论文标题

基于5G PRS的传感:接头感应和通信系统的传感参考信号方法

5G PRS-Based Sensing: A Sensing Reference Signal Approach for Joint Sensing and Communication System

论文作者

Wei, Zhiqing, Wang, Yuan, Ma, Liang, Yang, Shaoshi, Feng, Zhiyong, Pan, Chengkang, Zhang, Qixun, Wang, Yajuan, Wu, Huici, Zhang, Ping

论文摘要

在将来的无线通信系统中,新兴的关节传感和通信(JSC)技术有望支持新的应用程序和服务,例如自动驾驶和扩展现实(XR)。无线通信中的飞行员(或参考)信号通常具有良好的被动检测性能,强大的抗噪声能力和良好的自动相关特性,因此它们具有在雷达传感中应用的潜力。在本文中,我们研究了如何在雷达传感中应用第五代(5G)移动通信的定位参考信号(PR)。这种方法具有与迄今为止最先进的移动通信系统相容性的独特好处。因此,可以将PRs视为传感参考信号,以方便的方式同时实现雷达感测,通信和定位的功能。首先,我们提出了一种基于PRS的雷达感测方案并分析其范围和速度估计性能,我们提出了一种方法,该方法通过使用多个帧来提高速度估计的准确性。此外,得出了基于PRS的雷达传感的范围和速度估计的CRAMER-RAO下限(CRLB)和基于PRS的定位的范围估计的CRLB。我们的分析和仿真结果证明了PR在雷达传感中的可行性和优势。最后,根据我们的研究,对包含传感参考信号的未来5G式和第六代(6G)框架结构设计的一些建议是根据我们的研究得出的。

The emerging joint sensing and communication (JSC) technology is expected to support new applications and services, such as autonomous driving and extended reality (XR), in the future wireless communication systems. Pilot (or reference) signals in wireless communications usually have good passive detection performance, strong anti-noise capability and good auto-correlation characteristics, hence they bear the potential for applying in radar sensing. In this paper, we investigate how to apply the positioning reference signal (PRS) of the 5th generation (5G) mobile communications in radar sensing. This approach has the unique benefit of compatibility with the most advanced mobile communication system available so far. Thus, the PRS can be regarded as a sensing reference signal to simultaneously realize the functions of radar sensing, communication and positioning in a convenient manner. Firstly, we propose a PRS based radar sensing scheme and analyze its range and velocity estimation performance, based on which we propose a method that improves the accuracy of velocity estimation by using multiple frames. Furthermore, the Cramer-Rao lower bound (CRLB) of the range and velocity estimation for PRS based radar sensing and the CRLB of the range estimation for PRS based positioning are derived. Our analysis and simulation results demonstrate the feasibility and superiority of PRS over other pilot signals in radar sensing. Finally, some suggestions for the future 5G-Advanced and 6th generation (6G) frame structure design containing the sensing reference signal are derived based on our study.

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