User Localization Using Random Access Channel Signals in LTE Networks with Massive MIMO

A. Fedorov, Haibo Zhang, Yawen Chen
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引用次数: 5

Abstract

Recent studies show that real-time precise user localization enables to deliver accurate beamforming in MIMO systems without the need for channel estimation. This paper presents new solutions for accurate user localization in massive MIMO LTE systems. A key novelty of the developed schemes is the ability to locate users during LTE's random access channel synchronization procedure before they are connected to the network, by which the obtained location information can be immediately used to optimize the allocation of radio resource and perform accurate beamforming. To achieve this, the developed solutions leverage the advantages of spherical wave propagation since it allows simultaneously estimating the angle of arrival and the propagation distance from the user equipment to each antenna element in the base station. We design solutions for both single-path line-of-sight communication and multi-path propagation environments. The developed schemes were evaluated through both simulations and proof-of-concept experiments. Simulation results show that both algorithms can achieve decimeter-level localization accuracy using 64 and more antenna elements for the distances up to 300 meters. The proof-of-concept experiment justifies the feasibility of user localization based on the estimation of the shape of the incoming wavefront.
大规模MIMO LTE网络中随机接入信道信号的用户定位
最近的研究表明,实时精确的用户定位可以在不需要信道估计的情况下在MIMO系统中提供准确的波束形成。本文提出了大规模MIMO LTE系统中精确用户定位的新解决方案。所开发方案的一个关键新颖之处在于能够在用户连接到网络之前,在LTE随机接入信道同步过程中对用户进行定位,由此获得的位置信息可以立即用于优化无线电资源分配并执行精确的波束形成。为了实现这一目标,开发的解决方案利用了球面波传播的优势,因为它可以同时估计到达角度和从用户设备到基站中每个天线元件的传播距离。我们为单路径视距通信和多路径传播环境设计解决方案。通过模拟和概念验证实验对开发的方案进行了评估。仿真结果表明,在300米以内的距离上,两种算法都可以使用64个以上的天线单元实现分米级的定位精度。概念验证实验证明了基于输入波前形状估计的用户定位的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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