采用液晶基板的光束转向反射

M. Ismail, R. Cahill
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引用次数: 19

摘要

雷达捕获和跟踪系统通常需要产生单个或多个动态可重构波束,这些波束必须在扫描体积内快速引导。微带相控阵通常用于这些应用,因为这种类型的天线通常可以设计为满足图案形状和覆盖要求,并且可以简单地通过改变周期结构中单个元素的相位来扫描波束。本文介绍了利用各向异性向列液晶(LC)衬底的电学特性来制造一种适用于波束扫描反射天线的移相器的初步研究结果。利用有限元计算机模型建立了贴片元件的LC厚度与可获得的反射相位范围之间的关系,其中材料介电常数的变化可以通过在贴片和地平面之间施加直流电压来获得。波导模拟器的测量结果证明了预测的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beam steering reflectarrays using liquid crystal substrate
Radar acquisition and tracking systems often require the generation of single or multiple dynamically reconfigurable beams, which must be steered rapidly within the scan volume. Microstrip phased arrays are often used for these applications because this type of antenna can normally be designed to satisfy the pattern shape and coverage requirements and the beam can be scanned simply by varying the phase of the individual elements in the periodic structure. In this paper we present the preliminary results of a study to exploit the electrical properties of anisotropic nematic liquid crystal (LC) substrate in order to create a phase shifter which is suitable for beam scanning reflectarray antennas. A finite element computer model is used to establish the relationship between the LC thickness and the obtainable reflection phase range for a patch element, where the change in material permittivity can be obtained by applying a DC voltage between the patch and the ground plane. Waveguide simulator measurements are used to demonstrate the validity of the predictions.
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