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Infinite array of printed dipoles integrated with a layer ofprinted strip grating for suppression of cross-polar radiation. II. Anidealized unidirectional conducting screen (UCS) model

机译:集成有印刷带状光栅层的无限量印刷偶极子阵列,用于抑制交叉极化辐射。二。理想化单向导电屏(UCS)模型

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摘要

For pt.I see ibid., vol.45, no.6, p.960, 1997. We present the analysis of an infinite array of printed dipoles covered by a unidirectionally conducting screen (UCS). This geometry is an idealization for a practical dipole array loaded on top by a strip-grating layer, which is of particular interest for low cross-polar radiation. The idealization using the UCS layer allows significant simplification in the analytical formulation, numerical computation, as well as basic physical understanding. Quite accurate results are obtained from the ideal model, valid for real grating-loaded dipole arrays with practical ranges of design parameters. The results from the present analysis are compared and contrasted with those from a rigorous analysis of the grating-loaded array, which demonstrates the practical usefulness and validity of the idealization
机译:对于pt.I,见同上,第45卷,第6期,第960页,1997年。我们介绍了由单向导电屏(UCS)覆盖的无限印刷偶极子阵列的分析。这种几何形状是实际理想的偶极子阵列的理想选择,该偶极子阵列由条状光栅层加载在顶部,这对于低交叉极化辐射特别重要。使用UCS层的理想化可以大大简化分析公式,数值计算以及基本的物理理解。从理想模型中可以获得非常准确的结果,对于具有实际设计参数范围的实际光栅加载偶极子阵列有效。将当前分析的结果与严格分析光栅加载阵列的结果进行比较和对比,这表明了理想化的实际有用性和有效性

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