E Silva Jefferson D S, Ribeiro Jéssica A P, Adanvo Vignon F, Mafra Samuel B, Mendes Luciano L, Li Yonghui, de Souza Rausley A A
National Institute of Telecommunications (INATEL), Santa Rita do Sapucaí 37540-000, Brazil.
School of Electrical and Information Engineering, University of Sydney, Sydney, NSW 2006, Australia.
Sensors (Basel). 2023 Dec 20;24(1):33. doi: 10.3390/s24010033.
Terahertz (THz) band will play an important role in enabling sixth generation (6G) envisioned applications. Compared with lower frequency signals, THz waves are severely attenuated by the atmosphere temperature, pressure, and humidity. Thus, designing a THz communication system must take into account how to circumvent or diminish those issues to achieve a sufficient quality of service. Different solutions are being analyzed: intelligent communication environments, ubiquitous artificial intelligence, extensive network automation, and dynamic spectrum access, among others. This survey focuses on the benefits of integrating intelligent surfaces (ISs) and THz communication systems by providing an overview of IS in wireless communications with the scanning of the recent developments, a description of the architecture, and an explanation of the operation. The survey also covers THz channel models, differentiating them based on deterministic and statistical channel modeling. The IS-aided THz channels are elucidated at the end of the survey. Finally, discussions and research directions are given to help enrich the IS field of research and guide the reader through open issues.
太赫兹(THz)频段将在实现第六代(6G)预期应用中发挥重要作用。与低频信号相比,太赫兹波会受到大气温度、压力和湿度的严重衰减。因此,设计太赫兹通信系统必须考虑如何规避或减少这些问题,以实现足够的服务质量。目前正在分析不同的解决方案:智能通信环境、无处不在的人工智能、广泛的网络自动化以及动态频谱接入等。本综述通过概述智能表面(IS)在无线通信中的应用、扫描其最新发展情况、描述其架构并解释其运行方式,重点探讨了将智能表面与太赫兹通信系统集成的好处。该综述还涵盖了太赫兹信道模型,并根据确定性和统计信道建模对它们进行了区分。在综述结尾阐述了智能表面辅助的太赫兹信道。最后,给出了讨论和研究方向,以帮助丰富智能表面的研究领域,并引导读者了解未解决的问题。