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Prism-based Leaky-Lens Antennas at 60 GHz for 5G Point-to-Point Communication Links

机译:用于5G点对点通信链路的基于棱镜的60 GHz泄漏透镜天线

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Two cost-effective implementations of a leaky-lens antenna at 60 GHz are proposed for high-throughput 5G communication links. The leaky-wave feed is realized in gap-waveguide technology, where the radiation from the slit is controlled with glide-symmetric holes. The beam-squint of the leaky-wave radiation is mitigated, owing to the coupling of a complementary-dispersive prism. Here, two prisms are implemented, one with glide-symmetric holes, and another with substrate-integrated-holes (SIHs), both integrated in parallel plates with the leaky-wave feeding. Thanks to glide symmetry, better control of the leakage rate, lower costs, and better tolerance to manufacturing are achieved in comparison with the non-glide holey counterpart. In addition, the SIH-based design exhibits a substantially enhanced bandwidth with even better robustness. In the analysis of the leaky-wave feed, more accuracy and reduced computational time is achieved by using a multi-mode method. Both antennas show stable radiation patterns, featuring high efficiency, high gain, and low side lobe levels.
机译:对于高吞吐量5G通信链路,提出了60 GHz泄漏透镜天线的两种经济高效的实现方式。漏波馈送是通过间隙波导技术实现的,其中缝隙的辐射由滑行对称孔控制。由于互补色散棱镜的耦合,泄漏波辐射的斜视得到缓解。在这里,实现了两个棱镜,一个棱镜具有滑动对称的孔,另一个棱镜具有衬底集成孔(SIH),两者均通过漏波馈入而集成在平行板中。由于具有滑行对称性,因此与非滑行多孔通孔相比,可以更好地控制泄漏率,降低成本,并具有更好的制造公差。此外,基于SIH的设计具有显着增强的带宽,甚至具有更好的鲁棒性。在泄漏波馈源的分析中,通过使用多模式方法可以实现更高的准确性和更少的计算时间。两种天线均显示稳定的辐射方向图,具有高效率,高增益和低旁瓣电平的特点。

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