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On Secrecy Outage Probability and Average Secrecy Rate of Large-Scale Cellular Networks

机译:大规模蜂窝网络的保密中断概率与平均秘密率

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摘要

We investigate the secrecy performance in large-scale cellular networks, where both Base Stations (BSs) and eavesdroppers follow independent and different homogeneous Poisson point processes (PPPs). Based on the distances between the BS and user, the intended user selects the nearest BS as serving BS to transmit the confidential information. We first derive closed-formed expressions of secrecy outage probability and average secrecy rate of a single-antenna system for both noncooperative and cooperative eavesdroppers scenarios. Then, to further improve the secrecy performance through additional spatial degrees of freedom, the above analyses generalize to the multiantenna scenario, where BSs employ the transmit antenna selection (TAS) scheme. Finally, the results show the small-scale fading has a considerable effect on the secrecy performance in certain density of eavesdroppers and small path loss exponent environment, and when the interference caused by BS is considered, the secrecy performance will be reduced. Moreover, the gap of secrecy performance between noncooperative and cooperative eavesdroppers cases is nearly invariable as the number of antennas increases.
机译:我们调查大型蜂窝网络中的保密性能,其中基站(BSS)和窃听者遵循独立和不同的均匀泊松点过程(PPP)。基于BS和用户之间的距离,预期用户选择最接近的BS作为服务BS以发送机密信息。我们首先导出封闭式表达式的秘密中断概率和单天线系统的平均保密率,用于非自由作和合作窃听者方案。然后,为了进一步提高通过额外的空间自由度的保密性能,上述分析推广到多天线场景,其中基站采用发射天线选择(TAS)方案。最后,结果表明,小规模衰落对窃听者和小路径损耗指数环境中的某些密度具有相当大的效果,并且当考虑由BS引起的干扰时,将减少保密性能。此外,随着天线的数量增加,非兴奋剂和合作窃听者之间的秘密性能的差距几乎不变。

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