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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >A Flat Dual-Polarized Transformation-Optics Beamscanning Luneburg Lens Antenna Using PCB-Stacked Gradient Index Metamaterials
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A Flat Dual-Polarized Transformation-Optics Beamscanning Luneburg Lens Antenna Using PCB-Stacked Gradient Index Metamaterials

机译:使用PCB堆叠梯度指数超材料的扁平双极化变换光学束扫描Luneburg透镜天线

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摘要

Based on a transformation optics method, a flat compact dual-polarized Luneburg lens antenna is proposed and implemented using the printed-circuit-board-stacked gradient-index metamaterials for beamscanning and multibeam applications at X-bands. The transformed material properties of the planar Luneburg lens are designed with 17-layered permittivity distribution of polynomials. Each layer is discretized into 41×41 pixels made of broadband and less polarization-dependent unit cells responsible for desired index distributions. The effects of transformation, approximation, and discretization on the lens performance are analyzed comprehensively. Also, to validate the implementation method, a flat Luneburg lens with a thickness of 14.1 mm, a focal length of 28 mm, and an aperture size of 98.9 × 98.9 mm2 is designed and tested. A stacked aperture-coupled patch antenna operating at 10 GHz is applied as a feeder. The measured results show that the proposed antenna can operate over a bandwidth of ~20% with an antenna efficiency of 32%, a cross-polarization level of <;-17.1 dB, as well as the maximum gain of 15.9/16.35 dBi and a scanning angle of ±32°/±35° for two orthogonal polarizations, respectively. The presented flat Luneburg lens antenna featuring broad bandwidth, high gain, wide scanning angle, and easy fabrication has a high potential in 5G wireless communication, imaging, and remote sensing applications.
机译:基于变换光学方法,提出了扁平紧凑型双极化Luneburg透镜天线,并使用印刷电路板堆叠的梯度指数超材料实现了X波段的束扫描和多波束应用。平面Luneburg透镜的变换后的材料特性设计为具有多项式的17层介电常数分布。将每一层离散化为41×41像素,该像素由宽带和负责所需折射率分布的偏振依赖性较小的晶胞组成。全面分析了变换,逼近和离散化对镜头性能的影响。另外,为验证实施方法,设计并测试了厚度为14.1 mm,焦距为28 mm,孔径为98.9×98.9 mm2的平面Luneburg透镜。将工作在10 GHz的堆叠式孔径耦合贴片天线用作馈线。测量结果表明,所建议的天线可以在〜20%的带宽上工作,天线效率为32%,交叉极化电平<;-17.1 dB,最大增益为15.9 /。对于两个正交极化,分别为16.35 dBi和±32°/±35°的扫描角。提出的扁平Luneburg透镜天线具有宽带宽,高增益,宽扫描角和易于制造的特点,在5G无线通信,成像和遥感应用中具有很大的潜力。

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