面向卫星网络的双频可重构元表面

Kun Woo Cho, Yasaman Ghasempour, K. Jamieson
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引用次数: 1

摘要

第一批用于互联网服务的低地球轨道卫星网络最近已经部署,并且规模正在增长,但在许多实际情况下将面临部署挑战。本文探讨了双频、电子可调谐的智能表面如何实现卫星和移动用户之间的动态波束对准,使城市峡谷中的服务成为可能,并改善农村地区的服务。我们的设计是同类中第一个以Ku无线电频段的双通道为目标,采用新颖的双惠更斯谐振器设计,利用无线电互反性,允许我们的表面同时在卫星上行和下行方向上引导能量,并在反射和传输操作模式下进行。我们的表面Wall-E是在电磁模拟器中设计和评估的,其传输效率为94%,反射效率为85%,在超过150度的视野范围内,传输和反射的转向角度最多为6 dB的功率损失。在75cm2的表面下,我们的链路预算计算预测,与自由空间路径和砖墙穿透相比,进入农村家庭窗户的链路的信噪比分别提高了4 dB和24 dB。
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Towards dual-band reconfigurable metasurfaces for satellite networking
The first low earth orbit satellite networks for internet service have recently been deployed and are growing in size, yet will face deployment challenges in many practical circumstances of interest. This paper explores how a dual-band, electronically tunable smart surface can enable dynamic beam alignment between the satellite and mobile users, make service possible in urban canyons, and improve service in rural areas. Our design is the first of its kind to target dual channels in the Ku radio frequency band with a novel dual Huygens resonator design that leverages radio reciprocity to allow our surface to simultaneously steer energy in the satellite uplink and downlink directions, and in both reflective and transmissive modes of operation. Our surface, Wall-E, is designed and evaluated in an electromagnetic simulator and demonstrates 94% transmission efficiency and a 85% reflection efficiency, with at most 6 dB power loss at steering angles over a 150 degree field of view for both transmission and reflection. With 75cm2 surface, our link budget calculations predict 4 dB and 24 dB improvement in the SNR of a link entering the window of a rural home in comparison to the free-space path and brick wall penetration, respectively.
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