V2X Sidelink Positioning in FR1: Scenarios, Algorithms, and Performance Evaluation

Yu Ge;Maximilian Stark;Musa Furkan Keskin;Frank Hofmann;Thomas Hansen;Henk Wymeersch
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Abstract

In this paper, we investigate sub-6 GHz V2X sidelink positioning scenarios in 5G vehicular networks through a comprehensive end-to-end methodology encompassing ray-tracing-based channel modeling, novel theoretical performance bounds, high-resolution channel parameter estimation, and geometric positioning using a round-trip-time (RTT) protocol. We first derive a novel, approximate Cramér-Rao bound (CRB) on the connected road user (CRU) position, explicitly taking into account multipath interference, path merging, and the RTT protocol. Capitalizing on tensor decomposition and ESPRIT methods, we propose high-resolution channel parameter estimation algorithms specifically tailored to dense multipath V2X sidelink environments, designed to detect multipath components (MPCs) and extract line-of-sight (LoS) parameters. Finally, using realistic ray-tracing data and antenna patterns, comprehensive simulations are conducted to evaluate channel estimation and positioning performance, indicating that sub-meter accuracy can be achieved in sub-6 GHz V2X with the proposed algorithms.
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FR1 中的 V2X 侧向链路定位:场景、算法和性能评估
在本文中,我们通过一种全面的端到端方法研究了 5G 车辆网络中的 6 GHz 以下 V2X 侧链定位场景,该方法包括基于光线追踪的信道建模、新的理论性能边界、高分辨率信道参数估计以及使用往返时间(RTT)协议的几何定位。我们首先推导出一个新颖、近似的克拉梅尔-拉奥(Cramér-Rao)约束(CRB),它明确考虑到了多径干扰、路径合并和 RTT 协议,从而确定了连接道路用户(CRU)的位置。利用张量分解和 ESPRIT 方法,我们提出了专门针对密集多径 V2X 侧链环境的高分辨率信道参数估计算法,旨在检测多径成分 (MPC) 并提取视距 (LoS) 参数。最后,利用现实的光线跟踪数据和天线模式,进行了全面的模拟,以评估信道估计和定位性能,结果表明,在 6 GHz 以下的 V2X 环境中,利用所提出的算法可以实现亚米级精度。
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Table of Contents IEEE Open Access Publishing Guest Editorial Positioning and Sensing Over Wireless Networks—Part II TechRxiv: Share Your Preprint Research With the World! IEEE Journal on Selected Areas in Communications Publication Information
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