Demo: Reconfigurable Distributed Antennas and Reflecting Surface (RDARS)-aided Integrated Sensing and Communication System

Jintao Wang, Cheng‐Gao Ji, Jiajia Guo, Shaodan Ma
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引用次数: 2

Abstract

Integrated sensing and communication (ISAC) system has been envisioned as a promising technology to be applied in future applications requiring both communication and high-accuracy sensing. Different from most research focusing on theoretical analysis and optimization in the area of ISAC, we implement a reconfigurable distributed antennas and reflecting surfaces (RDARS)-aided ISAC system prototype to achieve the dual-functionalities with the communication signal. A RDARS, composed of programmable elements capable of switching between reflection mode and connected mode, is introduced to assist in uplink signal transmission and sensing. The developed RDARS-aided ISAC prototype achieves reliable user localization without compromising the communication rate, showcasing its potential for future 6G systems.
演示:可重构分布式天线和反射面(RDARS)辅助集成传感和通信系统
集成传感和通信(ISAC)系统已被设想为一种有前途的技术,在未来的应用需要通信和高精度传感。不同于大多数ISAC领域的研究侧重于理论分析和优化,我们实现了一个可重构的分布式天线和反射面(RDARS)辅助ISAC系统原型,以实现与通信信号的双重功能。介绍了一种由可编程元件组成的可在反射模式和连接模式之间切换的雷达,用于辅助上行信号的传输和感知。开发的rdars辅助ISAC原型在不影响通信速率的情况下实现了可靠的用户定位,展示了其在未来6G系统中的潜力。
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