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A Planar Resonator Antenna Based on a Woodpile EBG Material

机译:基于木桩EBG材料的平面谐振天线

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A resonator antenna made from a complex artificial surface and a metallic ground plane is described. The complex surface is realized using a woodpile electromagnetic bandgap (EBG) material, which is shown to have a frequency dependent reflection plane location. A highly directive radiation pattern is created due to the angle-dependent attenuation of the resonator antenna coupling to free space. The antenna has the advantages of low height, low loss, and low sidelobes. It is shown that the directivity can be varied over a fixed range by changing the aperture size of the device, with the maximum directivity determined by both the feed element and EBG material properties. The complete bandgap for the woodpile EBG material is confirmed from a band diagram, and its properties as a complex surface are investigated through transmission calculation and measurement. The design of the antenna is described, and two means of exciting the resonator, a microstrip patch and a double slot, are investigated. Theoretical results for these two antennas are calculated the using finite-difference time-domain and are shown to be in good agreement with measured results.
机译:描述了由复杂的人造表面和金属接地平面制成的谐振器天线。复杂表面是使用木桩电磁带隙(EBG)材料实现的,该材料显示具有与频率有关的反射平面位置。由于谐振器天线耦合到自由空间的角度相关的衰减,产生了高度定向的辐射图。该天线具有高度低,损耗低和旁瓣低的优点。结果表明,通过改变装置的孔径尺寸,可以在固定范围内改变方向性,最大方向性由进料元件和EBG材料特性共同决定。从带图确定了木桩EBG材料的完整带隙,并通过透射计算和测量研究了其作为复杂表面的性能。描述了天线的设计,并研究了两种激励谐振器的方法:微带贴片和双缝隙。这两个天线的理论结果是使用有限差分时域计算的,并且与测量结果非常吻合。

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