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Autores principales: Feldmann, Marius, Nöthlich, Tobias, Walter, Felix, Nitsch, Maximilian, Fraire, Juan A., Murzik, Georg A., Fuchs, Fiona
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:https://arxiv.org/abs/2510.27325
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author Feldmann, Marius
Nöthlich, Tobias
Walter, Felix
Nitsch, Maximilian
Fraire, Juan A.
Murzik, Georg A.
Fuchs, Fiona
author_facet Feldmann, Marius
Nöthlich, Tobias
Walter, Felix
Nitsch, Maximilian
Fraire, Juan A.
Murzik, Georg A.
Fuchs, Fiona
contents This whitepaper presents parts of the results of the REDMARS2 project conducted in 2021-2022, exploring the integration of Recursive Internetwork Architecture (RINA) concepts into Delay- and Disruption-Tolerant Networking (DTN) protocols. Using Bundle-in-Bundle Encapsulation (BIBE), we implemented scope-based separation mechanisms resulting in scalable DTNs. A key contribution of this work is the demonstration of practical BIBE-based use cases, including a realistic Solar System Internet communication scenario involving unmanned aerial vehicles (UAVs) and satellite relays. The evaluation, supported by field tests in collaboration with the European Space Agency (ESA), confirmed the viability of BIBE as a foundation for scalable, recursive, and interoperable DTN architectures.
format Preprint
id arxiv_https___arxiv_org_abs_2510_27325
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Selected Results from the REDMARS2 Project: Recursive Delay-Tolerant Networking using Bundle-in-Bundle Encapsulation
Feldmann, Marius
Nöthlich, Tobias
Walter, Felix
Nitsch, Maximilian
Fraire, Juan A.
Murzik, Georg A.
Fuchs, Fiona
Networking and Internet Architecture
This whitepaper presents parts of the results of the REDMARS2 project conducted in 2021-2022, exploring the integration of Recursive Internetwork Architecture (RINA) concepts into Delay- and Disruption-Tolerant Networking (DTN) protocols. Using Bundle-in-Bundle Encapsulation (BIBE), we implemented scope-based separation mechanisms resulting in scalable DTNs. A key contribution of this work is the demonstration of practical BIBE-based use cases, including a realistic Solar System Internet communication scenario involving unmanned aerial vehicles (UAVs) and satellite relays. The evaluation, supported by field tests in collaboration with the European Space Agency (ESA), confirmed the viability of BIBE as a foundation for scalable, recursive, and interoperable DTN architectures.
title Selected Results from the REDMARS2 Project: Recursive Delay-Tolerant Networking using Bundle-in-Bundle Encapsulation
topic Networking and Internet Architecture
url https://arxiv.org/abs/2510.27325