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Uncertainty-enabled design of electromagnetic reflectors with integrated shape control

机译:具有集成形状控制的电磁反射器的能力设计

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We implemented a computationally efficient model for a corner-supported, thin, rectangular, orthotropic poly-vinylidene fluoride (PVDF) laminate membrane, actuated by a two-dimensional array of segmented electrodes. The laminate can be used as shape-controlled electromagnetic reflector and the model estimates the reflector's shape given an array of control voltages. In this paper, we describe a model to determine the shape of the laminate for a given distribution of control voltages. Then, we investigate the surface shape error and its sensitivity to the model parameters. Subsequently, we analyze the simulated deflection of the actuated bimorph using a Zernike polynomial decomposition. Finally, we provide a probabilistic description of reflector performance using statistical methods to quantify uncertainty. We make design recommendations for nominal parameter values and their tolerances based on optimization under uncertainty using multiple methods.
机译:我们为拐角型,薄,矩形,正交多偏二氟乙烯(PVDF)层压膜实施了计算上有效的模型,由分段电极的二维阵列致动。层压材料可以用作形状控制的电磁反射器,并且模型估计反射器的形状给定阵列控制电压。在本文中,我们描述了一种模型,用于确定用于给定的控制电压分布的层压板的形状。然后,我们研究了表面形状误差及其对模型参数的敏感性。随后,我们使用Zernike多项式分解来分析致动双芯片的模拟偏转。最后,我们使用统计方法提供反射器性能的概率描述,以量化不确定性。我们根据使用多种方法根据不确定性下的优化进行标称参数值的设计建议及其公差。

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