Movable antennas (MA) and transmissive reconfigurable intelligent surfaces (TRIS) represent two innovative technologies that significantly enhance the flexibility of wireless communication systems. In this paper, we propose a novel and compact base station architecture that synergistically integrates a movable antenna with a transmissive RIS in the near field, enabling joint optimization of antenna positioning and TRIS phase adjustments. The proposed model compensates for phase quantization loss and significantly enhances signal strength, even with low-resolution (1-2 bit) phase shifters. Leveraging this framework, we systematically evaluate system performance as a function of TRIS size and antenna placement. Our results indicate that antenna mobility provides an additional degree of freedom to enhance the desired signal and achieve a higher SNR, particularly when combined with TRIS capabilities. These findings demonstrate that MA-TRIS integration offers a cost-effective and energy-efficient pathway toward compact 6G base stations, combining hardware simplicity with strong performance gains.
翻译:可移动天线(MA)与透射式可重构智能表面(TRIS)是两种显著提升无线通信系统灵活性的创新技术。本文提出一种新颖且紧凑的基站架构,在近场中将可移动天线与透射式RIS协同集成,实现了天线位置与TRIS相位调整的联合优化。所提模型能够补偿相位量化损失,并显著增强信号强度,即使采用低分辨率(1-2比特)移相器亦能实现。基于此框架,我们系统性地评估了系统性能随TRIS尺寸与天线布局的变化关系。结果表明,天线移动性为增强目标信号和实现更高信噪比(SNR)提供了额外的自由度,尤其在结合TRIS功能时效果更为显著。这些发现证明,MA-TRIS集成提供了一种成本效益高且能效优异的路径,以实现紧凑型6G基站,在硬件简洁性与性能提升之间取得了良好平衡。