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Physical Layer Security Enhancement for Internet of Things in the Presence of Co-Channel Interference and Multiple Eavesdroppers

机译:在同频道干扰和多个窃听者的情况下增强物联网的物理层安全性

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摘要

This paper investigates the secrecy performance of a multiuser system that utilizes transmit antenna selection scheme at the base station and adopts threshold-based selection diversity opportunistic scheduling over legitimate nodes. The legitimate transmission suffers from the presence of noncolluding (NonCol) and colluding (Col) multiple passive eavesdroppers. Both the legitimate and eavesdropping nodes are assumed to suffer from co-channel interference (CCI) signals from independent channels that follow Rayleigh fading. Closed-form expressions for the probability density functions and cumulative density functions of the end-to-end signal-to-interference-plus-noise ratio for both eavesdropping scenarios in the presence of CCI signals are derived. In addition, closed-form expressions for the network secrecy outage probability (SOP) for Non-Col/ Col scenarios are derived. At the high signal-to-noise ratio values, closed-form expressions for the asymptotic secrecy outage probabilities are obtained. Following this obtained asymptotic analysis, an optimization problem for power allocation is formulated and solved to improve the secrecy performance of the network by minimizing the asymptotic SOP for both Col and Non-Col cases. The derived analytical expressions are then validated using both simulations and numerical results.
机译:本文研究了一个多用户系统的保密性能,该系统在基站采用发射天线选择方案,并在合法节点上采用基于阈值的选择分集机会调度。合法传输会遭受多个无源窃听者(NonCol)和共谋(Col)的共谋。假定合法节点和窃听节点都遭受来自遵循瑞利衰落的独立信道的同信道干扰(CCI)信号。在存在CCI信号的情况下,针对两种窃听场景,推导了端到端信号与干扰加噪声比的概率密度函数和累积密度函数的闭式表达式。此外,还针对非Col / Col场景推导了网络保密中断概率(SOP)的闭式表达式。在高的信噪比值下,可获得渐近保密中断概率的闭式表达式。在此获得的渐近分析之后,制定并解决了功率分配的优化问题,以通过最小化Col和Non-Col情况的渐近SOP来提高网络的保密性能。然后使用仿真和数值结果对导出的解析表达式进行验证。

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