Reconfigurable Intelligent Surface Aided DFRC Vehicular Networks

Junming Feng, Peichang Zhang, Lei Huang, Gong-bin Qian
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Abstract

Reconfigurable Intelligent Surface (RIS) has been considered as a promising technology for 6G networks, which is capable of directionally reflecting the incident signal by adjusting phase shift of its reflecting elements, and thus to achieve beamforming. In this paper, we investigate the potential of employing RIS in dual-functional radar-communication (DFRC) vehicular networks. Considering a vehicle-to-infrastructure (V2I) communication in non-line-of-sight(N-LoS) scenario, where RIS is deployed to establish sensing and communication links, we propose a scheme to optimize the beamforming based on the detected vehicle position for the sake of avoiding the relatively large channel estimation overhead. More specifically, we build a codebook to maintain the optimal phase shift of RIS corresponding to each candidate angle offline, which can be used for detecting the direction of vehicle in N-LoS scenario. In addition, the position-based channel state information (CSI) is introduced and used for maximize the downlink rate. Simulation results show that by deploying RIS in DFRC vehicular networks, the base station can detect the vehicle position in N-LoS scenario and provide it with reliable communication rates without channel estimation.
可重构智能地面辅助DFRC车辆网络
可重构智能表面(Reconfigurable Intelligent Surface, RIS)是一种很有前途的6G网络技术,它可以通过调整反射单元的相移来定向反射入射信号,从而实现波束形成。在本文中,我们研究了在双功能雷达通信(DFRC)车辆网络中使用RIS的潜力。考虑到在非视距(N-LoS)场景下车辆对基础设施(V2I)通信,其中部署RIS建立传感和通信链路,我们提出了一种基于被检测车辆位置优化波束形成的方案,以避免相对较大的信道估计开销。更具体地说,我们建立了一个码本来保持每个候选角度对应的RIS的最优相移,可以用于N-LoS场景下的车辆方向检测。此外,还引入了基于位置的信道状态信息(CSI),用于最大限度地提高下行速率。仿真结果表明,通过在DFRC车载网络中部署RIS,基站可以在N-LoS场景下检测车辆位置,并为其提供可靠的通信速率,而无需进行信道估计。
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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