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Accurate and Efficient Modelling to Calculate the Voltage Dependence of Liquid Crystal Based Reflectarray Cells

机译:精确高效的建模以计算基于液晶的反射阵列单元的电压依赖性

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摘要

Two models that can predict the voltage-dependent scattering from liquid crystal (LC)-based reflectarray cells are presented. The validity of both numerical techniques is demonstrated using measured results in the frequency range 94-110 GHz. The most rigorous approach models, for each voltage, the inhomogeneous and anisotropic permittivity of the LC as a stratified media in the direction of the biasing field. This accounts for the different tilt angles of the LC molecules inside the cell calculated from the solution of the elastic problem. The other model is based on an effective homogeneous permittivity tensor that corresponds to the average tilt angle along the longitudinal direction for each biasing voltage. In this model, convergence problems associated with the longitudinal inhomogeneity are avoided, and the computation efficiency is improved. Both models provide a correspondence between the reflection coefficient (losses and phase-shift) of the LC-based reflectarray cell and the value of biasing voltage, which can be used to design beam scanning reflectarrays. The accuracy and the efficiency of both models are also analyzed and discussed.
机译:提出了两种可以预测基于液晶(LC)的反射阵列单元的电压相关散射的模型。使用94-110 GHz频率范围内的测量结果证明了这两种数值技术的有效性。对于每个电压,最严格的方法都将LC作为分层介质在偏磁场方向上的不均匀和各向异性介电常数建模。这说明了根据弹性问题的解决方法计算得出的液晶盒内部LC分子的不同倾斜角。另一个模型基于有效的均匀介电常数张量,该张量对应于每个偏置电压沿纵向的平均倾斜角。该模型避免了与纵向不均匀性有关的收敛问题,提高了计算效率。两种模型都提供了基于LC的反射阵列单元的反射系数(损耗和相移)与偏置电压值之间的对应关系,可用于设计光束扫描反射阵列。还分析和讨论了两个模型的准确性和效率。

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