Skip to content
Preprint

Place, Slice and Schedule: Hierarchical O-RAN Control of a Tethered mmWave UAV-gNB

Aug 2026 · 0 citations · 22 references
Computer Science

TL;DR

A Non-Real-Time RIC rApp is realized as a permutation-equivariant DeepSets Soft Actor-Critic scheduler that treats the users as an unordered set, trained in a Sionna RT ray traced channel, and a Near-Real-Time RIC xApp allocates per-user resources within that budget.

Abstract

Unmanned aerial vehicle (UAV)-mounted 5G New Radio base stations (gNBs) can augment terrestrial networks with an on-demand, repositionable Frequency Range 2 (FR2) capacity layer. This flexibility, however, couples the physical network topology with radio-resource management: UAV movement reshapes blockage, channel quality, and the set of effectively served users, while traffic demand, queues, and service requirements evolve at a much faster timescale. Existing Open Radio Access Network (O-RAN)-enabled UAV studies optimize trajectory, deployment, association, or resource allocation, but typically in isolation, without coordinating slow aerial control with fast per-user scheduling. We instead exploit O-RAN disaggregation, Key Performance Indicator (KPI) monitoring, and multi-timescale RAN Intelligent Controller (RIC) control to address this coupling: a Non-Real-Time RIC rApp uses aggregated KPIs and radio-environment context to jointly control tethered UAV placement and the enhanced Mobile Broadband (eMBB)/Ultra-Reliable Low-Latency Communication (URLLC) slice budget, while a Near-Real-Time RIC xApp allocates per-user resources within that budget. We realize this xApp as a permutation-equivariant DeepSets Soft Actor-Critic (D-SAC) scheduler that treats the users as an unordered set, trained in a Sionna RT ray traced channel. The resulting hierarchical controller improves eMBB SLA satisfaction by up to 17% and URLLC on-time delivery by up to 42% over classical and learned schedulers; the learned rApp further raises URLLC on-time delivery by up to 20% over baselines.

View source

Similar papers

2026

Sustaining Connectivity From the Sky: A Feasibility-Driven MARL Strategy for Communication-Computing Coordination in Multi-UAV Emergency Networks

When terrestrial base stations are damaged after disasters, multiple cooperative uncrewed aerial vehicles (UAVs) can be rapidly deployed to provide temporary communication access and edge computing services. However, post-disaster scenarios involve heterogeneous tasks, dynamic user distribution, and time-varying air-to...

Bang-He Xu, Hai-Tao Zhao, Miao Liu et al. · 0 citations
Preprint Sep 2026

Dynamic Task and Resource Scheduling Towards Space-Air-Ground-Sea Integrated Network

In the context of 6G ubiquitous connectivity, the space-air-ground-sea integrated network (SAGSIN) emerges as a new paradigm for pervasive service provisioning. To support expanding maritime activities in infrastructure-scarce ocean areas, we propose an innovative dynamic task and resource scheduling approach for SAGSI...

Yu-Fei Ye, Shi-Jian Gao, Xin-Hu Zheng et al. · 0 citations
Sep 2026

A Terrain- and SNR-Aware Framework for UAV-FSO Backbone Deployment in Post-Disaster Networks: AeroFSO-Deploy

Natural catastrophes frequently result in the partial or complete destruction of terrestrial communication networks, which severely degrading command, control, and coordination capabilities. Unmanned Aerial Vehicles (UAVs) equipped with free-space optical (FSO) transceivers offer a promising solution for a rapidly depl...

J. Charafeddine, J. Alkhateeb, Maher Rebai et al. · 0 citations
2026

Joint Optimization of Handoff Control and Resource Block Allocation in Integrated GEO-Multibeam and LEO–UAV Networks

The integrated geostationary Earth orbit (GEO)-multibeam and low Earth orbit (LEO)-uncrewed aerial vehicle (UAV) network has emerged as a promising paradigm to enhance the coverage and capacity of terrestrial networks. However, due to the high dynamics of the network and the heterogeneous service demands of user equipm...

Feng Yang, Meng Li, Peng-Bo Si et al. · 0 citations
Preprint Sep 2026

Task-Oriented Communications for Edge-Assisted Multi-View Localization

Unmanned aerial vehicles (UAVs) and unmanned ground vehicles (UGVs) often lose satellite positioning in urban canyons, indoor facilities, and jammed or spoofed environments, making vision-based matching with geo-tagged databases important for absolute positioning. However, limited onboard computation and energy often r...

Zheng-Ru Fang, Huanhuan Lou, Sen-Kang Hu et al. · 0 citations
Conference Aug 2026

Dual-Layer Dual-Timescale Collaborative Deployment for Dynamic UAV Ad Hoc Networks

Dynamic deployment in unmanned aerial vehicle ad hoc networks (UANETs) is challenging because wireless coverage, aerial backhaul connectivity, and user mobility are tightly coupled over time. Centralized methods can exploit broader network information but become costly under continuously changing network states, wherea...

Tian-Hang Zheng, Qi-Wen Lin, Shi-Chuang Jin et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.