Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band

5G traffic expectations require not only the appropriate access infrastructure, but also the corresponding backhaul infrastructure to ensure well-balanced network scaling. Optical fiber and terrestrial wireless backhaul will hardly meet 100 percent coverage, and satellite must be considered within t...

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Autores: Artiga X., Perez-Neira A., Baranda J., Lagunas E., Chatzinotas S., Zetik R., Gorski P., Ntougias K., Perez D., Ziaragkas G.
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2018
País:España
Institución:Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
Repositorio:r-CTTC. Repositorio Institucional Producción Científica del Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
OAI Identifier:oai:cttc.fundanetsuite.com:p3248
Acceso en línea:https://cttc.fundanetsuite.com/Publicaciones/ProdCientif/PublicacionFrw.aspx?id=3248
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85054475489&doi=10.1109%2fMNET.2018.1800030&partnerID=40&md5=d72cce11dc50fb8dcce62563dffef4ef
Access Level:acceso abierto
Palabra clave:Millimeter waves
Optical fibers
Satellite antennas
Satellite communication systems
Satellites
Wireless telecommunication systems
Backhaul networks
Frequency re-use
Reliable Networks
Satellite communications
Seamless integration
Smart antenna techniques
Terrestrial wireless networks
Wireless backhaul
5G mobile communication systems
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spelling Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave bandArtiga X.Perez-Neira A.Baranda J.Lagunas E.Chatzinotas S.Zetik R.Gorski P.Ntougias K.Perez D.Ziaragkas G.Millimeter wavesOptical fibersSatellite antennasSatellite communication systemsSatellitesWireless telecommunication systemsBackhaul networksFrequency re-useReliable NetworksSatellite communicationsSeamless integrationSmart antenna techniquesTerrestrial wireless networksWireless backhaul5G mobile communication systems5G traffic expectations require not only the appropriate access infrastructure, but also the corresponding backhaul infrastructure to ensure well-balanced network scaling. Optical fiber and terrestrial wireless backhaul will hardly meet 100 percent coverage, and satellite must be considered within the 5G infrastructure to boost ubiquitous and reliable network utilization. This work presents the main outcomes of the SANSA project, which proposes a novel solution that overcomes the limitations of the traditional fixed backhaul. It is based on a dynamic integrated satellite-terrestrial backhaul network operating on the mmWave band. Its key principles are seamless integration of the satellite segment into terrestrial backhaul networks, a terrestrial wireless network capable of reconfiguring its topology according to traffic demands, and aggressive frequency reuse within the terrestrial segment and between terrestrial and satellite segments. The two technological enablers of SANSA are smart antenna techniques at mmWave and software defined intelligent hybrid network management. This article introduces these 5G enablers, which permit satellite communications to play a key role in different 5G use cases, from the early deployment of 5G services in sparse scenarios to enhanced mobile broadband in denser scenarios. © 2018 IEEE.Institute of Electrical and Electronics Engineers Inc.2018info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionhttps://cttc.fundanetsuite.com/Publicaciones/ProdCientif/PublicacionFrw.aspx?id=3248https://www.scopus.com/inward/record.uri?eid=2-s2.0-85054475489&doi=10.1109%2fMNET.2018.1800030&partnerID=40&md5=d72cce11dc50fb8dcce62563dffef4efIEEE NetworkISSN: 08908044ISSNe: 1558156Xreponame:r-CTTC. Repositorio Institucional Producción Científica del Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)instname:Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)Inglésinfo:eu-repo/semantics/openAccessoai:cttc.fundanetsuite.com:p32482026-06-17T11:44:47Z
dc.title.none.fl_str_mv Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
title Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
spellingShingle Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
Artiga X.
Millimeter waves
Optical fibers
Satellite antennas
Satellite communication systems
Satellites
Wireless telecommunication systems
Backhaul networks
Frequency re-use
Reliable Networks
Satellite communications
Seamless integration
Smart antenna techniques
Terrestrial wireless networks
Wireless backhaul
5G mobile communication systems
title_short Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
title_full Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
title_fullStr Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
title_full_unstemmed Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
title_sort Shared access satellite-terrestrial reconfigurable backhaul network enabled by smart antennas at MmWave band
dc.creator.none.fl_str_mv Artiga X.
Perez-Neira A.
Baranda J.
Lagunas E.
Chatzinotas S.
Zetik R.
Gorski P.
Ntougias K.
Perez D.
Ziaragkas G.
author Artiga X.
author_facet Artiga X.
Perez-Neira A.
Baranda J.
Lagunas E.
Chatzinotas S.
Zetik R.
Gorski P.
Ntougias K.
Perez D.
Ziaragkas G.
author_role author
author2 Perez-Neira A.
Baranda J.
Lagunas E.
Chatzinotas S.
Zetik R.
Gorski P.
Ntougias K.
Perez D.
Ziaragkas G.
author2_role author
author
author
author
author
author
author
author
author
dc.subject.none.fl_str_mv Millimeter waves
Optical fibers
Satellite antennas
Satellite communication systems
Satellites
Wireless telecommunication systems
Backhaul networks
Frequency re-use
Reliable Networks
Satellite communications
Seamless integration
Smart antenna techniques
Terrestrial wireless networks
Wireless backhaul
5G mobile communication systems
topic Millimeter waves
Optical fibers
Satellite antennas
Satellite communication systems
Satellites
Wireless telecommunication systems
Backhaul networks
Frequency re-use
Reliable Networks
Satellite communications
Seamless integration
Smart antenna techniques
Terrestrial wireless networks
Wireless backhaul
5G mobile communication systems
description 5G traffic expectations require not only the appropriate access infrastructure, but also the corresponding backhaul infrastructure to ensure well-balanced network scaling. Optical fiber and terrestrial wireless backhaul will hardly meet 100 percent coverage, and satellite must be considered within the 5G infrastructure to boost ubiquitous and reliable network utilization. This work presents the main outcomes of the SANSA project, which proposes a novel solution that overcomes the limitations of the traditional fixed backhaul. It is based on a dynamic integrated satellite-terrestrial backhaul network operating on the mmWave band. Its key principles are seamless integration of the satellite segment into terrestrial backhaul networks, a terrestrial wireless network capable of reconfiguring its topology according to traffic demands, and aggressive frequency reuse within the terrestrial segment and between terrestrial and satellite segments. The two technological enablers of SANSA are smart antenna techniques at mmWave and software defined intelligent hybrid network management. This article introduces these 5G enablers, which permit satellite communications to play a key role in different 5G use cases, from the early deployment of 5G services in sparse scenarios to enhanced mobile broadband in denser scenarios. © 2018 IEEE.
publishDate 2018
dc.date.none.fl_str_mv 2018
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv https://cttc.fundanetsuite.com/Publicaciones/ProdCientif/PublicacionFrw.aspx?id=3248
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85054475489&doi=10.1109%2fMNET.2018.1800030&partnerID=40&md5=d72cce11dc50fb8dcce62563dffef4ef
url https://cttc.fundanetsuite.com/Publicaciones/ProdCientif/PublicacionFrw.aspx?id=3248
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85054475489&doi=10.1109%2fMNET.2018.1800030&partnerID=40&md5=d72cce11dc50fb8dcce62563dffef4ef
dc.language.none.fl_str_mv Inglés
language_invalid_str_mv Inglés
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.publisher.none.fl_str_mv Institute of Electrical and Electronics Engineers Inc.
publisher.none.fl_str_mv Institute of Electrical and Electronics Engineers Inc.
dc.source.none.fl_str_mv IEEE Network
ISSN: 08908044
ISSNe: 1558156X
reponame:r-CTTC. Repositorio Institucional Producción Científica del Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
instname:Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
instname_str Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
reponame_str r-CTTC. Repositorio Institucional Producción Científica del Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
collection r-CTTC. Repositorio Institucional Producción Científica del Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
repository.name.fl_str_mv
repository.mail.fl_str_mv
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