Movable Antenna-Aided Secure Full-Duplex Multi-User Communications

IF 10.7 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Wireless Communications Pub Date : 2024-12-30 DOI:10.1109/TWC.2024.3520806
Jingze Ding;Zijian Zhou;Bingli Jiao
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Abstract

In this paper, we investigate physical layer security (PLS) for full-duplex (FD) multi-user systems. We consider a base station (BS) that operates in FD mode and transmits artificial noise (AN) to simultaneously protect uplink (UL) and downlink (DL) transmissions. Conventional fixed-position antennas (FPAs) at the FD BS struggle to fully exploit spatial degrees of freedom (DoFs) to improve signal reception and suppress interference. To overcome this limitation, we propose a novel FD BS architecture equipped with multiple transmit and receive movable antennas (MAs). The MAs introduce the DoFs in antenna position optimization, which can improve the performance of secure communication systems. To serve users and counter the cooperative interception of multiple eavesdroppers (Eves), we formulate a sum of secrecy rates (SSR) maximization problem to jointly optimize the MA positions, the transmit, receive, and AN beamformers at the BS, and the UL powers. We propose an alternating optimization (AO) algorithm, which decomposes the original problem into three sub-problems, to solve the challenging non-convex optimization problem with highly coupled variables. Specifically, we propose the multi-velocity particle swarm optimization (MVPSO), which is an improved version of the standard particle swarm optimization (PSO), to simultaneously optimize all MA positions. The transmit/AN beamformers and the UL powers are solved by successive convex approximation (SCA). The optimal receive beamformer is derived as a closed-form solution. Simulation results demonstrate the effectiveness of the proposed algorithms and the advantages of MAs over conventional FPAs in enhancing the security of FD multi-user systems.
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可移动天线辅助安全全双工多用户通信
本文研究了全双工(FD)多用户系统的物理层安全性(PLS)。我们考虑一个在FD模式下运行并传输人工噪声(AN)的基站(BS),以同时保护上行链路(UL)和下行链路(DL)传输。传统的定位天线(fpa)在FD BS上难以充分利用空间自由度(dfs)来改善信号接收和抑制干扰。为了克服这一限制,我们提出了一种新的FD BS架构,配备了多个发射和接收移动天线(MAs)。MAs在天线位置优化中引入了DoFs,可以提高保密通信系统的性能。为了服务用户和对抗多窃听者(eve)的协同拦截,我们提出了保密率和(SSR)最大化问题,共同优化MA位置、BS处的发送、接收和AN波束形成器以及UL功率。为了解决具有高度耦合变量的非凸优化问题,提出了一种交替优化算法(AO),该算法将原问题分解为三个子问题。具体而言,我们提出了多速度粒子群优化(MVPSO),它是标准粒子群优化(PSO)的改进版本,可以同时优化所有MA位置。发射/AN波束形成器和UL功率由逐次凸近似(SCA)求解。最优接收波束形成器是一个封闭解。仿真结果证明了所提算法的有效性,以及MAs在提高FD多用户系统安全性方面相对于传统fpa的优势。
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来源期刊
CiteScore
18.60
自引率
10.60%
发文量
708
审稿时长
5.6 months
期刊介绍: The IEEE Transactions on Wireless Communications is a prestigious publication that showcases cutting-edge advancements in wireless communications. It welcomes both theoretical and practical contributions in various areas. The scope of the Transactions encompasses a wide range of topics, including modulation and coding, detection and estimation, propagation and channel characterization, and diversity techniques. The journal also emphasizes the physical and link layer communication aspects of network architectures and protocols. The journal is open to papers on specific topics or non-traditional topics related to specific application areas. This includes simulation tools and methodologies, orthogonal frequency division multiplexing, MIMO systems, and wireless over optical technologies. Overall, the IEEE Transactions on Wireless Communications serves as a platform for high-quality manuscripts that push the boundaries of wireless communications and contribute to advancements in the field.
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