English

Prototyping O-RAN Enabled UAV Experimentation for the AERPAW Testbed

Networking and Internet Architecture 2024-11-07 v1 Hardware Architecture Systems and Control Systems and Control

Abstract

The Open Radio Access Network (O-RAN) architecture is reshaping the telecommunications landscape by enhancing network flexibility, openness, and intelligence. This paper establishes the requirements, evaluates the design tradeoffs, and introduces a scalable architecture and prototype of an open-source O-RAN experimentation platform within the Aerial Experimentation and Research Platform for Advanced Wireless (AERPAW), an at scale testbed that integrates unmanned aerial vehicles (UAVs) with advanced wireless network technologies, offering experimentation in both outdoor testbed and emulation via a custom digital twin (DT). Through a series of aerial experiments, we evaluate FlexRIC, an open-source RAN Intelligent Controller, within the AERPAW hardware-software platform for network data monitoring, providing valuable insights into the proposed integration and revealing opportunities for leveraging O-RAN to create custom service based optimizations for cellular connected UAVs. We discuss the challenges and potential use cases of this integration and demonstrate the use of a generative artificial intelligence model for generating realistic data based on collected real-world data to support AERPAW's DT.

Keywords

Cite

@article{arxiv.2411.04027,
  title  = {Prototyping O-RAN Enabled UAV Experimentation for the AERPAW Testbed},
  author = {Joshua Moore and Aly Sabri Abdalla and Charles Ueltschey and Vuk Marojevic},
  journal= {arXiv preprint arXiv:2411.04027},
  year   = {2024}
}

Comments

This article has been accepted for publication in the IEEE Communications Magazine

R2 v1 2026-06-28T19:50:20.364Z