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Integrated Microstrip Antennas and Phased Arrays with Mode-Free Electromagnetic Bandgap Materials for Scan Blindness Elimination

机译:集成微带天线和分阶段阵列,具有无模式电磁带隙材料,用于扫描失明消除

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摘要

This article discusses the investigation of the use of mode-free electromagnetic bandgap materials, a novel bandgap-antenna structure, to eliminate scan blindness from two-dimensional infinite microstrip phased arrays. This electromagnetic bandgap material is multi-functional; in addition to suppressing both surface and leaky waves, it also radiates to broadside direction as an antenna element within the mode-free bandgap region. A strip line impedance matching network is used to match the bandgap-antenna element's input impedance to 50 , so that the actual bandgap behavior of the structure on the array can be obtained since the strip line does not allow couplings within the matching network. In addition, internal couplings within the unit element of the bandgap-antenna structure, which is composed of four metallic layers, are analyzed in detail; these internal couplings vary with array element's excitation phase or scan angles, therefore, an optimum structure must consider scan behavior as well.
机译:本文讨论了对无模式电磁带隙材料,新型带隙 - 天线结构的使用的研究,以消除来自二维无限微带相控阵的扫描失明。这种电磁带隙材料是多功能的;除了抑制两个表面和泄漏波之外,它还作为无模式带隙区域内的天线元件辐射到横向方向。条带线阻抗匹配网络用于将带隙 - 天线元件的输入阻抗匹配为50,从而可以获得阵列上的结构的实际带隙行为,因为条带线不允许匹配网络内的耦合。另外,详细分析由四个金属层组成的带隙 - 天线结构的单元元件内的内部联轴器;这些内部耦合随着阵列元件的激励相位或扫描角度而变化,因此,最佳结构也必须考虑扫描行为。

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