Skip to content
Preprint

Towards Federated, Green, and Resilient 6G Non-Terrestrial Networks

Sep 2026 · 0 citations · 96 references
Computer Science

TL;DR

It is shown that system federation significantly enhances both latency performance and connectivity robustness compared with non-federated LEO architectures and the challenges and possible solutions for adopting the Open-RAN architecture for T-NTN.

Abstract

This study focuses on future Non-Terrestrial Networks (NTN) integrated with Terrestrial Networks (TN) for future 5G/6G systems. NTN envisions a 3D architecture, where Low Earth Orbit (LEO) satellite networks will play a key role in bridging the digital divide, complementing the gradual terrestrial 5G/6G rollout concentrated in high-density and high-traffic areas, by ensuring service continuity across broad geographic regions and providing coverage in case of emergencies or in remote areas. In this context, we address networking issues for the integration and federation of Terrestrial and Non-Terrestrial Network (T-NTN) in line with the IMT-2030 vision, focusing on interoperability, spectrum coexistence, unified control and management, and service continuity. Federation is a complementary approach to integration that enables distinct satellite systems to cooperate through agreements, potentially unified satellite terminals, and common resource management. We show that system federation significantly enhances both latency performance and connectivity robustness compared with non-federated LEO architectures. This paper also investigates the challenges and possible solutions for adopting the Open-RAN architecture for T-NTN, including routing options for mega-LEO systems, edge intelligence, and energy efficiency as critical elements for sustainability. Finally, we address the security, privacy, and resilience aspects of federated T-NTN architectures with emphasis on zero-trust, secure routing, trustworthy edge intelligence, Post-Quantum Cryptography (PQC), and Quantum Key Distribution (QKD).

View source

Similar papers

Review Open access 2026

A Survey and Quantitative Analysis of Network Architectures for Future 6G Services in Rural and Underserved Areas

A comprehensive survey and quantitative analysis of network architectures for enabling future sixth-generation (6G) services in rural and underserved regions and identifies emerging technologies, including direct-to-device non-terrestrial access, programmable radio environments, and intelligent RAN control that are exp...

Souradeep Deb, Nishith D. Tripathi, Jeffrey H. Reed · 0 citations
Sep 2026

SDN-Enabled Use Cases and Architectures for DDoS-Resilient 5G Non-Terrestrial Networks

The integration of 5G systems with satellite megaconstellations is a cornerstone of forthcoming Non-Terrestrial Networks (NTN), but it also turns the space segment into a distributed critical infrastructure exposed to Distributed Denial of Service (DDoS) threats. The SDN4NTN project (Software Defined Networking-based s...

L. Fiscariello, M. Luglio, C. Roseti et al. · 0 citations
2026

Hierarchical Dynamic Spectrum Sharing Between Terrestrial Networks and Non-Terrestrial Networks

Integrated satellite-terrestrial networks (ISTNs) are envisioned as a key architecture for realizing ubiquitous coverage and efficient spectrum utilization in future communication systems. However, spectrum sharing between terrestrial networks (TNs) and non-terrestrial networks (NTNs) within ISTNs inevitably introduces...

Bo-Dong Shang, Yuan-Hao Wang, Zuo-Yun Liu et al. · 0 citations
Open access Aug 2026

Hyper-Distributed Edge Cloud Architecture with 10 Tbps Gateways and Multi-Regional Nodes

Syria’s digital reconstruction offers a unique opportunity to deploy a next-generation distributed computing infrastructure that leverages three strategic international gateways (IGWs): a submarine cable from Cyprus to Tartus (10 Tbps), a terrestrial link from Jordan to Damascus (10 Tbps), and a terrestrial link from T...

Jouma Ali Al-Mohamad, M. Paslavskyi, Julio Suárez Albanchez et al. · 0 citations
Preprint Aug 2026

Digital Twin Satellite Networks: A Paradigm for Intelligent, Efficient, and Resilient Operations

The proposed Digital Twin Satellite Network (DTSN) framework connects the physical satellite network with a synchronized virtual twin and combines real-time telemetry, Integrated Sensing and Communication (ISAC), predictive intelligence, and resilience-oriented control and successfully isolates compromised nodes and tr...

Mustafa Alhassan, Peng Hu · 0 citations

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