从概念到现实:利用 OpenAirInterface 中的 UL-TDoA 开源实现 5G 定位

Adeel Malik, Mohsen Ahadi, Florian Kaltenberger, Klaus Warnke, Nguyen Tien Thinh, Nada Bouknana, Cedric Thienot, Godswill Onche, Sagar Arora
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引用次数: 0

摘要

本文首次介绍了使用开放空中接口(OAI)框架的3GPP上行链路到达时间差(UL-TDoA)定位方法的开源实现。UL-TDoA是5G网络中的一项关键定位技术,它利用信号到达多个基站的时间差来确定用户设备(UE)的精确位置。本实施方案旨在将 UL-TDoA 功能集成到 OAI 的无线接入网 (RAN) 和核心网 (CN) 组件中,提供一个全面且符合 3GPP 标准的解决方案,从而实现先进定位技术的普及。开发工作包括纳入 3GPP 标准规定的基本协议程序、信息流和接口。验证采用两种不同的方法进行:一种是基于 OAI-RF 模拟器的受控测试设置,另一种是在真实世界条件下在 EURECOM 进行的基于 O-RAN 的本地化测试平台。测试结果证明了这一开源 UL-TDoA 实施方案的可行性,可在各种环境中实现精确定位。通过公开这一实现方法,该研究为 5G 定位技术领域的广泛研究、开发和创新铺平了道路,促进了合作并加快了蜂窝网络定位的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Concept to Reality: 5G Positioning with Open-Source Implementation of UL-TDoA in OpenAirInterface
This paper presents, for the first time, an open-source implementation of the 3GPP Uplink Time Difference of Arrival (UL-TDoA) positioning method using the OpenAirInterface (OAI) framework. UL-TDoA is a critical positioning technique in 5G networks, leveraging the time differences of signal arrival at multiple base stations to determine the precise location of User Equipment (UE). This implementation aims to democratize access to advanced positioning technology by integrating UL-TDoA capabilities into both the Radio Access Network (RAN) and Core Network (CN) components of OAI, providing a comprehensive and 3GPP-compliant solution. The development includes the incorporation of essential protocol procedures, message flows, and interfaces as defined by 3GPP standards. Validation is conducted using two distinct methods: an OAI-RF simulator-based setup for controlled testing and an O-RAN-based Localization Testbed at EURECOM in real-world conditions. The results demonstrate the viability of this open-source UL-TDoA implementation, enabling precise positioning in various environments. By making this implementation publicly available, the study paves the way for widespread research, development, and innovation in the field of 5G positioning technologies, fostering collaboration and accelerating the advancement of cellular network positioning.
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