Department of Information and Communication Engineering, Chosun University, Gwangju 61452, Republic of Korea.
Sensors (Basel). 2023 May 24;23(11):5034. doi: 10.3390/s23115034.
Terahertz (THz) is a promising technology for future wireless communication networks, particularly for 6G and beyond. The ultra-wide THz band, ranging from 0.1 to 10 THz, can potentially address the limited capacity and scarcity of spectrum in current wireless systems such as 4G-LTE and 5G. Furthermore, it is expected to support advanced wireless applications requiring high data transmission and quality services, i.e., terabit-per-second backhaul systems, ultra-high-definition streaming, virtual/augmented reality, and high-bandwidth wireless communications. In recent years, artificial intelligence (AI) has been used mainly for resource management, spectrum allocation, modulation and bandwidth classification, interference mitigation, beamforming, and medium access control layer protocols to improve THz performance. This survey paper examines the use of AI in state-of-the-art THz communications, discussing the challenges, potentials, and shortcomings. Additionally, this survey discusses the available platforms, including commercial, testbeds, and publicly available simulators for THz communications. Finally, this survey provides future strategies for improving the existing THz simulators and using AI methods, including deep learning, federated learning, and reinforcement learning, to improve THz communications.
太赫兹(THz)是未来无线通信网络的一项有前途的技术,特别是对于 6G 及以后的技术。超宽太赫兹频段,范围从 0.1 到 10 THz,有可能解决当前无线系统(如 4G-LTE 和 5G)中有限的容量和频谱稀缺问题。此外,它有望支持需要高数据传输和高质量服务的先进无线应用,即每秒 terabit 的回程系统、超高清流媒体、虚拟现实/增强现实以及高带宽无线通信。近年来,人工智能(AI)主要用于资源管理、频谱分配、调制和带宽分类、干扰缓解、波束成形以及介质访问控制层协议,以提高 THz 性能。本调查论文研究了人工智能在最先进的 THz 通信中的应用,讨论了挑战、潜力和缺点。此外,本调查还讨论了现有的平台,包括用于 THz 通信的商业、测试平台和公开可用的模拟器。最后,本调查提供了改进现有 THz 模拟器和使用 AI 方法(包括深度学习、联邦学习和强化学习)来改进 THz 通信的未来策略。