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The scheme based on partial channel state information for the physical layer security

机译:基于部分信道状态信息的物理层安全性方案

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The physical layer security technology is an effective way to reduce information leakage in a wireless communication system. In this paper, we study the physical-layer security of one-way wiretap channel which contains a source-destination pair, an eavesdropper and multiple cooperating relay nodes. What's more, in this channel, there exists direct link between the source and the destination (eavesdropper) and lacks he eavesdropper's channel state information (ECSI). To address its physical-layer security, we proposed a scheme which combines amplify-and-forward (AF)-based relay beamforming and cooperation jamming (CJ) technology. We aim at minimizing the power available for transmitting desired information in relays and optimizing the relay weights under the scenario of limiting the signal to ratio at the destination to a given range, which can be solved by convex optimization techniques. After that, we prove that the optimization results are unique and globally optimum. And the numerical results show that the proposed design can effectively enhance secure transmission rate.
机译:物理层安全技术是减少无线通信系统中信息泄漏的有效方法。在本文中,我们研究了单向窃听通道的物理层安全性,该通道包含一个源-目的地对,一个窃听者和多个协作中继节点。而且,在此通道中,源与目的地(窃听者)之间存在直接链接,并且缺少窃听者的通道状态信息(ECSI)。为了解决其物理层安全性,我们提出了一种结合了基于放大转发(AF)的中继波束成形和协作干扰(CJ)技术的方案。我们旨在将可用于在中继中传输所需信息的功率降至最低,并在将目标的信号比率限制为给定范围的情况下优化中继权重,这可以通过凸优化技术来解决。之后,我们证明了优化结果是唯一的并且是全局最优的。数值结果表明,该设计方案可以有效提高传输速率。

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