论文标题
多个宽带Terahertz通过6G网络中的基于可调石墨烯的Metasurfaces通信
Multi-Wideband Terahertz Communications via Tunable Graphene-based Metasurfaces in 6G Networks
论文作者
论文摘要
预计下一代无线网络将利用Terahertz(0.1--10 THZ)频段,以满足未来应用的极端潜伏期和带宽密度要求。但是,随着THZ波面临严重的扩散和穿透损失以及分子吸收,该频段中系统的发展具有挑战性,这通过高度指导的天线导致了强烈的视线需求。最近,已提出了可重新配置的智能表面(RISS),以解决从非视线传播以及其他损害中得出的问题,通过将事件浪重定向到接收器并实施虚拟线的视线通信。但是,如果网络在多个频段运行,则RI提供的好处可能会丢失。在该位置论文中,根据可以在多个宽带透明度窗口中运行的可调石墨烯的RIS分析,评估了RIS范式在室内THZ方案中对6G的适用性。提供了这种RI的可能实现,并分别以0.65/0.85/1.05 THZ进行数值评估,这表明横梁转向和其他相关功能是可以实现的,具有出色的性能。最后,讨论了与基于多个带石墨烯的RIS的设计和制造相关的挑战,为在6G网络的背景下铺平了对多个THZ频段的同时控制的道路。
The next generation of wireless networks is expected to tap into the terahertz (0.1--10 THz) band to satisfy the extreme latency and bandwidth density requirements of future applications. However, the development of systems in this band is challenging as THz waves confront severe spreading and penetration losses, as well as molecular absorption, which leads to strong line-of-sight requirements through highly directive antennas. Recently, reconfigurable intelligent surfaces (RISs) have been proposed to address issues derived from non-line-of-sight propagation, among other impairments, by redirecting the incident wave toward the receiver and implementing virtual-line-of-sight communications. However, the benefits provided by a RIS may be lost if the network operates at multiple bands. In this position paper, the suitability of the RIS paradigm in indoor THz scenarios for 6G is assessed grounded on the analysis of a tunable graphene-based RIS that can operate in multiple wideband transparency windows. A possible implementation of such a RIS is provided and numerically evaluated at 0.65/0.85/1.05 THz separately, demonstrating that beam steering and other relevant functionalities are realizable with excellent performance. Finally, the challenges associated with the design and fabrication of multi-wideband graphene-based RISs are discussed, paving the way to the concurrent control of multiple THz bands in the context of 6G networks.