This paper investigates the secrecy outage probability (SOP), the lower bound of SOP, and the probability of non-zero secrecy capacity (PNZ) of reconfigurable intelligent surface (RIS)-assisted systems from an information-theoretic perspective. In particular, we consider the impacts of eavesdroppers' location uncertainty and the phase adjustment uncertainty, namely imperfect coherent phase shifting and discrete phase shifting on RIS. More specifically, analytical and simulation results are presented to show that (i) the SOP gain due to the increase of the RIS reflecting elements number gradually decreases; and (ii) both phase shifting designs demonstrate the same PNZ secrecy performance, in other words, the random discrete phase shifting outperforms the imperfect coherent phase shifting design with reduced complexity.
翻译:本文从信息理论角度对保密中断概率(SOP),SOP的下限,以及可重新配置智能表面(RIS)辅助系统的非零保密能力(PNZ)的概率(PNZ)进行了调查。特别是,我们考虑了偷听者位置不确定性和阶段调整不确定性的影响,即不完全连贯的阶段转移和对RIS的离散的阶段转移。更具体地说,提供了分析和模拟结果,以表明:(一)由于RIS反映元素数量的增加,SOP的收益逐渐减少;以及(二)两个阶段转移设计都表现出相同的PNZ保密性能,换句话说,随机分散的阶段转移使不完善的连贯的阶段转移设计变得复杂程度降低。