论文标题

下一代无线网络的多模式高海拔平台站(HAP)

Multi-Mode High Altitude Platform Stations (HAPS) for Next Generation Wireless Networks

论文作者

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

论文摘要

高空平台站(HAPS)概念最近受到了行业和学术界的显着关注,以支持未来的无线网络。 HAP可以配备第五代(5G)和超越技术,例如大量多输入多输出(MIMO)和可重构智能表面(RIS)。因此,预计HAPS将支持农村和城市地区的众多应用。但是,这是以高能量消耗为代价,因此较短的游荡时间。为了解决此问题,我们设想使用多模式HAP的使用可以适应不同的模式,以减少能耗并延长HAPS的游荡时间。这些模式包括用于增强计算,缓存和通信服务的HAPS超级宏基础站(HAPS-SMB)模式,用于主动通信的HAPS继电器站(HAPS-RS)模式以及用于被动通信的HAPS-RIS模式。该多模HAP可确保操作主要依赖于被动通信有效载荷,同时仅在必要时才切换到Energy-Greedy Active模式。在本文中,我们从与其他非事物系统相比对HAPS特征进行了简要回顾,然后对提出的不同HAP模式进行了展示。随后,我们说明了所设想的多模式HAP,并讨论其好处和挑战。最后,我们通过案例研究来验证多模式效率。

The high altitude platform station (HAPS) concept has recently received notable attention from both industry and academia to support future wireless networks. A HAPS can be equipped with 5th generation (5G) and beyond technologies such as massive multiple-input multiple-output (MIMO) and reconfigurable intelligent surface (RIS). Hence, it is expected that HAPS will support numerous applications in both rural and urban areas. However, this comes at the expense of high energy consumption and thus shorter loitering time. To tackle this issue, we envision the use of a multi-mode HAPS that can adaptively switch between different modes so as to reduce energy consumption and extend the HAPS loitering time. These modes comprise a HAPS super macro base station (HAPS-SMBS) mode for enhanced computing, caching, and communication services, a HAPS relay station (HAPS-RS) mode for active communication, and a HAPS-RIS mode for passive communication. This multimode HAPS ensures that operations rely mostly on the passive communication payload, while switching to an energy-greedy active mode only when necessary. In this article, we begin with a brief review of HAPS features compared to other non-terrestrial systems, followed by an exposition of the different HAPS modes proposed. Subsequently, we illustrate the envisioned multi-mode HAPS, and discuss its benefits and challenges. Finally, we validate the multi-mode efficiency through a case study.

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