Physical Layer Security of an Amplify-and-Forward Energy Harvesting-Based Mixed RF/UOW System

Elmehdi Illi, Faissal El Bouanani, F. Ayoub
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引用次数: 8

Abstract

This paper investigates the secrecy outage performance of an energy harvesting-based dual-hop amplify-and-forward (AF) mixed radio-frequency/underwater optical wireless communication (RF/UOWC) system. A single-antenna source node (S) is considered, communicating with one legitimate destination node (D) with the aid of a multi-antenna AF relay (R) device. In this setup, the relay node receives the incoming signal from S via an RF link, which is subject to Nakagami-m fading, then performs maximal-ratio-combining (MRC) followed by a fixed-gain amplification, before transmitting it to the destination via a UOWC link, subject to mixture Exponential-Gamma fading. Assuming the presence of a malicious eavesdropper attempting to intercept the S-$R$ hop, a tight approximate expression for the secrecy outage probability is retrieved. The derived results provide useful insights into the influence of key system parameters on the secrecy outage performance. Our analytical results are corroborated through computer simulations, which verifies their validity.
基于放大和前向能量采集的混合射频/UOW系统的物理层安全性
研究了一种基于能量采集的双跳放大转发(AF)混合射频/水下光无线通信(RF/UOWC)系统的保密中断性能。考虑一个单天线源节点(S),借助多天线自动对焦中继(R)设备与一个合法目标节点(D)通信。在这种设置中,中继节点通过RF链路接收来自S的传入信号,该链路受Nakagami-m衰落影响,然后执行最大比率组合(MRC),随后进行固定增益放大,然后通过UOWC链路将其传输到目的地,受混合指数- gamma衰落影响。假设存在恶意窃听者试图拦截S-$R$跳,检索保密中断概率的严密近似表达式。导出的结果为了解关键系统参数对保密中断性能的影响提供了有用的见解。通过计算机仿真验证了分析结果的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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