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Evaluating directivity and spacing height relationship of radome structure for miniaturized triband patch antenna

机译:评估小型斑块贴片天线径向结构的方向性和间隔高度关系

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摘要

The main focus is to obtain triband operation within the frequency range of 1–4GHz. Miniaturization of the overall size of the antenna is to the core of our effort. A novel approach is adopted for evaluating the relationship of directivity with the spacing height of copper grid layer over the patch, termed as radome structure by the present team of authors is presented. Numerous designs and models of radome structure are conceptually solved and evaluated using finite element method (FEM) based High Frequency Structure Simulator (HFSS) software tool. Single copper grid layer over the patch antenna for achieving high directivity is described. Newton's divided difference method is applied on the radome structure for evaluating the performance parameters of the antenna. A global formula is developed to indicate the relationship of the directivity with the spacing height of the patch antenna by varying the distance of copper grid layer and observing its effect on the directivity of the patch. A metamaterial cover over the microstrip patch antenna is reported to improve the directivity of the slotted patch antenna.
机译:主要重点是在1-4GHz的频率范围内获得Triband操作。天线的整体大小的小型化是我们努力的核心。采用一种新方法来评估与铜网格层的间距与铜网的间距关系的关系,称为当前作者组织的云族结构。使用基于有限元方法(FEM)的高频结构模拟器(HFSS)软件工具,概念性地解决和评估了许多设计和模型。描述了用于实现高方向性的贴片天线上的单铜网格层。牛顿的分开差异方法应用于基于天线的径向结构。通过改变铜网格层的距离并观察其对贴片的方向性的影响,制定了一种全局公式来指示与贴片天线的间隔高度的方向性的关系。据报道,微带贴片天线上的超材料覆盖以提高开槽贴片天线的方向性。

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