Open-VERSO: a vision of 5G experimentation infrastructures, hurdles and challenges
Abstract
5G led to a digital revolution for networks by leveraging virtualisation techniques to manage software-based network functions through provided standard interfaces, which have matured recently for cloud infrastructure that is widely employed across domains and sectors. This undiscovered potential to adequately respond to concurrent and specialised traffic demands is promising for a wide spectrum of industries. Moreover, it exposes the networking ecosystem to prospects beyond the traditional value chain. However, the configuration, deployment and operation of a 5G network are challenging. Thus, different scientific and research entities have built their own open, evolvable and updateable testbed infrastructure that can be used for experimentation purposes. Such testbeds enable different stakeholders to integrate new systems or features exploiting new technologies, assess the performance of innovative services, and customise operation policies to find optimal setups from a cost-effective perspective. Furthermore, federations of infrastructure allow for wider and more complex experiments to be performed in distributed domains. However, numerous technical and procedural obstacles exist during the building of 5G network testbeds. In addition, some technical barriers persist despite the testing of alternatives and ongoing efforts within open-source systems and commercial equipment portfolios. All these limitations and challenges are relevant for experimenters and stakeholders as they attempt to determine the scope of 5G set expectations.
Keywords
Cite
@article{arxiv.2308.14532,
title = {Open-VERSO: a vision of 5G experimentation infrastructures, hurdles and challenges},
author = {Angel Martin and Pablo Losada and Carolina Fernández and Mikel Zorrilla and Zaloa Fernandez and Alvaro Gabilondo and Juncal Uriol and Felipe Mogollon and Mikel Serón and Michalis Dalgitsis and Roberto Viola and Luis Roca and Carlos Giraldo and Pablo Gonzalez and Anxo Tato and Joaquín Escudero and Alvaro Vazquez and Daniel Camps and Andrés Cárdenas and Carlos Herranz and Joan Josep Aleixendri and Rebeca Iglesias and Gianluca Cernigliaro and Mario Montagud and Pau Tomàs and Sergio Giménez},
journal= {arXiv preprint arXiv:2308.14532},
year = {2023}
}
Comments
41 pages, 8 tables, White Paper