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On the Impact of Adaptive Eavesdroppers in Multi-Antenna Cellular Networks

机译:自适应窃听器在多天线蜂窝网络中的影响

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In this paper, the impact of adaptive smarter eavesdroppers on the secrecy performance of a multi-antenna cellular network is investigated. The eavesdroppers can act as either passive eavesdroppers or active jammers based on their distance to the active base stations (BSs). To analyze the secrecy performance, the BSs, cellular users, and eavesdroppers are modeled as independent Poisson point processes. The closed-form expressions of the connection outage probability and lower bound of the secrecy outage probability are derived using the stochastic geometry approach. Following that, the conditions under which the eavesdroppers can act as active jammers are obtained. Finally, the optimal power allocation between artificial noise and information signal and the secrecy code rate at each BS, as well as the guard zone of the eavesdroppers are obtained using the Stackelberg game approach, where the eavesdroppers are modeled as the leader and the BSs as the follower. The Stackelberg equilibrium is obtained through the proposed iterative algorithm. Numerical results verify the theoretical analysis and show that the secrecy performance can be degraded severely by the adaptive eavesdroppers.
机译:本文研究了自适应智能窃听者对多天线蜂窝网络保密性能的影响。窃听者可以根据其与有源基站(BS)的距离充当无源窃听者或有源干扰者。为了分析保密性能,将BS,蜂窝用户和窃听者建模为独立的Poisson点过程。使用随机几何方法可以得出连接中断概率和保密中断概率下限的闭合形式。之后,获得了窃听者可以充当主动干扰者的条件。最后,使用Stackelberg博弈方法获得了每个BS处的人工噪声和信息信号之间的最佳功率分配以及保密代码率,以及窃听者的保护区,其中,窃听者被建模为领导者,而BS被建模为追随者。通过提出的迭代算法获得Stackelberg平衡。数值结果验证了理论分析,表明自适应窃听者会严重降低保密性能。

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