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Physical layer security in D2D-enabled cellular networks: Artificial noise assisted

机译:启用D2D的蜂窝网络中的物理层安全性:人工噪声辅助

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In this paper, we consider the secure communication of the cellular downlink between the base station and the cellular user underlaying D2D communication. Base stations, cellular users, D2D transmitters and eavesdroppers are modeled as the independent homogeneous Poisson point processes (PPPs). We consider a worst case in which each base station has no channel state information (CSI) from D2D transmitters which are generally deployed in the cell edge. In order to guarantee the secure transmission for cellular links, each multi-antenna base station employs the artificial noise assisted transmission strategy to keep the confidential message from being intercepted by the malicious eavesdropper having the multi-user decedability. Firstly, we derive the secrecy outage probability for the typical cellular link in the interference-limited network in which the additive noise is neglected. Then, the connection outage probability for the typical D2D link in the hybrid network is derived and some comprehensive analysis are presented. Finally, Finally, simulation results are provided to validate the effectiveness of theoretical analysis.
机译:在本文中,我们考虑了基站与蜂窝用户之间的蜂窝下行链路的安全通信,这些通信构成了D2D通信的基础。基站,蜂窝用户,D2D发射机和窃听者被建模为独立的同质泊松点过程(PPP)。我们考虑最坏的情况,其中每个基站都没有来自通常部署在小区边缘的D2D发射机的信道状态信息(CSI)。为了保证蜂窝链路的安全传输,每个多天线基站都采用人工噪声辅助传输策略,以防止机密消息被具有多用户可操作性的恶意窃听者截获。首先,我们推导了在干扰受限的网络中典型的蜂窝链路的保密中断概率,其中可忽略附加噪声。然后,推导了混合网络中典型D2D链路的连接中断概率,并进行了一些综合分析。最后,最后,提供了仿真结果以验证理论分析的有效性。

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