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Secure Massive MIMO Relaying Systems in a Poisson Field of Eavesdroppers

机译:窃听者泊松场中的安全大规模MIMO中继系统

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A cooperative relay network operating in the presence of eavesdroppers, whose locations are distributed according to a homogeneous Poisson point process, is considered. The relay is equipped with a very large antenna array and can exploit maximal ratio combing in the uplink and maximal ratio transmission in the downlink. A realistic model in which the channel state information of every eavesdropper is not known is considered, as eavesdroppers tend to hide themselves in practice. The destination is thus in a much weaker position than all the eavesdroppers because it only receives the retransmitted signal from the relay. Under this setting, the security performance is investigated for two relaying protocols: amplify-and-forward and decode-and-forward. The secrecy outage probability, the connection outage probability, and the tradeoff between them, which is controlled by the source power allocation, are examined. Finally, suitable solutions for the source power (such that once the transmission occurs with high reliability, the secure risk is below a given threshold) are proposed for a tradeoff between security and reliability.
机译:考虑了在存在窃听者的情况下工作的协作中继网络,该窃听者的位置根据均匀泊松点过程进行分布。该中继配备有非常大的天线阵列,可以利用上行链路中的最大比率合并和下行链路中的最大比率传输。考虑到一个现实的模型,其中每个窃听者的信道状态信息都不知道,因为窃听者在实践中往往会将自己隐藏起来。因此,目的地比所有窃听者都处于弱得多的位置,因为它仅接收来自中继的重发信号。在此设置下,将对两种中继协议的安全性能进行研究:放大转发和解码转发。检查了由电源功率分配控制的保密中断概率,连接中断概率以及它们之间的折衷。最后,为安全性和可靠性之间的折衷方案,提出了适用于源功率的适当解决方案(这样,一旦传输以高可靠性发生,安全风险就低于给定阈值)。

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