Aerial communication is gradually taking an assertive role within common societal behaviors by means of unmanned aerial vehicles (UAVs), high-altitude platforms (HAPs), and fixed-wing aircrafts (FWAs). Such devices can assist general operations in a diverse set of heterogeneous applications, such as video-surveillance, remote delivery and connectivity provisioning in crowded events and emergency scenarios. Given their increasingly higher technology penetration rate, telco operators started looking at the sky as a new potential direction to enable a three-dimensional (3D) communication paradigm. However, designing flying mobile stations involves addressing a daunting number of challenges, such as an excessive on-board control overhead, variable battery drain and advanced antenna design. To this end, the newly-born Smart Surfaces technology may come to help: reconfigurable intelligent surfaces (RIS) may be flexibly installed on-board to control the terrestrial propagation environment from an elevated viewpoint by involving low-complex and battery-limited solutions. In this paper, we shed light on novel RIS-based use-cases, corresponding requirements, and potential solutions that might be adopted in future aerial communication infrastructures.
翻译:空中通信正在通过无人驾驶飞行器、高高度平台和固定翼飞机等手段,逐渐在共同的社会行为中扮演一个坚定的角色,这些装置可以帮助在拥挤事件和紧急情况下进行多种不同应用的一般操作,如视频监视、远程传送和连通性提供等。鉴于其技术渗透率越来越高,电信运营商开始将天空视为一个新的潜在方向,以便能够形成一个三维(3D)通信模式。然而,设计飞行移动站需要应对巨大的挑战,如机载控制高管、变式电池排水和先进的天线设计。为此,新诞生的智能表面技术可以起到帮助作用:在船上灵活安装可调整的智能表面(RIS),以便通过采用低兼容性和电池有限的解决方案,从更高的角度控制地面传播环境。本文我们介绍了基于RIS的新使用案例、相应要求以及未来空中通信基础设施可能采用的潜在解决方案。