effort between Sandia National Laboratories and the University of Kentucky to develop a deployable mirror for remote sensing applications, research in shape sensing and control algorithms that leverage the distributed nature of electron gun excitation for piezoelectric bimorph mirrors is summarized. A coarse shape sensing technique is developed that uses reflected light rays from the sample surface to provide discrete slope measurements. Estimates of surface profiles are obtained with a cubic spline curve fitting algorithm. Experiments on a PZT bimorph illustrate appropriate deformation trends as a function of excitation voltage. A parallel effort to effect desired shape changes through electron gun excitation is also summarized. A one dimensional model-based algorithm is developed to correct profile errors in bimorph beams. A more useful two dimensional algorithm is also developed that relies on measured voltage-curvature sensitivities to provide corrective excitation profiles for the top and bottom surfaces of bimorph plates. The two algorithms are illustrated using finite element models of PZT bimorph structures subjected to arbitrary disturbances. Corrective excitation profiles that yield desired parabolic forms are computed, and are shown to provide the necessary corrective action.
机译:作为桑迪亚国家实验室和肯塔基大学之间的合作努力,概述了一种用于遥感应用的可部署镜,概括了利用压电双芯反射镜的电子枪激励的分布性质的形状传感和控制算法。开发了一种粗糙的形状传感技术,其使用来自样品表面的反射光线以提供离散的斜率测量。通过立方样条曲线拟合算法获得表面轮廓的估计。 PZT Bimorph的实验说明了作为激励电压的函数的适当变形趋势。还总结了通过电子枪激发实现所需形状改变的平行努力。开发了一种基于模型的基于模型的算法,以纠正Bimorph波束中的概要误差。还开发了一种更有用的二维算法,其依赖于测量的电压曲率敏感性,为Bimorph板的顶表面和底表面提供校正激发型材。使用经受任意干扰的PZT双芯片结构的有限元模型来说明这两种算法。计算所需抛物线形式的校正励磁轮廓,并显示为提供必要的校正动作。

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