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Secure transmission in the random cognitive radio networks with secrecy guard zone and artificial noise

机译:具有保密保护区和人工噪声的随机认知无线电网络中的安全传输

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The authors study the secure transmission design in random cognitive radio networks where the primary users, the secondary users and the eavesdroppers are randomly distributed according to Poisson point processes. Centring on this scenario, the authors propose a simple and decentralised secure transmission scheme by jointly incorporating the secrecy guard zone and artificial noise. In particular, this transmission scheme helps to enhance secrecy performance via differentiating between secondary transmitters in accordance with the eavesdropping environment. They then analyse the connection outage and secrecy outage performance of the secondary network, based on which they obtain the closed-form expression of the secrecy throughput. They further determine the optimal transmission power of the secondary transmitters and the optimal power allocation between the information-bearing signal and artificial noise to maximise the secrecy throughput of the secondary network under primary and secondary outage constraints. The authors' analysis highlights that introducing secrecy guard zone provides better security performance, and artificial noise performs as additional interference to insert a control between the reliability and security. Numerical results show how the system parameters affect the achievable maximum secrecy throughput, the optimal transmission power and the optimal power allocation between the information-bearing signal and the artificial noise.
机译:作者研究了随机认知无线电网络中的安全传输设计,该网络中的主要用户,次要用户和窃听者是根据Poisson点过程随机分布的。围绕这种情况,作者提出了一种简单的,分散的安全传输方案,将保密保护区和人工噪声结合在一起。特别地,该传输方案通过根据窃听环境来区分次级发射机来帮助提高保密性能。然后,他们分析辅助网络的连接中断和保密中断的性能,并以此为基础获得保密吞吐量的闭合形式。他们进一步确定了次级发射机的最佳传输功率以及信息承载信号和人工噪声之间的最优功率分配,以在初级和次级中断约束下最大化次级网络的保密吞吐量。作者的分析强调,引入保密保护区可提供更好的安全性能,而人为噪声会作为额外的干扰而在可靠性和安全性之间插入控件。数值结果表明,系统参数如何影响可达到的最大保密吞吐量,最优传输功率以及信息承载信号与人工噪声之间的最优功率分配。

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