论文标题
分子吸收效果:一把双刃剑Terahertz Communications
Molecular Absorption Effect: A Double-edged Sword of Terahertz Communications
论文作者
论文摘要
Terahertz频段(THZ)(0.1---10〜THz)的通信被视为未来6G和无线系统的有前途的技术,以克服不断增长的无线数据流量和拥挤的频谱的挑战。随着从微波带到THZ频段的频率增加,新频谱为无线通信系统设计带来了前所未有的挑战。分子吸收效应是新的THZ光谱特性之一,它在特定频率下扩大了路径损失和噪声。这为THZ无线通信系统带来了双刃剑。一方面,从数据速率的角度来看,分子吸收是有害的,因为它会降低接收的信号功率并降低通道容量。另一方面,值得注意的是,对于无线安全性和秘密性,可以利用分子吸收效果来维护用户之间的通信。在本文中,在各种情况下分析了分子吸收效果及其对THZ系统设计的影响,其最终目标是提供指南,以更好地利用这种独特的THZ现象。具体而言,由于分子吸收在很大程度上取决于传播介质,因此讨论了由各种媒体组成的不同交流场景,包括陆地,空气和空间,海面和纳米级通信。此外,提出了两个新型的分子吸收启发性的安全和秘密通信方案,其中分子吸收效应被用作提高安全性和秘密性的关键和独特功能。
Communications in the terahertz band (THz) (0.1--10~THz) have been regarded as a promising technology for future 6G and beyond wireless systems, to overcome the challenges of evergrowing wireless data traffic and crowded spectrum. As the frequency increases from the microwave band to the THz band, new spectrum features pose unprecedented challenges to wireless communication system design. The molecular absorption effect is one of the new THz spectrum properties, which enlarges the path loss and noise at specific frequencies. This brings in a double-edged sword for THz wireless communication systems. On one hand, from the data rate viewpoint, molecular absorption is detrimental, since it mitigates the received signal power and degrades the channel capacity. On the other hand, it is worth noticing that for wireless security and covertness, the molecular absorption effect can be utilized to safeguard THz communications among users. In this paper, the features of the molecular absorption effect and their impact on the THz system design are analyzed under various scenarios, with the ultimate goal of providing guidelines to how better exploit this unique THz phenomenon. Specifically, since the molecular absorption greatly depends on the propagation medium, different communication scenarios consisting of various media are discussed, including terrestrial, air and space, sea surface and nano-scale communications. Furthermore, two novel molecular absorption enlightened secure and covert communication schemes are presented, where the molecular absorption effect is utilized as the key and unique feature to boost security and covertness.