English

Measurement-Driven O-RAN Diagnostics with Tail Latency and Scheduler Indicators

Networking and Internet Architecture 2026-03-12 v1

Abstract

We investigate cross-layer performance diagnostics for an O-RAN instance by jointly analyzing application-level latency and radio-layer behavior from a real measurement campaign. Measurements were conducted at multiple link distances (2, 6 and 11 meters) using two representative UE configurations (a commercial smartphone and a modem-based device), under both static conditions and a controlled dynamic obstruction scenario. Rather than relying on averages, the study adopts tail-focused latency characterization (e.g., 95th percentile and exceedance probabilities) and connects it to scheduler- and link-adaptation indicators (e.g., block error behavior, modulation/coding selection and signal quality). The results reveal (i) UE-dependent differences that primarily manifest in the latency tail, (ii) systematic scaling of tail latency with distance and payload and (iii) cases where radio-layer dynamics are detectable even when end-to-end latency appears stable, motivating the need for cross-layer evidence. Distinct from much of the existing literature (often centered on throughput, simulated setups, or single-layer KPIs) this work contributes a measurement-driven methodology for interpretable O-RAN diagnostics and proposes lightweight, window-based "degradation flags" that combine tail latency and radio indicators to support practical monitoring and troubleshooting.

Keywords

Cite

@article{arxiv.2603.11023,
  title  = {Measurement-Driven O-RAN Diagnostics with Tail Latency and Scheduler Indicators},
  author = {Theofanis P. Raptis and Weronika Maria Bachan and Roberto Verdone},
  journal= {arXiv preprint arXiv:2603.11023},
  year   = {2026}
}

Comments

Accepted for publication in ICCSPA 2026. Work supported by the EU under Italian National Recovery and Resilience Plan of NextGenerationEU on "Telecommunications of the Future" (PE00000001 - program "RESTART") CUP B53C22003970001

R2 v1 2026-07-01T11:15:07.190Z