Published July 22, 2026 | Version v1

Interoperable rApp/xApp Control over O-RAN for Mobility-aware Dynamic Spectrum Allocation

  • 1. ROR icon National Technical University of Athens
  • 2. Four Dot Infinity

Description

Open Radio Access Networks (O-RAN) enable the disaggregation of radio access functions and the deployment of control applications across different timescales. However, designing interoperable control schemes that jointly exploit long-term traffic awareness and near-real-time radio resource optimization remains a challenging problem, particularly under dense multi-cell interference and heterogeneous service demands. This paper proposes an interoperable rApp/xApp-driven dynamic spectrum allocation (DSA) framework for O-RAN, based on a graph-theoretic formulation of physical resource block (PRB) assignment. The proposed architecture leverages a Non-RT RIC rApp to predict aggregated traffic evolution and generate highlevel spectrum policies at the minutes timescale, while a Near- RT RIC xApp constructs a user-centric conflict graph and performs fairness-aware PRB allocation at sub-second timescales. To mitigate persistent user starvation, a conflict-aware modified proportional fair (MPF) scheduling mechanism is applied, enabling controlled interference-free PRB time-sharing. Extensive simulation results demonstrate that the proposed framework significantly improves the PRB assignment success rate (above 90%) and service-share fairness (above 85%) across different channel configurations and user demands, while maintaining architectural separation and rApp/xApp interoperability in accordance with O-RAN principles.

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Additional details

Related works

Is identical to
Conference paper: 10.1109/EuCNC/6GSummit68295.2026.11577650 (DOI)

Funding

European Commission
6G-CLOUD - Service-oriented 6G network architecture for distributed, intelligent, and sustainable cloud-native communication systems 101139073