论文标题
智能反射表面辅助无线钥匙生成,用于低渗透环境
Intelligent Reflecting Surface-Assisted Wireless Key Generation for Low-Entropy Environments
论文作者
论文摘要
物理层密钥生成是两个无线通信方之间加密密钥建立的有前途的候选人。它提供信息理论安全性,是公钥技术的有吸引力替代品。在这里,无线无线电通道的固有随机性用作共享熵源,以生成加密密钥材料。但是,实际实现通常会遭受静态通道条件的影响,这些条件的随机性有限。过去,已经进行了大量的研究工作来解决这一基本限制。但是,当前的解决方案不是通用的,也不需要专用的硬件扩展名,例如可重构天线。在本文中,我们提出了一种基于智能反射表面(IRS)的随机通道响应的新型无线钥匙生成体系结构。由于其被动性,合作的IRS非常适合为传统的资源受限的无线电提供随机性。我们进行了第一个实用研究,以成功地证明了使用OFDM系统的基于IRS的物理层密钥生成。在静态环境中,仅使用单个子载波,我们的IRS辅助原型系统实现了量化后的密钥生成率(KGR)为97.39 bps,密钥分歧率(KDR)为6.5%,同时通过标准随机性测试。
Physical layer key generation is a promising candidate for cryptographic key establishment between two wireless communication parties. It offers information-theoretic security and is an attractive alternative to public-key techniques. Here, the inherent randomness of wireless radio channels is used as a shared entropy source to generate cryptographic key material. However, practical implementations often suffer from static channel conditions which exhibit a limited amount of randomness. In the past, considerable research efforts have been made to address this fundamental limitation. However, current solutions are not generic or require dedicated hardware extensions such as reconfigurable antennas. In this paper, we propose a novel wireless key generation architecture based on randomized channel responses from an intelligent reflecting surface (IRS). Due to its passive nature, a cooperative IRS is well-suited to provide randomness for conventional resource-constrained radios. We conduct the first practical studies to successfully demonstrate IRS-based physical-layer key generation with an OFDM system. In a static environment, using a single subcarrier only, our IRS-assisted prototype system achieves a key generation rate (KGR) of 97.39 bps with 6.5% key disagreement rate (KDR) after quantization, while passing standard randomness tests.