论文标题

元图涂层设备:一种用于节能和安全6G通信的新范式

Metasurface-Coated Devices: A New Paradigm for Energy-Efficient and Secure 6G Communications

论文作者

Tsiftsis, Theodoros A., Valagiannopoulos, Constantinos, Liu, Hongwu, Boulogeorgos, Alexandros-Apostolos A., Miridakis, Nikolaos I.

论文摘要

第六代(6G)时代面临的挑战是可以安全地提供高能效率和自主通信。在这个方向上,我们通过采用能够支持超低功率(ULP)传输的能量收集的跨表面涂层设备来报告能源效率(EE),能源收集(EH)和安全性能。相反,可重新配置的智能表面(RIS)可以通过将反射信号通过视为从继电器传输来合并在接收器中,因此提出的跨表面壁板可以在发射器和接收机上部署。除了信号检测外,被动跨面涂层设备还可以实现超高的EE和EH,并在合法用户和/或ULP传输下的窃听者的间谍功能上增强了保密率。为了量化它们的效率,我们为使用跨表壳的利用提供了整体模型。在上述模型的基础上,提出了初步结果,揭示了与RIS范式相比,提出的概念的前所未有的优势。此外,我们列举了新概念的主要优势,并定义了其在6G时代的作用。最后,讨论了可能的研究方向。

The sixth-generation (6G) era comes with the challenge of offering highly energy-efficient and autonomous communications securely. In this direction, we report energy efficiency (EE), energy harvesting (EH), and secure performance by employing power-collecting metasurface-coated devices capable of supporting ultra-low-power (ULP) transmissions. Contrary to reconfigurable intelligent surfaces (RIS), where the reflected signal can be combined at the receiver by being treated as transmitted from a relay, the proposed metasurface claddings can be deployed at either or both the transmitter and receiver. The passive metasurface-coated devices can achieve ultra-high EE and EH besides the signal detection, combined with an enhanced secrecy rate at the legitimate user and/or improved spying capabilities of the eavesdroppers under ULP transmission. To quantify their efficiency, we provide a holistic model for the utilization of the metasurface shells. Building upon the aforementioned model, preliminary results are presented that reveal the unprecedented superiority of the proposed concept compared to the RIS paradigm. Additionally, we enumerate the main advantages of the new concept and define its role in the 6G era. Finally, possible research directions are discussed.

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