Saeed Nasir, Loukil Mohamed Habib, Sarieddeen Hadi, Al-Naffouri Tareq Y, Alouini Mohamed-Slim
Department of Electrical EngineeringNorthern Border University Arar 9280 Saudi Arabia.
Department of Computer, Electrical and Mathematical Sciences and EngineeringKing Abdullah University of Science and Technology Thuwal 23955-6900 Saudi Arabia.
IEEE Trans Mol Biol Multiscale Commun. 2021 Dec 14;8(3):138-157. doi: 10.1109/TMBMC.2021.3135198. eCollection 2022 Sep.
Following recent advancements in Terahertz (THz) technology, THz communications are currently being celebrated as key enablers for various applications in future generations of communication networks. While typical communication use cases are over medium-range air interfaces, the inherently small beamwidths and transceiver footprints at THz frequencies support nano-communication paradigms. In particular, the use of the THz band for in-body and on-body communications has been gaining attention recently. By exploiting the accurate THz sensing and imaging capabilities, body-centric THz biomedical applications can transcend the limitations of molecular, acoustic, and radio-frequency solutions. In this paper, we study the use of the THz band for body-centric networks, by surveying works on THz device technologies, channel and noise modeling, modulation schemes, and networking topologies. We also promote THz sensing and imaging applications in the healthcare sector, especially for detecting zootonic viruses such as Coronavirus. We present several open research problems for body-centric THz networks.
随着太赫兹(THz)技术最近的进展,太赫兹通信目前被誉为未来几代通信网络中各种应用的关键推动因素。虽然典型的通信使用场景是在中程空中接口上,但太赫兹频率固有的小波束宽度和收发器占用空间支持纳米通信范式。特别是,太赫兹频段用于体内和体表通信最近受到了关注。通过利用精确的太赫兹传感和成像能力,以身体为中心的太赫兹生物医学应用可以超越分子、声学和射频解决方案的局限性。在本文中,我们通过调查太赫兹设备技术、信道和噪声建模、调制方案以及网络拓扑方面的工作,研究太赫兹频段在以身体为中心的网络中的应用。我们还推动太赫兹传感和成像在医疗保健领域的应用,特别是用于检测人畜共患病毒,如冠状病毒。我们提出了一些以身体为中心的太赫兹网络的开放研究问题。