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Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study

Performing 5G coverage planning across borders introduces real-life challenges related to legalities, intercountry agreements, and binding documents. This work provides RF network modelling exercise results to provide uninterrupted 5G coverage to the Via Baltica and Rail Baltica transport corridors...

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Autores principales: Elgarhy, Osama, Alam, Muhammad Mahtab, Tammets, Anet, Roosipuu, Priit, Ancāns, Guntis, Saidāns, Guntars, Tutovs, Jurijs, Saliņš, Klāvs, Vērdiņš, Aleksandrs, Aleksandrovs, Māris, Peršēvics, Arnis, Zariņš, Dainis, Uusmaa, Mart, Uhtlik, Ove, Soom, Priit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574887/
https://www.ncbi.nlm.nih.gov/pubmed/37836947
http://dx.doi.org/10.3390/s23198111
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author Elgarhy, Osama
Alam, Muhammad Mahtab
Tammets, Anet
Roosipuu, Priit
Ancāns, Guntis
Saidāns, Guntars
Tutovs, Jurijs
Saliņš, Klāvs
Vērdiņš, Aleksandrs
Aleksandrovs, Māris
Peršēvics, Arnis
Zariņš, Dainis
Uusmaa, Mart
Uhtlik, Ove
Soom, Priit
author_facet Elgarhy, Osama
Alam, Muhammad Mahtab
Tammets, Anet
Roosipuu, Priit
Ancāns, Guntis
Saidāns, Guntars
Tutovs, Jurijs
Saliņš, Klāvs
Vērdiņš, Aleksandrs
Aleksandrovs, Māris
Peršēvics, Arnis
Zariņš, Dainis
Uusmaa, Mart
Uhtlik, Ove
Soom, Priit
author_sort Elgarhy, Osama
collection PubMed
description Performing 5G coverage planning across borders introduces real-life challenges related to legalities, intercountry agreements, and binding documents. This work provides RF network modelling exercise results to provide uninterrupted 5G coverage to the Via Baltica and Rail Baltica transport corridors crossing Estonia and Latvia and on the border with Lithuania, as well as the Tallinn–Tartu–Valga and Valka–Valga roads (Latvia–Estonia), capable of cross-border 5G services. The study starts by identifying and interviewing stakeholders from different sectors of operation in the Baltic states and Europe and then provides an overview of some of the main legal acts and documents regulating the electronic communications sector in the Baltic states and Europe. Furthermore, 5G network requirements are proposed. In addition, the necessary and existing passive and active infrastructure is described, including spectrum management-related analysis, where the RF bands 700 MHz and 3500 MHz are analysed. Finally, coverage planning is performed. The network modelling results aim to foresee the number of new sites that need to be built on the said transport corridors, also examining the existing infrastructure for such purposes. Additionally, an estimated timeline for building the new sites is provided.
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spelling pubmed-105748872023-10-14 Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study Elgarhy, Osama Alam, Muhammad Mahtab Tammets, Anet Roosipuu, Priit Ancāns, Guntis Saidāns, Guntars Tutovs, Jurijs Saliņš, Klāvs Vērdiņš, Aleksandrs Aleksandrovs, Māris Peršēvics, Arnis Zariņš, Dainis Uusmaa, Mart Uhtlik, Ove Soom, Priit Sensors (Basel) Tutorial Performing 5G coverage planning across borders introduces real-life challenges related to legalities, intercountry agreements, and binding documents. This work provides RF network modelling exercise results to provide uninterrupted 5G coverage to the Via Baltica and Rail Baltica transport corridors crossing Estonia and Latvia and on the border with Lithuania, as well as the Tallinn–Tartu–Valga and Valka–Valga roads (Latvia–Estonia), capable of cross-border 5G services. The study starts by identifying and interviewing stakeholders from different sectors of operation in the Baltic states and Europe and then provides an overview of some of the main legal acts and documents regulating the electronic communications sector in the Baltic states and Europe. Furthermore, 5G network requirements are proposed. In addition, the necessary and existing passive and active infrastructure is described, including spectrum management-related analysis, where the RF bands 700 MHz and 3500 MHz are analysed. Finally, coverage planning is performed. The network modelling results aim to foresee the number of new sites that need to be built on the said transport corridors, also examining the existing infrastructure for such purposes. Additionally, an estimated timeline for building the new sites is provided. MDPI 2023-09-27 /pmc/articles/PMC10574887/ /pubmed/37836947 http://dx.doi.org/10.3390/s23198111 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Tutorial
Elgarhy, Osama
Alam, Muhammad Mahtab
Tammets, Anet
Roosipuu, Priit
Ancāns, Guntis
Saidāns, Guntars
Tutovs, Jurijs
Saliņš, Klāvs
Vērdiņš, Aleksandrs
Aleksandrovs, Māris
Peršēvics, Arnis
Zariņš, Dainis
Uusmaa, Mart
Uhtlik, Ove
Soom, Priit
Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study
title Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study
title_full Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study
title_fullStr Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study
title_full_unstemmed Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study
title_short Cost-Efficient Network Planning for the Cross-Border Baltic Corridor—A Study
title_sort cost-efficient network planning for the cross-border baltic corridor—a study
topic Tutorial
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574887/
https://www.ncbi.nlm.nih.gov/pubmed/37836947
http://dx.doi.org/10.3390/s23198111
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