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5G 新空口单站三维用户设备定位的比较研究

A Comparative Study of 3D UE Positioning in 5G New Radio with a Single Station.

作者信息

Sun Bo, Tan Bo, Wang Wenbo, Lohan Elena Simona

机构信息

Electrical Engineering Unit, Faculty of Information Technology and Communication Sciences, Tampere University, 33720 Tampere, Finland.

出版信息

Sensors (Basel). 2021 Feb 8;21(4):1178. doi: 10.3390/s21041178.

Abstract

The 5G network is considered as the essential underpinning infrastructure of manned and unmanned autonomous machines, such as drones and vehicles. Besides aiming to achieve reliable and low-latency wireless connectivity, positioning is another function provided by the 5G network to support the autonomous machines as the coexistence with the Global Navigation Satellite System (GNSS) is typically supported on smart 5G devices. This paper is a pilot study of using 5G uplink physical layer channel sounding reference signals (SRSs) for 3D user equipment (UE) positioning. The 3D positioning capability is backed by the uniform rectangular array (URA) on the base station and by the multiple subcarrier nature of the SRS. In this work, the subspace-based joint angle-time estimation and statistics-based expectation-maximization (EM) algorithms are investigated with the 3D signal manifold to prove the feasibility of using SRSs for 3D positioning. The positioning performance of both algorithms is evaluated by estimation of the root mean squared error (RMSE) versus the varying signal-to-noise-ratio (SNR), the bandwidth, the antenna array configuration, and multipath scenarios. The simulation results show that the uplink SRS works well for 3D UE positioning with a single base station, by providing a flexible resolution and accuracy for diverse application scenarios with the support of the phased array and signal estimation algorithms at the base station.

摘要

5G网络被视为无人机和车辆等有人和无人自主机器的重要支撑基础设施。除了旨在实现可靠且低延迟的无线连接外,定位是5G网络提供的另一项功能,以支持自主机器,因为智能5G设备通常支持与全球导航卫星系统(GNSS)共存。本文是一项关于使用5G上行链路物理层信道探测参考信号(SRS)进行三维用户设备(UE)定位的初步研究。三维定位能力由基站上的均匀矩形阵列(URA)以及SRS的多子载波特性提供支持。在这项工作中,利用三维信号流形研究了基于子空间的联合角度-时间估计和基于统计的期望最大化(EM)算法,以证明使用SRS进行三维定位的可行性。通过估计均方根误差(RMSE)与变化的信噪比(SNR)、带宽、天线阵列配置和多径场景,评估了这两种算法的定位性能。仿真结果表明,上行链路SRS在单个基站的三维UE定位中表现良好,通过在基站的相控阵和信号估计算法的支持下,为不同应用场景提供了灵活的分辨率和精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/606e/7914539/6d66358213ad/sensors-21-01178-g001.jpg

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