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Ridged waveguide flared radiator array using electromagnetic bandgap material

机译:使用电磁带隙材料的脊形波导喇叭形辐射器阵列

摘要

Presently disclosed is an antenna system having an array of ridged waveguide Vivaldi radiator (RWVR) antenna elements fed through a corporate network of suspended air striplines (SAS) with an electromagnetic bandgap (EBG) ground plane surrounding the ridged waveguide transition. The SAS transfers the electromagnetic energy to the radiating element via the ridged waveguide coupler. The Vivaldi radiator matches the output impedance of the ridged waveguide coupler/SAS to the intrinsic impedance of the surrounding medium. The EBG, which may be comprised of a photonic bandgap material or other metamaterial, allows for better frequency and bandwidth performance in a lower-profile array package, thereby reducing size and weight of the array for applications requiring small size and or low-inertia packaging. In alternate embodiments, radiating elements other than Vivaldi radiators may be used. This configuration also reduces the complexity of the manufacturing process, which in turn lowers cost.
机译:当前公开的是一种天线系统,该天线系统具有由通过悬浮空气带状线(SAS)的公司网络馈送的脊形波导维瓦尔第辐射器(RWVR)天线元件组成的阵列,该阵列具有围绕脊形波导过渡的电磁带隙(EBG)接地平面。 SAS通过脊形波导耦合器将电磁能传输到辐射元件。 Vivaldi辐射器将脊形波导耦合器/ SAS的输出阻抗与周围介质的本征阻抗相匹配。 EBG可能由光子带隙材料或其他超常材料组成,可在较低轮廓的阵列封装中实现更好的频率和带宽性能,从而为需要小尺寸和/或低惯性封装的应用减小阵列的尺寸和重量。在替代实施例中,可以使用除维瓦尔第辐射器之外的辐射元件。这种配置还降低了制造过程的复杂性,从而降低了成本。

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