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Round Trip Time Estimation Utilizing Cyclic Shift of Uplink Reference Signal

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arxiv 2410.04528 v1 pith:2ED4I565 submitted 2024-10-06 cs.IT eess.SPmath.IT

classification cs.ITeess.SPmath.IT
keywords methodobtainreferencesignaluplinkabsolutecyclicround
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In the context of fifth-generation new radio (5G NR) technology, it is not possible to directly obtain an absolute uplink (UL) channel impulse response (CIR) at the base station (gNB) from a user equipment (UE). The UL CIR obtained through the sounding reference signal (SRS) is always time-shifted by the timing advance (TA) applied at the UE. The TA is crucial for maintaining UL synchronization, and transmitting SRS without applying the TA will result in interference. In this work, we propose a new method to obtain absolute UL CIR from a UE and then use it to estimate the round trip time (RTT) at the gNB. This method requires enhancing the current 5G protocol stack with a new Zadoff-Chu (ZC) based wideband uplink reference signal (URS). Capitalizing on the cyclic shift property of the URS sequence, we can obtain the RTT with a significant reduction in overhead and latency compared to existing schemes. The proposed method is experimentally validated using a real-world testbed based on OpenAirInterface (OAI).

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Cited by 1 Pith paper

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  1. 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.

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