多窃听器下ris辅助安全通信的主动和被动波束形成联合优化

IF 4.4 3区 计算机科学 Q2 TELECOMMUNICATIONS
Tingyu Xie;Guoshun Nan;Qimei Cui;Gang Deng;Haitao Du;Xiaofeng Tao
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引用次数: 0

摘要

可重构智能表面(RIS)通过智能控制信号特征,如相位和幅度,促进物理层安全通信(PSC)。先前的工作表明,非法窃听者可以大幅降低ris辅助PSC的容量,而通信系统中的多个窃听者,在现实世界中更实用和更具挑战性的设置,仍然在很大程度上未被充分探索。为此,我们提出了MuEaRIS,这是一种新颖的方法,旨在最大化合法的安全通信速率,同时最小化ris辅助PSC的每个非法窃听者的速率。具体来说,我们使用一种探索交替优化和二次变换的新方法来共同优化Alice的主动波束形成和RIS的被动波束形成。数值分析表明,所提出的MuEaRIS在多窃听器场景下对ris辅助的PSC有效,同时在单窃听器设置下也优于现有方法,具有更广泛的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint Optimization of Active and Passive Beamforming for RIS-Assisted Secure Communication Under Multiple Eavesdroppers
Reconfigurable Intelligent Surface (RIS) facilitates physical-layer secure communications (PSC) by smartly controlling signal features such as phase and amplitude. Previous work shows that an illegal eavesdropper can sharply reduce the capacity for RIS-assisted PSC, while multiple eavesdroppers in the communication system, a more practical and challenging setting in the real world, is still largely underexplored. To this end, we present MuEaRIS, a novel approach that aims to maximize legitimate secure communication rates while minimizing the rate of each illegal eavesdropper for RIS-assisted PSC. Specifically, we jointly optimize Alice’s active beamforming and RIS’s passive beamforming using a novel method that explores alternating optimization and quadratic transformation. Numerical analysis shows that the proposed MuEaRIS is effective for RIS-assisted PSC in multi eavesdropper scenarios, while also outperforming existing methods in single eavesdropper settings, demonstrating broader applicability.
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来源期刊
IEEE Communications Letters
IEEE Communications Letters 工程技术-电信学
CiteScore
8.10
自引率
7.30%
发文量
590
审稿时长
2.8 months
期刊介绍: The IEEE Communications Letters publishes short papers in a rapid publication cycle on advances in the state-of-the-art of communication over different media and channels including wire, underground, waveguide, optical fiber, and storage channels. Both theoretical contributions (including new techniques, concepts, and analyses) and practical contributions (including system experiments and prototypes, and new applications) are encouraged. This journal focuses on the physical layer and the link layer of communication systems.
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