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Ergodic Secrecy Rate of Randomly Deployed Cellular Networks Enhanced by Artificial Noise

机译:人工噪声增强随机部署蜂窝网络的遍历保密率

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As the future cellular networks tend to be randomly deployed and equipped with more antennas, we study the enhanced secrecy rate of multiple- input multiple-output (MIMO) systems with a stochastic geometry approach. To avoid intractable computational complexity and to have a deep insight into the security performance of such networks, we derive a closed-form lower bound on the ergodic secrecy rate, based on which the optimal power allocation parameter is derived. Analytic and Monte-Carlo simulation results show that the lower bound is quite tight. The density of base stations (BSs) and number of antennas both greatly infects the optimal power allocation parameter, e.g., positive secrecy rate may not achieved when the BSs density is small, otherwise the optimal power allocation will increase with the increase of the BSs density.
机译:随着未来的蜂窝网络趋向于随机部署并配备更多天线,我们将采用随机几何方法研究提高的多输入多输出(MIMO)系统的保密率。为了避免难以处理的计算复杂性并深入了解此类网络的安全性能,我们导出了遍历保密率的封闭形式下界,在此基础上得出了最佳功率分配参数。解析和蒙特卡洛模拟结果表明,下限相当严格。基站(BS)的密度和天线数量都极大地影响了最优功率分配参数,例如,当BSs密度较小时,可能无法达到正的保密率,否则最优功率分配将随着BSs密度的增加而增加。 。

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