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Secure Cooperative Communication via Artificial Noise for Wireless Two-Hop Relaying Networks

机译:无线两跳中继网络通过人工噪声进行安全的协作通信

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摘要

A two-hop relaying system for secrecy cooperative communication in the presence of an eavesdropper is investigated, where each relay node is equipped with a unitary matrix and cooperates to transmit the received signals, which can partly mitigate the deep channel fade. Gaussian distributed artificial noise (AN) is added in the null space of the intended receiver to ensure the secrecy of communication and achieve a better secrecy capacity while only the wiretap channel is degraded. The secrecy capacity and the optimal power distribution are studied in two scenarios, AN added by the transmitter and AN added by the cooperative relay nodes. Also, a sub-optimal power distribution strategy independent of the channel state information of eavesdropper is proposed to alleviate the computational overhead. The analytical results are confirmed by simulations that it is better to distribute more power to the available signals if the main channel is better, while more power to AN if the wire-tap channel is better. The sub-optimal power distribution can attain close performance compared with the optimal power distribution strategy but with substantially reduced computational complexity.
机译:研究了在有窃听者的情况下用于保密协作通信的两跳中继系统,其中每个中继节点都配备了一个and矩阵并协作以传输接收到的信号,这可以部分缓解深度信道衰落。高斯分布的人工噪声(AN)被添加到预期接收器的零空间中,以确保通信的保密性并实现更好的保密容量,同时仅降低窃听通道的性能。在两种情况下研究了保密容量和最优功率分配,即发射机添加的AN和协作中继节点添加的AN。此外,提出了一种独立于窃听者信道状态信息的次优功率分配策略,以减轻计算开销。通过仿真证实了分析结果,如果主信道更好,则最好将更多功率分配给可用信号,如果窃听信道更好,则将更多功率分配给AN。与最佳功率分配策略相比,次优功率分配可以获得接近的性能,但计算复杂度大大降低。

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