Can full-duplex jamming reduce the energy-cost of a secure bit?

Omid Taghizadeh, Peter Neuhaus, R. Mathar
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引用次数: 6

Abstract

In this work we study the secrecy energy efficiency (SEE) of a multiple-input-multiple-output multiple-antenna eavesdropper (MIMOME) wiretap channel, in terms of the securely communicated bits-per-Joule, where the legitimate receiver is equipped with full-duplex (FD) capability. In particular, we seek answer to the question: if and how the application of an FD jammer can enhance the system SEE, considering the additional power consumption used for jamming and self-interference cancellation, as well as the degrading effect of residual self-interference. In this regard, an SEE maximization problem is formulated. Due to the intractable problem structure, an iterative solution is provided with a guaranteed convergence to a local optimum. Moreover, the proposed solution is extended for a system with a bidirectional communication, where both legitimate nodes are equipped with FD capability. Numerical simulations indicate a marginal SEE gain, via the utilization of FD jamming, for a wide range of system conditions. However, the observed gain is significant for the scenarios with a small distance between the FD node and the eavesdropper, a high signal-to-noise ratio (SNR) condition or for a bidirectional FD communication setup, under the condition that the self-interference can be effectively and efficiently mitigated.
全双工干扰能降低安全比特的能量成本吗?
在这项工作中,我们研究了多输入多输出多天线窃听器(MIMOME)窃听信道的保密能量效率(SEE),就每焦耳安全通信位而言,其中合法接收器配备了全双工(FD)功能。特别是,我们寻求以下问题的答案:考虑到用于干扰和自干扰消除的额外功耗,以及残余自干扰的降级效应,FD干扰机的应用是否以及如何增强系统SEE。在这方面,制定了SEE最大化问题。由于问题结构棘手,迭代解保证收敛到局部最优。此外,还将该方案扩展到具有双向通信的系统中,其中两个合法节点都具有FD功能。数值模拟表明,在广泛的系统条件下,通过利用FD干扰,可以获得边际SEE增益。然而,在FD节点与窃听者之间距离较小、信噪比(SNR)较高或双向FD通信设置的情况下,观察到的增益是显著的,前提是可以有效地减轻自干扰。
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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