Experimental Demonstration of a mmWave Passive Access Point Extender Based on a Binary Reconfigurable Intelligent Surface

V. Popov, M. Odit, J. Gros, V. Lenets, A. Kumagai, M. Fink, Kotaro Enomoto, G. Lerosey
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引用次数: 25

Abstract

As data rates demands are exploding, 5G will soon rely on mmWaves that offer much higher bandwidths. Yet at these frequencies, attenuation and diffraction of waves require point to point communications with beamforming base stations that are complex and power greedy. Furthermore, since any obstacle at these frequencies completely blocks the waves, the networks must be extremely dense, resulting in dramatic increase of its cost. One way to avoid this problem is to redirect beams coming from base stations at many locations with Reconfigurable Intelligent Surfaces, in order to increase their coverage even in cluttered environments. Here we describe and experimentally demonstrate a binary tunable metasurface operating at 28 GHz, based on standard PCB and off the shelves PIN diodes. We show that it can be used as a Reconfigurable Intelligent Surface that beamforms an incoming plane wave at a given angle to one or several outgoing plane waves at angles reconfigurable in real time. Most importantly we use this 20 cm × 20 cm reconfigurable Intelligent Surface alongside software defined radio and up/down converters at 28 GHz, and demonstrate a wireless link between an emitter and a receiver 10 m away, in a non-line-of-sight configuration, hence proving the validity of the approach.
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基于二进制可重构智能表面的毫米波无源接入点扩展器实验演示
随着数据速率需求的爆炸式增长,5G将很快依赖于提供更高带宽的毫米波。然而,在这些频率下,波的衰减和衍射需要与波束成形基站进行点对点通信,这是复杂和耗电的。此外,由于这些频率上的任何障碍物都完全阻挡了电波,因此网络必须非常密集,从而导致其成本急剧增加。避免这个问题的一种方法是用可重构智能表面重新定向来自许多位置的基站的波束,以便在混乱的环境中增加它们的覆盖范围。在这里,我们描述并实验演示了一个基于标准PCB和现成的PIN二极管工作在28ghz的二进制可调谐超表面。我们表明,它可以作为一个可重构智能表面,以给定的角度将入射平面波波束成一个或几个以可重构的角度发出的平面波。最重要的是,我们将这个20厘米× 20厘米可重构智能表面与软件定义的无线电和28 GHz的上/下转换器一起使用,并在非视距配置中演示了发射器和接收器之间10米远的无线链路,从而证明了该方法的有效性。
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