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A Shape-Function Grammar Approach for the Synthesis and Modelling of Pixel-Microstrip-Antennas

机译:像素微带天线合成和建模的形状函数语法方法

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Classical microstrip antenna models are either an empirically derived mathematical formula or a full-wave numerical solution. The former type is limited to specific simple geometries, is very fast to compute, and to some extent relates dimensional attributes to electromagnetic properties. On the other hand the latter is applicable to any arbitrary geometrical shape and is very accurate, but is computationally intensive and does not give an explanation of how the device works. In this paper a novel approach to modelling microstrip antennas that address this void is proposed. The model makes use of a coupled shape-function grammar to yield an estimate of the electromagnetic properties of arbitrary shaped microstrip antennas and also relates shape attributes to electromagnetic properties. The model is demonstrated on a pixel microstrip antenna structure in analysis and synthesis.
机译:经典的微带天线模型是经验衍生的数学公式或全波数值解决方案。前者类型仅限于特定的简单几何形状,非常快速地计算,并且在一定程度上涉及电磁特性的尺寸属性。另一方面,后者适用于任何任意的几何形状,非常准确,但是计算密集,并不阐述设备如何工作原理。在本文中,提出了一种建立解决该空隙的微带天线的新方法。该模型利用耦合形状函数语法来产生任意形状微带天线的电磁特性的估计,并且还将形状属性与电磁特性相关联。在分析和合成中的像素微带天线结构上证明了模型。

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