A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach

The high heterogeneity of 5G use cases requires the extension of the traditional per-component testing procedures provided by certification organizations, in order to devise and incorporate methodologies that cover the testing requirements from vertical applications and services. In this paper, we i...

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Main Authors: Almudena Díaz Zayas, Giuseppe Caso, Özgü Alay, Pedro Merino, Anna Brunstrom, Dimitris Tsolkas, Harilaos Koumaras
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Sensors
Subjects:
5G
Online Access:https://www.mdpi.com/1424-8220/20/22/6652
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spelling doaj-880c396e6b4a4ae5b250befbe47a76752020-11-25T04:04:29ZengMDPI AGSensors1424-82202020-11-01206652665210.3390/s20226652A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS ApproachAlmudena Díaz Zayas0Giuseppe Caso1Özgü Alay2Pedro Merino3Anna Brunstrom4Dimitris Tsolkas5Harilaos Koumaras6ITIS Software, Universidad de Málaga, Andalucía Tech, 29071 Málaga, SpainSimula Metropolitan Center for Digital Engineering, Pilestredet 52, 0167 Oslo, NorwaySimula Metropolitan Center for Digital Engineering, Pilestredet 52, 0167 Oslo, NorwayITIS Software, Universidad de Málaga, Andalucía Tech, 29071 Málaga, SpainDeparment of Mathematics and Computer Science, Karlstad University, 651 88 Karlstad, SwedenFogus Innovations & Services, 161 21 Kesariani, GreeceNCSR Demokritos, Institute of Informatics and Telecommunications, 153 41 Paraskevi, GreeceThe high heterogeneity of 5G use cases requires the extension of the traditional per-component testing procedures provided by certification organizations, in order to devise and incorporate methodologies that cover the testing requirements from vertical applications and services. In this paper, we introduce an experimentation methodology that is defined in the context of the 5GENESIS project, which aims at enabling both the testing of network components and validation of E2E KPIs. The most important contributions of this methodology are its modularity and flexibility, as well as the open-source software that was developed for its application, which enable lightweight adoption of the methodology in any 5G testbed. We also demonstrate how the methodology can be used, by executing and analyzing different experiments in a 5G Non-Standalone (NSA) deployment at the University of Malaga. The key findings of the paper are an initial 5G performance assessment and KPI analysis and the detection of under-performance issues at the application level. Those findings highlight the need for reliable testing and validation procedures towards a fair benchmarking of generic 5G services and applications.https://www.mdpi.com/1424-8220/20/22/66525Gtestbedsexperimentationmethodology
collection DOAJ
language English
format Article
sources DOAJ
author Almudena Díaz Zayas
Giuseppe Caso
Özgü Alay
Pedro Merino
Anna Brunstrom
Dimitris Tsolkas
Harilaos Koumaras
spellingShingle Almudena Díaz Zayas
Giuseppe Caso
Özgü Alay
Pedro Merino
Anna Brunstrom
Dimitris Tsolkas
Harilaos Koumaras
A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach
Sensors
5G
testbeds
experimentation
methodology
author_facet Almudena Díaz Zayas
Giuseppe Caso
Özgü Alay
Pedro Merino
Anna Brunstrom
Dimitris Tsolkas
Harilaos Koumaras
author_sort Almudena Díaz Zayas
title A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach
title_short A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach
title_full A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach
title_fullStr A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach
title_full_unstemmed A Modular Experimentation Methodology for 5G Deployments: The 5GENESIS Approach
title_sort modular experimentation methodology for 5g deployments: the 5genesis approach
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-11-01
description The high heterogeneity of 5G use cases requires the extension of the traditional per-component testing procedures provided by certification organizations, in order to devise and incorporate methodologies that cover the testing requirements from vertical applications and services. In this paper, we introduce an experimentation methodology that is defined in the context of the 5GENESIS project, which aims at enabling both the testing of network components and validation of E2E KPIs. The most important contributions of this methodology are its modularity and flexibility, as well as the open-source software that was developed for its application, which enable lightweight adoption of the methodology in any 5G testbed. We also demonstrate how the methodology can be used, by executing and analyzing different experiments in a 5G Non-Standalone (NSA) deployment at the University of Malaga. The key findings of the paper are an initial 5G performance assessment and KPI analysis and the detection of under-performance issues at the application level. Those findings highlight the need for reliable testing and validation procedures towards a fair benchmarking of generic 5G services and applications.
topic 5G
testbeds
experimentation
methodology
url https://www.mdpi.com/1424-8220/20/22/6652
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