Opportunistic relay and jammer cooperation techniques for physical-layer security in buffer-aided relay networks

Xiaotao Lu, R. D. Lamare
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引用次数: 7

Abstract

In this paper, we investigate opportunistic relay and jammer cooperation schemes in multiple-input multiple-output (MIMO) buffer-aided relay networks. The network consists of one source, an arbitrary number of relay nodes, legitimate users and eavesdroppers, with the constraints of physical layer security. We propose an algorithm to select a set of relay nodes to enhance the legitimate users' transmission and another set of relay nodes to perform jamming of the eavesdroppers. With Inter-Relay interference (IRI) taken into account, interference cancellation can be implemented to assist the transmission of the legitimate users. Secondly, IRI can also be used to further increase the level of harm of the jamming signal to the eavesdroppers. By exploiting the fact that the jamming signal can be stored at the relay nodes, we also propose a hybrid algorithm to set a signal-to-interference and noise ratio (SINR) threshold at the node to determine the type of signal stored at the relay node. With this separation, the signals with high SINR are delivered to the users as conventional relay systems and the low SINR performance signals are stored as potential jamming signals. Simulation results show that the proposed techniques obtain a significant improvement in secrecy rate over previously reported algorithms.
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缓冲辅助中继网络中物理层安全的机会中继和干扰机合作技术
本文研究了多输入多输出(MIMO)缓冲辅助中继网络中的机会中继和干扰机合作方案。该网络由一个源、任意数量的中继节点、合法用户和窃听者组成,具有物理层安全约束。我们提出了一种算法来选择一组中继节点来增强合法用户的传输,另一组中继节点来对窃听者进行干扰。考虑到中继间干扰(IRI),可以实现干扰消除,以帮助合法用户传输。其次,IRI还可以进一步提高干扰信号对窃听者的危害程度。利用干扰信号可以存储在中继节点上的特点,提出了一种混合算法,在节点上设置信噪比阈值,以确定中继节点上存储的信号类型。通过这种分离,高信噪比的信号作为常规中继系统传递给用户,低信噪比的性能信号作为潜在干扰信号存储。仿真结果表明,与已有的算法相比,本文提出的算法在保密率方面有显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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