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Physical Layer Security in Heterogeneous Networks With Pilot Attack: A Stochastic Geometry Approach

机译:具有先导攻击的异构网络中的物理层安全性:一种随机几何方法

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In this paper, we investigate physical layer security in a two-tier heterogeneous network with sub-6 GHz massive multi-input multi-output (MIMO) macro cells and millimeter wave (mmWave) small cells. By considering pilot attacks from the eavesdroppers, we analyze the coverage and secrecy performance using stochastic geometry. For the sub-6 GHz tier, we show that increasing the number of BS antennas is more effective than increasing BS density in improving the coverage performance, whereas densifying BS is more effective for security enhancement. For the mmWave tier, we first derive the success probability of beam alignment based on a beam sweeping-based channel training model. It is shown that the mmWave tier may outperform the sub-6 GHz counterpart in terms of both coverage and secrecy through densifying the base stations. Our results also reveal that the mmWave small cell can provide better coverage performance in the high transmission rate region, and can achieve higher security in the low redundant rate region, which reveals the advantage of using mmWave for secure communication. Numerical results verify the analysis.
机译:在本文中,我们研究了具有6 GHz以下大规模多输入多输出(MIMO)宏小区和毫米波(mmWave)小型小区的两层异构网络中的物理层安全性。通过考虑来自窃听者的飞行员攻击,我们使用随机几何来分析覆盖范围和保密性能。对于低于6 GHz的频段,我们显示出增加BS天线的数量在提高覆盖范围方面比增加BS密度更有效,而致密化BS可以更有效地增强安全性。对于毫米波层,我们首先基于基于波束扫描的信道训练模型得出波束对齐的成功概率。结果表明,通过增强基站的密度,毫米波层在覆盖范围和保密性方面都可能优于6 GHz以下的同类产品。我们的结果还表明,mmWave小型小区可以在高传输率区域提供更好的覆盖性能,并可以在低冗余率区域实现更高的安全性,这揭示了使用mmWave进行安全通信的优势。数值结果验证了分析结果。

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