Reconfigurable intelligent surface (RIS) has shown promise in providing apparent benefits in wireless communication and positioning. Most of the existing research focuses on the ability of RIS to adjust the direction of propagation. In this paper, we present another application based on RIS, named multipath labeling, which intends to inject a label on propagation paths through the RISs. Each labeled path contains spatial knowledge between the RIS and the receiver, thus opening the door for sensing the surrounding world by RISs. The critical challenge is how the labeled paths can be extracted and distinguish from other paths, especially with multipath effects. To address this challenge, we present a complete labeling procedure consisting of channel flipping, parameter extraction, and RIS association. Simulations under a practice ray-tracing model reveal the feasibility of the proposed labeling technique even under the sub 6GHz channels with severe multipath effect. We also apply the multipath labeling technique to localization, which assists user equipment in obtaining its precise location through only a single base station.
翻译:重新配置的智能表面(RIS)在提供无线通信和定位的明显好处方面显示了希望。大部分现有研究侧重于RIS调整传播方向的能力。在本文中,我们介绍了另一个基于RIS的应用程序,称为多路径标签,意在通过RIS在传播路径上输入一个标签。每个标签路径都包含RIS和接收器之间的空间知识,从而打开通过RIS对周围世界进行感测的大门。关键的挑战是如何提取标签路径,并与其他路径区分,特别是多路径效应。为了应对这一挑战,我们提出了一个完整的标签程序,包括频道翻转、参数提取和RIS协会。在实用的射线追踪模型下模拟显示即使在子6GHz频道下,拟议的标签技术的可行性,并产生严重的多路径效应。我们还将多路径标签技术应用于本地化,帮助用户设备通过单一的基础站获得准确位置。