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COREX: Framework for distributed digital twins of 5G/6G network topologies and automated experiment executions

  • University of the West of Scotland
  • University of Leicester

Research output: Contribution to journalArticlepeer-review

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Abstract

The rapid evolution of Beyond 5G (B5G) and 6G networks demands advanced research frameworks that enable the emulation and digital twinning of complex network topologies, the automation of experiments, and the investigation of cybersecurity challenges. This paper introduces CORE eXecutor (COREX), a novel automation framework designed to orchestrate the setup of emulated 5G/6G network topologies, execute predefined use cases and cyber ranges, and facilitate cybersecurity experiments. COREX interacts with key autonomous network domains —Access, Edge, Transport, and Core—while supporting multi-tenancy, user mobility, and end-to-end resource management. The experimental evaluation demonstrates the framework efficiency and scalability. Results show that execution time increases with the number of User Equipment (UE), ranging from 699 to 1191 seconds, due to the setup stage, where the orchestrator provides the network topology across multiple physical machines. Bandwidth tests indicate that the framework maintains expected performance at lower loads (128 Mbps) with up to 99.9% bandwidth efficiency at the Edge segment. The framework’s ability to automate experiment execution has been validated through a self-protection loop cybersecurity use case, demonstrating its capability to detect, plan, and mitigate cybersecurity threats in 5G / 6G networks. COREX presents a significant advancement in network emulation, providing researchers with a powerful tool to explore 5G and 6G cybersecurity, optimise network performance, and refine autonomous network principles.
Original languageEnglish
Pages (from-to)5187-5204
Number of pages18
JournalIEEE Transactions on Network and Service Management
Volume23
Early online date3 Jun 2026
DOIs
Publication statusPublished - 15 Jun 2026

Bibliographical note

This accepted manuscript version is licensed under the Creative Commons Attribution License CC BY [https://creativecommons.org/licenses/by/4.0/], which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Funding

This research was funded by the UKRI Warranty Funds under European Commission Grant Agreement HORIZON-JU-SNS-2023-STREAM-D-01-01/101139172 (6G-PATH) and funded by EU Commission under Grant Agreement HORIZON-JU-SNS-2025-01-STREAM-B-01-01/101290342 (Agentic6G) and by UKRI EPSRC EP/Y028813/1 (National Edge AI Hub).

FundersFunder number
UK Research and Innovation
European CommissionHORIZON-JU-SNS-2023-STREAM-D-01-01/101139172, 6G-PATH, HORIZON-JU-SNS-2025-01-STREAM-B-01-01/101290342
Engineering and Physical Sciences Research CouncilEP/Y028813/1

Keywords

  • 5G
  • 6G
  • Autonomous Networks
  • Cyber Security
  • Experimentation
  • Multi-Tenancy and User Mobility

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