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On Physical-Layer Security of FDA Communications Over Rayleigh Fading Channels

机译:FDA在瑞利衰落信道上通信的物理层安全性

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摘要

In this paper, we investigate frequency diverse array (FDA) antenna for physical-layer security and analyze the system performance (i.e., average secrecy capacity and secrecy outage performance) over independent but not necessarily identical distributed Rayleigh fading channels. A single-antenna multiple-channel receiver structure is proposed to address the time-variance property of FDA antenna. The transmitter allocates part of its power to send artificial noise (AN) so as to ensure the security of communications, such that the channels other than the desired receiver’s are degraded. Specifically, we derive the closed-form expressions for average secrecy capacity, probability of nonzero secrecy capacity, and secrecy outage probability, respectively. The correctness of the proposed analysis is corroborated via simulations. Furthermore, the corresponding asymptotic expressions for average secrecy capacity and secrecy outage probability in high signal-to-interference-plus-noise ratio (SINR) regime are also provided, respectively, to have deep insights into the performance of the considered system. Numerical results show that the FDA communications significantly outperforms the phased-array (PA) scheme in range dimension for secure communication.
机译:在本文中,我们研究了用于物理层安全性的频率变化阵列(FDA)天线,并分析了独立但不一定相同的分布式瑞利衰落信道上的系统性能(即平均保密容量和保密中断性能)。提出了一种单天线多通道接收器结构,以解决FDA天线的时变特性。发射器分配了一部分功率来发送人造噪声(AN),以确保通信的安全性,从而使除所需接收器之外的其他信道质量下降。具体来说,我们分别得出平均保密容量,非零保密容量的概率和保密中断概率的闭式表达式。通过仿真证实了所提出分析的正确性。此外,还分别提供了在高信噪比下的平均保密能力和保密中断概率的相应渐近表达式,以深入了解所考虑系统的性能。数值结果表明,在安全范围内,FDA通讯在性能方面明显优于相控阵(PA)方案。

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