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首页> 外文期刊>IEEE transactions on wireless communications >Robust Resource Allocation to Enhance Physical Layer Security in Systems With Full-Duplex Receivers: Active Adversary
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Robust Resource Allocation to Enhance Physical Layer Security in Systems With Full-Duplex Receivers: Active Adversary

机译:健壮的资源分配以增强具有全双工接收器的系统中的物理层安全性:积极的对手

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摘要

We propose a robust resource allocation framework to improve the physical layer security in the presence of an active eavesdropper. In the considered system, we assume that both legitimate receiver and eavesdropper are full-duplex (FD) while most works in the literature concentrate on passive eavesdroppers and half-duplex (HD) legitimate receivers. In this paper, the adversary intends to optimize its transmit and jamming signal parameters so as to minimize the secrecy data rate of the legitimate transmission. In the literature, assuming that the receiver operates in HD mode, secrecy data rate maximization problems subject to the power transmission constraint have been considered in which cooperating nodes act as jammers to confound the eavesdropper. This paper investigates an alternative solution in which we take advantage of FD capability of the receiver to send jamming signals against the eavesdroppers. The proposed self-protection scheme eliminates the need for external helpers. Moreover, we consider the channel state information uncertainty on the links between the active eavesdropper and other legitimate nodes of the network. Optimal power allocation is then obtained based on the worst-case secrecy data rate maximization, under a legitimate transmitter power constraint in the presence of the active eavesdropper. Numerical results confirm the advantage of the proposed secrecy design and in certain conditions, demonstrate substantial performance gain over the conventional approaches.
机译:我们提出了一个健壮的资源分配框架,以在存在主动窃听者的情况下提高物理层的安全性。在考虑的系统中,我们假设合法的接收者和窃听者都是全双工(FD),而文献中的大多数工作都集中在被动的窃听者和半双工(HD)合法接收者上。在本文中,对手打算优化其传输和干扰信号参数,以最大程度地减少合法传输的保密数据速率。在文献中,假设接收器以高清模式工作,则考虑了受功率传输约束的保密数据速率最大化问题,其中协作节点充当干扰者来混淆窃听者。本文研究了一种替代解决方案,其中我们利用接收器的FD功能向窃听者发送干扰信号。拟议的自我保护计划消除了对外部帮助者的需求。此外,我们考虑了主动窃听者与网络其他合法节点之间的链路上的信道状态信息不确定性。然后,在存在有效窃听器的情况下,在合理的发射机功率约束下,基于最坏情况下的保密数据速率最大化来获得最佳功率分配。数值结果证实了所提出的保密设计的优点,并且在某些条件下,证明了优于传统方法的性能提升。

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