Shen Zihe, Wang Yi, Wu Jiamin
Key Laboratory of Electromagnetic Wave Information Technology and Metrology of Zhejiang Province, College of Information Engineering, China Jiliang University, Hangzhou 310018, China.
State Key Laboratory of Coal Resources and Safe Mining, China University of Mining and Technology, Xuzhou 221116, China.
Sensors (Basel). 2023 Jul 19;23(14):6523. doi: 10.3390/s23146523.
This paper presents research on the physical layer security performance of a multi-user mixed RF/FSO system based on optimal user interference. In this system model, the RF link experiences Rayleigh fading, and the FSO link follows the Fischer-Snedecor F distribution. The system adopts a double-hop-decode-and-forward (DF) relay scheme. We also consider the effect of directivity errors in the FSO link and assume the presence of an illegal eavesdropper with a single antenna near the RF link. The source node controls the energy collection and information forwarding using a multi-user structure based on simultaneous wireless information and power transfer (SWIPT). We select the optimal user to jam the eavesdropper's communication. We derive closed-form expressions for the mixed RF/FSO communication system's secrecy outage probability (SOP) and average secrecy capacity (ASC). Monte Carlo simulations are performed to verify the accuracy of these expressions. By formulating and simulating the simulation system, the impact of various important factors on the mixed system's physical layer security (PLS) is analyzed. The analysis indicates that increasing the number of antennas and interference signal-to-noise ratio (SNR) of the optimal user, the time allocation factor and energy conversion efficiency, and the improvement in the quality of atmospheric channels with improved weather will significantly enhance this system's PLS.
本文提出了一种基于最优用户干扰的多用户混合射频/自由空间光(RF/FSO)系统物理层安全性能研究。在该系统模型中,射频链路经历瑞利衰落,自由空间光链路服从费希尔-斯内德科尔F分布。系统采用双跳解码转发(DF)中继方案。我们还考虑了自由空间光链路中方向性误差的影响,并假设在射频链路附近存在一个单天线非法窃听者。源节点基于同时无线信息与能量传输(SWIPT)采用多用户结构来控制能量收集和信息转发。我们选择最优用户来干扰窃听者的通信。我们推导了混合射频/自由空间光通信系统的保密中断概率(SOP)和平均保密容量(ASC)的闭式表达式。进行蒙特卡罗仿真以验证这些表达式的准确性。通过构建和仿真该系统,分析了各种重要因素对混合系统物理层安全(PLS)的影响。分析表明,增加天线数量、最优用户的干扰信噪比、时间分配因子和能量转换效率,以及随着天气改善大气信道质量的提升,将显著增强该系统的物理层安全性能。