In this paper, we use a reconfigurable intelligent surface (RIS) to enhance the radar sensing and communication capabilities of a mmWave dual function radar communication system. To simultaneously localize the target and to serve the user, we propose to adaptively partition the RIS by reserving separate RIS elements for sensing and communication. We design a multi-stage hierarchical codebook to localize the target while ensuring a strong communication link to the user. We also present a method to choose the number of times to transmit the same beam in each stage to achieve a desired target localization probability of error. The proposed algorithm typically requires fewer transmissions than an exhaustive search scheme to achieve a desired target localization probability of error. Furthermore, the average spectral efficiency of the user with the proposed algorithm is found to be comparable to that of a RIS-assisted MIMO communication system without sensing capabilities and is much better than that of traditional MIMO systems without RIS.
翻译:在本文中,我们使用可重新配置的智能表面(RIS)来提高毫米Wave双功能雷达通信系统的雷达感测和通信能力;为了同时对目标进行定位并为用户服务,我们提议通过为遥感和通信保留单独的RIS元素来适应性地分割RIS;我们设计了一个多级级代码簿,在确保与用户建立强有力的通信联系的同时将目标定位;我们还提出了一个方法,在每一阶段选择传送同一波束的次数,以实现预期的目标定位误差概率。提议的算法通常要求比详尽的搜索计划少的传输次数,以达到预期的目标定位误差概率。此外,发现用户与拟议算法的平均光谱效率可与没有遥感能力的RIS辅助MIMO通信系统相比,而且比没有RIS的传统MIM系统要好得多。