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From Concept to Reality: 5G Positioning with Open-Source Implementation of UL-TDoA in OpenAirInterface

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arxiv 2409.05217 v3 pith:GFQ6EFQU submitted 2024-09-08 cs.IT cs.ETcs.PFmath.IT

classification cs.ITcs.ETcs.PFmath.IT
keywords positioningimplementationul-tdoanetworkopen-sourcetimeaccessarrival
verification ladder T0 review T1 audit T2 compute T3 formal
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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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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Passive AoA Estimation of COTS 5G NR Handsets from Uplink SRS: A Practical USRP-B210 Implementation

    eess.SP 2026-07 conditional novelty 6.0 of 10

    Passive angle-of-arrival estimation of unmodified commercial 5G handsets from native uplink SRS is feasible with a two-element USRP B210 and a stock srsRAN gNB; accuracy is gated by SINR and multipath rather than range.

  2. Experimental Insights from OpenAirInterface 5G positioning Testbeds: Challenges and solutions

    cs.NI 2025-08 conditional novelty 6.0 of 10

    Three real-world 5G testbeds using OpenAirInterface achieve 1-2 m positioning accuracy in 90% of cases via filtered UL-TDoA with PSO, plus CIR-based fingerprinting for NLoS cases.

  3. Closed-loop Uplink Radio Resource Management in CF-O-RAN Empowered 5G Aerial Corridor

    eess.SY 2026-01 conditional novelty 4.0 of 10

    A joint drone-to-ground-station association and uplink power-control framework for O-RAN cell-free massive MIMO aerial corridors is shown in simulation to raise worst-case spectral efficiency up to 440% and meet per-d...

  4. Driving Innovation in 6G Wireless Technologies: The OpenAirInterface Approach

    cs.NI 2024-12 unverdicted novelty 3.0 of 10

    The paper describes the OpenAirInterface open-source 5G/6G platform, its performance on selected testbeds, and argues that such open-source systems will drive 6G research.

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