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Experimental Validation of a Wideband Metasurface for Wide-Angle Scanning Leaky-Wave Antennas

机译:宽角扫描漏波天线的宽带超表面的实验验证

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Beam scanning arrays typically suffer from scan loss; an increasing degradation in gain as the beam is scanned from broadside toward the horizon in any given scan plane. Here, a metasurface is presented that reduces the effects of scan loss for a leaky-wave antenna (LWA). The metasurface is simple, being composed of an ultrathin sheet of subwavelength split-ring resonators. The leaky-wave structure is balanced, scanning from the forward region, through broadside, and into the backward region, and designed to scan in the magnetic plane. The metasurface is effectively invisible at broadside, where balanced LWAs are most sensitive to external loading. It is shown that the introduction of the metasurface results in increased directivity, and hence, gain, as the beam is scanned off broadside, having an increasing effect as the beam is scanned to the horizon. Simulations show that the metasurface improves the effective aperture distribution at higher scan angles, resulting in a more directive main beam, while having a negligible impact on cross-polarization gain. Experimental validation results show that the scan range of the antenna is increased from to , when loaded with the metasurface, demonstrating a flattened gain profile over a 135° range centered about broadside. Moreover, this scan range occurs over a frequency band spanning from 9 to 15.5 GHz, demonstrating a relative bandwidth of 53% for the metasurface.
机译:光束扫描阵列通常会遭受扫描损失。随着光束在任何给定的扫描平面中从宽边朝水平方向扫描,增益的增加会越来越大。在这里,提出了一种超表面,可以减少漏波天线(LWA)的扫描损耗影响。超表面很简单,由超薄的亚波长开口环谐振器片组成。泄漏波结构是平衡的,从正向区域扫描穿过宽边,再进入向后区域,并设计为在磁平面中扫描。在平衡的LWA对外部载荷最敏感的地方,超表面实际上是看不见的。结果表明,超表面的引入导致方向性增加,因此,当光束从较宽的侧面扫描时,增益增加,而随着光束被扫描至水平线,效果越来越大。仿真表明,超表面改善了在较高扫描角度下的有效孔径分布,从而产生了更定向的主光束,同时对交叉极化增益的影响可忽略不计。实验验证结果表明,当加载超表面时,天线的扫描范围从增大到,表明在以宽边为中心的135°范围内平坦的增益曲线。此外,此扫描范围发生在从9到15.5 GHz的频带上,表明超颖表面的相对带宽为53%。

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