Secure Wireless Communication via Movable-Antenna Array

Hu, Guojie, Wu, Qingqing, Xu, Kui, Si, Jiangbo, Al-Dhahir, Naofal
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Abstract

Movable antenna (MA) array is a novel technology recently developed where positions of transmit/receive antennas can be flexibly adjusted in the specified region to reconfigure the wireless channel and achieve a higher capacity. In this letter, we, for the first time, investigate the MA array-assisted physical-layer security where the confidential information is transmitted from a MA array-enabled Alice to a single-antenna Bob, in the presence of multiple single-antenna and colluding eavesdroppers. We aim to maximize the achievable secrecy rate by jointly designing the transmit beamforming and positions of all antennas at Alice subject to the transmit power budget and specified regions for positions of all transmit antennas. The resulting problem is highly non-convex, for which the projected gradient ascent (PGA) and the alternating optimization methods are utilized to obtain a high-quality suboptimal solution. Simulation results demonstrate that since the additional spatial degree of freedom (DoF) can be fully exploited, the MA array significantly enhances the secrecy rate compared to the conventional fixed-position antenna (FPA) array.
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移动天线阵列的安全无线通信
可移动天线阵列是近年来发展起来的一种新技术,它可以在指定区域内灵活地调整发射/接收天线的位置,从而重新配置无线信道,实现更高的容量。在这封信中,我们首次研究了MA阵列辅助的物理层安全,在多个单天线和串通窃听者存在的情况下,机密信息从启用MA阵列的Alice传输到单天线Bob。我们的目标是根据发射功率预算和所有发射天线位置的指定区域,共同设计发射波束形成和所有发射天线在Alice的位置,以最大限度地提高可实现的保密率。所得到的问题是高度非凸的,利用投影梯度上升(PGA)和交替优化方法来获得高质量的次优解。仿真结果表明,由于可以充分利用附加的空间自由度(DoF),与传统的固定位置天线(FPA)阵列相比,MA阵列显著提高了保密率。
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