论文标题

Terahertz通讯可以在雨雪中起作用:不利天气条件对140 GHz的频道的影响

Terahertz Communications Can Work in Rain and Snow: Impact of Adverse Weather Conditions on Channels at 140 GHz

论文作者

Sen, Priyangshu, Hall, Jacob, Polese, Michele, Petrov, Vitaly, Bodet, Duschia, Restuccia, Francesco, Melodia, Tommaso, Jornet, Josep M.

论文摘要

下一代无线网络将利用高于100 GHz的频谱来实现在多GHz范围内的带宽上的超高数据速率通信。但是,在如此高频率下的传播环境在整个协议堆栈设计中引入了挑战,从物理层信号处理到应用程序设计。因此,对现实部署场景和超宽频段的渠道传播和褪色特征有整体理解是至关重要的。在本文中,我们通过一场频道的频道运动活动,在典型的城市回程场景中,通过频道响起的运动,通过频道响起的运动来评估天气状况对130-150 GHz频段无线链接的影响。我们提出了一种新颖的频道声音设计,该设计捕获了带有-82 dbm灵敏度和20 GHz带宽的信号。我们分析链接预算,容量以及频道参数,例如延迟扩展和K因子。我们的实验结果表明,在考虑的上下文中,不利天气不会中断链接,而是引入了一些其他约束(例如,高延迟差异和在雪地状况下的路径损失)时需要考虑到可靠的第六代(6G)通信链路以上100 GHz以上的沟通链接。

Next-generation wireless networks will leverage the spectrum above 100 GHz to enable ultra-high data rate communications over multi-GHz-wide bandwidths. The propagation environment at such high frequencies, however, introduces challenges throughout the whole protocol stack design, from physical layer signal processing to application design. Therefore, it is fundamental to develop a holistic understanding of the channel propagation and fading characteristics over realistic deployment scenarios and ultra-wide bands. In this paper, we conduct an extensive measurement campaign to evaluate the impact of weather conditions on a wireless link in the 130-150 GHz band through a channel sounding campaign with clear weather, rain, and snow in a typical urban backhaul scenario. We present a novel channel sounder design that captures signals with -82 dBm sensitivity and 20 GHz of bandwidth. We analyze link budget, capacity, as well as channel parameters such as the delay spread and the K-factor. Our experimental results indicate that in the considered context the adverse weather does not interrupt the link, but introduces some additional constraints (e.g., high delay spread and increase in path loss in snow conditions) that need to be accounted for in the design of reliable Sixth Generation (6G) communication links above 100 GHz.

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