论文标题
当物理层关键时代符合RIS时:机遇,挑战和未来的道路
When Physical Layer Key Generation Meets RIS: Opportunities, Challenges, and Road Ahead
论文作者
论文摘要
物理层密钥生成(PLKG)是一项有前途的技术,可以以插件的方式获得一对无线通信用户之间的对称键。共享的熵源几乎完全来自无线电通道的固有随机性,该通道高度取决于无线环境。但是,在某些静态/块褪色的无线环境中,很难保证无线通道的固有随机性。最近,由于可重新配置的智能表面(RISS)具有出色的电磁波控制能力,因此可以定制无线通道环境。在本文中,我们概述了在静态室内环境中(包括其频道模型和硬件体系结构)中介绍的PLKG。然后,我们提出了潜在的应用程序场景,并通过RIS辅助PLKG原型系统上的概念验证实验来分析RIS辅助PLKG的设计挑战,包括通道互惠,RIS重新配置速度和RIS部署。特别是,我们的实验结果表明,在静态室内环境中,关键产生速率比没有RI的关键生成率高15倍。接下来,我们通过原型实验设计了RIS攻击攻击,并讨论其可能的攻击防御对策。最后,确定了几个结论和未来的方向。
Physical layer key generation (PLKG) is a promising technology to obtain symmetric keys between a pair of wireless communication users in a plug-and-play manner. The shared entropy source almost entirely comes from the intrinsic randomness of the radio channel, which is highly dependent on the wireless environments. However, in some static/block fading wireless environments, the intrinsic randomness of the wireless channel is hard to be guaranteed. Very recently, thanks to reconfigurable intelligent surfaces (RISs) with their excellent ability on electromagnetic wave control, the wireless channel environment can be customized. In this article, we overview the RISaided PLKG in static indoor environments, including its channel model and hardware architectures. Then, we propose potential application scenarios and analyze the design challenges of RIS aided PLKG, including channel reciprocity, RIS reconfiguration speed and RIS deployment via proof-of-concept experiments on a RIS-aided PLKG prototype system. In particular, our experimental results show that the key generation rate is 15-fold higher than that without RIS in a static indoor environment. Next, we design a RIS jamming attack via a prototype experiment and discuss its possible attack-defense countermeasures. Finally, several conclusions and future directions are identified.