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On the secrecy outage probability and performance trade-off of the multi-hop cognitive relay networks

机译:关于多跳认知继电器网络的保密中断概率和性能权衡

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We study the physical-layer security of multi-hop secondary network under spectrum sharing constraint caused by the primary, which consists of many simultaneously independent direct transceiver pairs. The existence of a secondary eavesdropper, which attempts to hear confidential information, results in secure communication to be needful. The PUs' interference forces low secondary SIRs. The secondary power constraint according to PUs causes the QoS to diminish, especially when the PUs transmission simultaneously operates. In this paper, we derive the closed-form of end-to-end multi-hop secrecy outage probability expression with independent non-identically distributed (i.n.i.d) Rayleigh fading. Furthermore, the secondary intercept probability is derived. Combining the outage probability, we present the security-reliability of the system. Besides, the impact of different numbers of primary transceivers on end-to-end multi-hop outage probability is investigated. Finally, our theoretical results verified via extensive Monte Carlo simulations.
机译:我们研究了主要的频谱共享约束下多跳二次网络的物理层安全性,由许多同时独立的直接收发器对组成。试图听取机密信息的辅助窃听器的存在导致安全的通信以需要。脓液的干扰力低二次SIR。根据PU的二次功率约束导致QoS减小,特别是当PUS传输同时操作时。在本文中,我们从独立的非相同分布(I.N.I.D)瑞利衰落,我们推出了端到端的端到端多跳保密中断概率表达式的封闭形式。此外,衍生次级拦截概率。结合中断概率,我们提出了系统的安全可靠性。此外,研究了不同数量的主要收发器对端到端多跳停电概率的影响。最后,我们的理论结果通过广泛的蒙特卡罗模拟验证。

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