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Large-Scale Analysis of Physical-Layer Security in Multi-User Wireless Networks

机译:多用户无线网络中物理层安全性的大规模分析

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摘要

We derive the asymptotic ergodic secrecy sum rate (ESSR) of block diagonalization precoding for physical-layer security in downlink multi-user wireless networks that use artificial noise. First, we derive the ESSR of the system. Then, we derive the power allocation and the asymptotic ESSR as the number of antennas increases. After, we derive an approximate expression for the optimum ratio of the number of transmit antennas to the number of receive antennas ($Psi $). We then introduce the user dropping factor (UDF) as a means to derive the optimum number of users in the system under different scenarios and then derive the asymptotic optimum UDF, which gives the optimum number of scheduled users. We also study the effect of imperfect channel state information and derive a closed-form ESSR. Simulation results show that these precoders outperform channel inversion (CI) and regularized CI schemes in terms of the ESSR at all SNRs. We also show that as the number of receive antennas of each user increases, the asymptotic ESSR gap also increases.
机译:我们得出了使用人工噪声的下行链路多用户无线网络中物理层安全性的块对角化预编码的渐近遍历遍历保密总和率(ESSR)。首先,我们得出系统的ESSR。然后,随着天线数量的增加,我们得出功率分配和渐近ESSR。之后,我们得出发射天线数与接收天线数的最佳比率的近似表达式( n $ Psi $ n)。然后,我们引入用户丢弃因子(UDF)作为一种方法,以得出在不同情况下系统中的最佳用户数,然后得出渐近最优UDF,从而给出计划用户的最佳数目。我们还研究了不完善的信道状态信息的影响,并得出了封闭形式的ESSR。仿真结果表明,就所有SNR而言,这些预编码器在ESSR方面均优于信道倒置(CI)和规则化CI方案。我们还表明,随着每个用户接收天线数量的增加,渐近ESSR间隙也随之增加。

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