Reconfigurable Intelligent Surface Speeds up MIMO Secret Key Generation

Jie Tang, H. Wen, Zeguang Li, Ruifei Wang
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Abstract

Recently, there is a growing interest in employing reconfigurable intelligent surface (RIS) to assist physical layer key generation in wireless networks. However, current works only studied the RIS-aided key generation schemes in SISO (single-input-single-output) communications, which have relatively low key generation rate (KGR). Therefore, here, in order to fill this gap, we propose the new and really novel RIS-aided MIMO (multiple-input-multiple-output) key generation scheme. By fully exploring the reflection signals from the RIS to the legitimate communication partners as the introduced, controllable and artificial randomness, combined with the spatial degree-of-freedom of RIS and MIMO incident and reflected signals, the KGR performance can be significantly improved. The information theoretical security is fully investigated, and the upper bound value of KGR is derived to comprehensively evaluate the system performance. The simulations fully validate the effectiveness and robustness of the proposed new and really novel, and interesting scheme.
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可重构智能表面加速MIMO密钥生成
最近,人们对利用可重构智能表面(RIS)来辅助无线网络中的物理层密钥生成越来越感兴趣。然而,目前的工作只研究了单输入单输出通信中ris辅助密钥生成方案,该方案的密钥生成率(KGR)相对较低。因此,在这里,为了填补这一空白,我们提出了新的和真正新颖的ris辅助MIMO(多输入多输出)密钥生成方案。通过充分挖掘从RIS到合法通信伙伴的反射信号作为引入的、可控的和人为的随机性,结合RIS和MIMO的入射和反射信号的空间自由度,可以显著提高KGR性能。充分研究了信息的理论安全性,推导了KGR的上界值,对系统性能进行了综合评价。仿真结果充分验证了该方法的有效性和鲁棒性。
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