Secrecy Improvement of Cognitive Relay Networks using Modulation Diversity

Muhammad Ajmal Khan, F. Hassan
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引用次数: 3

Abstract

In this paper, physical-layer security of cognitive relay network under spectrum sharing environment using a decode-and-forward (DF) relay is studied and improved by incorporating modulation diversity into the secondary system. Modulation diversity rotates the signal constellation to make each component of the signal point unique and then interleaves quadrature components of the signal points to affect each component by independent fading channel. Modulation diversity facilitates source and intermediate relay to transmit different symbols to the destination and thus the proposed system transmits two symbols in two time slots compared to the conventional underlay cognitive relay network which transmits one symbol in two time slots. Hence, the secrecy capacity of the proposed system is greater than that of the conventional system. Therefore, the secrecy performance analysis and results of the proposed system are completely different than those of the conventional system. Moreover, it is shown that the secrecy outage probability of the proposed system is improved by 10 times compared to the conventional system. Finally, the closed-form expressions for the secrecy outage probability, probability of non-zero secrecy capacity and probability of intercept of the proposed system are derived and discussed.
利用调制分集提高认知中继网络的保密性
本文研究了频谱共享环境下使用DF中继的认知中继网络的物理层安全性,并通过在二次系统中加入调制分集来提高其安全性。调制分集旋转信号星座使信号点的各分量唯一,然后将信号点的正交分量交错,通过独立的衰落信道影响各分量。调制分集使得源中继和中间中继向目的中继发送不同的符号,与传统的底层认知中继网络在两个时隙中发送一个符号相比,该系统在两个时隙中发送两个符号。因此,该系统的保密能力比传统系统的保密能力要大。因此,该系统的保密性能分析和结果与传统系统完全不同。结果表明,与传统系统相比,该系统的保密中断概率提高了10倍。最后,推导并讨论了系统的保密中断概率、非零保密能力概率和拦截概率的封闭表达式。
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