Non-terrestrial communications have emerged as a key enabler for seamless connectivity in the upcoming generation networks. This kind of network can support high data rate communications among aerial platforms (i.e., unmanned aerial vehicles (UAVs), high-altitude platforms (HAPs), and satellites) and cellular networks, achieving anywhere and anytime connections. However, there are many practical implementation limitations, especially overload power consumption, high probability of blockage, and dynamic propagation environment. Fortunately, the recent technology reconfigurable intelligent surface (RIS) is expected to be one of the most cost-efficient solutions to address such issues. RIS with low-cost elements can bypass blockages and create multiple line-of-sight (LoS) links, and provide controllable communication channels. In this paper, we present a comprehensive literature review on the RIS-assisted non-terrestrial networks (RANTNs). Firstly, the framework of the RANTNs is introduced with detailed discussion about distinct properties of RIS in NTNs and the two types of RIS, that is, terrestrial RISs (TRISs), and aerial RISs (ARISs), and the classification of RANTNs including RIS-assisted air-to-ground (A2G)/ground-to-air (G2A), ARIS-assisted ground-to-ground (G2G), and RIS-assisted air-to-air (A2A) communications. In combination with next-generation communication technologies, the advanced technologies in RANTNs are discussed. Then we overview the literature related to RANTNs from the perspectives of performance analysis and optimization, followed by the widely used methodologies. Finally, open challenges and future research direction in the context of the RANTNs are highlighted.
翻译:这种网络可以支持航空平台(即无人驾驶飞行器、高空平台、卫星)和蜂窝网络之间的高数据率通信,在任何地方和任何时间实现连接。然而,有许多实际的实施限制,特别是超负荷电耗、高阻力和动态传播环境。幸运的是,最近的可重新配置智能表面技术(RIS)预计将是解决这些问题的最具有成本效益的解决办法之一。具有低成本要素的RIS可以绕过屏蔽和创建多线视觉(LOS)链接,并提供可控通信渠道。在本文件中,我们介绍了对IRS辅助的非地面网络(RANTNs)的全面文献审查。首先,RANTNs框架引入了关于NTNs和两种类型的RIS的特性的详细讨论,即:地面RIS2(TRIS2)、ARTA-RA-RA(TRIS2)的未来和空中分析(TRIS2),以及从陆、陆、陆、陆、陆、空、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆、陆