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Reflection phase characterizations of the EBG ground plane for low profile wire antenna applications

机译:扁平线天线应用的EBG接地平面的反射相位特性

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Mushroom-like electromagnetic band-gap (EBG) structures exhibit unique electromagnetic properties that have led to a wide range of electromagnetic device applications. This paper focuses on the reflection phase feature of EBG surfaces: when plane waves normally illuminate an EBG structure, the phase of the reflected field changes continuously from 180° to -180° versus frequency. One important application of this feature is that one can replace a conventional perfect electric conductor (PEC) ground plane with an EBG ground plane for a low profile wire antenna design. For this design, the operational frequency band of an EBG structure is defined as the frequency region within which a low profile wire antenna radiates efficiently, namely, having a good return loss and radiation patterns. The operational frequency band is the overlap of the input-match frequency band and the surface-wave frequency bandgap. It is revealed that the reflection phase curve can be used to identify the input-match frequency band inside of which a low profile wire antenna exhibits a good return loss. The surface-wave frequency bandgap of the EBG surface that helps improve radiation patterns is very close to its input-match frequency band, resulting in an effective operational frequency band. In contrast, a thin grounded slab cannot work efficiently as a ground plane for low profile wire antennas because its surface-wave frequency bandgap and input-match frequency band do not overlap. Parametric studies have been performed to obtain design guidelines for EBG ground planes. Two novel EBG ground planes with interesting electromagnetic features are also presented. The rectangular patch EBG ground plane has a polarization dependent reflection phase and the slotted patch EBG ground plane shows a compact size.
机译:类似于蘑菇的电磁带隙(EBG)结构具有独特的电磁特性,从而导致了广泛的电磁设备应用。本文着重于EBG表面的反射相位特征:当平面波正常照亮EBG结构时,反射场的相位随频率从180°连续变化到-180°。此功能的一个重要应用是,可以用EBG接地平面代替传统的完美电导体(PEC)接地平面,以实现低剖面线天线设计。对于该设计,将EBG结构的工作频带定义为低轮廓线天线有效辐射的频率范围,即具有良好的回波损耗和辐射方向图。工作频带是输入匹配频带和表面波频带隙的重叠。结果表明,反射相位曲线可用于识别输入匹配频带,在该频带内,薄型线天线显示出良好的回波损耗。有助于改善辐射方向图的EBG表面的表面波频带隙非常接近其输入匹配频带,从而形成有效的工作频带。相反,薄的接地板不能有效地用作薄型线天线的接地面,因为它的表面波频带隙和输入匹配频带不重叠。已经进行了参数研究,以获得EBG接地平面的设计指南。还介绍了两个具有有趣电磁特性的新型EBG接地平面。矩形贴片EBG接地平面具有偏振相关的反射相位,开槽的贴片EBG接地平面显示紧凑的尺寸。

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