论文标题

空中平台中可重构智能表面的链接预算分析

Link Budget Analysis for Reconfigurable Smart Surfaces in Aerial Platforms

论文作者

Alfattani, Safwan, Jaafar, Wael, Hmamouche, Yassine, Yanikomeroglu, Halim, Yongaçoglu, Abbas

论文摘要

预计在第六代无线网络中,包括无人驾驶汽车(无人机),高海拔平台站(HAPS)和低地球轨道(LEO)卫星在内的非事物网络有望在第六代无线网络中发挥关键作用。凭借其固有的功能,例如灵活的放置,宽阔的足迹和首选的频道条件,他们可以在当前的地面网络中应对一些挑战,但是,它们的成功和广泛采用依赖于能源效率的机载通信系统。在这种情况下,将可重构的智能表面(RSS)集成到空中平台中,这被认为是空中平台的节能和成本效益部署的关键推动者。实际上,RSS由低成本反射器组成,能够以几乎被动的方式巧妙地指导信号。我们在本文中调查了RSS辅助通信的链接预算,其中两个讨论的RSS反射范式在文献中,即镜头和散射反射范式类型。具体而言,我们使用标准化的渠道模型分析了配备RSS的空中平台的特征,并将其通信性能与RSS辅助的陆地网络进行了比较。此外,我们在两个反射范式下得出了最佳的空中平台位置。获得的结果为RSS辅助通信的设计提供了重要的见解。例如,鉴于HAPS具有较大的RSS表面,因此在大多数研究的情况下,它提供了出色的链路预算性能。相比之下,无人机上的有限RSS区域以及Leo卫星通信中的大量传播损失使他们不利地支持陆地用户。最后,配备RSS平台的最佳位置可能取决于平台的高度,覆盖范围和环境类型。

Non-terrestrial networks, including Unmanned Aerial Vehicles (UAVs), High Altitude Platform Station (HAPS) and Low Earth Orbiting (LEO) satellites, are expected to have a pivotal role in the sixth generation wireless networks. With their inherent features such as flexible placement, wide footprint, and preferred channel conditions, they can tackle several challenges in current terrestrial networks However, their successful and widespread adoption relies on energy-efficient on-board communication systems. In this context, the integration of Reconfigurable Smart Surfaces (RSS) into aerial platforms is envisioned as a key enabler of energy-efficient and cost-effective deployments of aerial platforms. Indeed, RSS consist of low-cost reflectors capable of smartly directing signals in a nearly passive way. We investigate in this paper the link budget of RSS-assisted communications under the two discussed RSS reflection paradigms in the literature, namely the specular and the scattering reflection paradigm types. Specifically, we analyze the characteristics of RSS-equipped aerial platforms and compare their communication performance with that of RSS-assisted terrestrial networks, using standardized channel models. In addition, we derive the optimal aerial platforms placements under both reflection paradigms. The obtained results provide important insights for the design of RSS-assisted communications. For instance, given that a HAPS has a large RSS surface, it provides superior link budget performance in most studied scenarios. In contrast, the limited RSS area on UAVs and the large propagation loss in LEO satellite communications make them unfavorable candidates for supporting terrestrial users. Finally, the optimal location of the RSS-equipped platform may depend on the platform's altitude, coverage footprint, and type of environment.

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