Optical characterization of strain sensing cables for Brillouin optical time domain analysis

Two innovative optical fibre cable layouts designed to improve BOTDA strain measurement accuracy through improved strain transfer efficiency are presented, discussed and tested through experiments, analytical and numerical modelling. The second improved design presents good features to minimize the...

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Autores principales: Bastianini Filippo, Falcetelli Francesco, Bocheński Paweł, Rossi Leonardo, Di Sante Raffaella, Bolognini Gabriele
Formato: article
Lenguaje:EN
Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/1ff4d9ee21c6412cbfcc7db05785e8d9
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spelling oai:doaj.org-article:1ff4d9ee21c6412cbfcc7db05785e8d92021-12-02T17:12:51ZOptical characterization of strain sensing cables for Brillouin optical time domain analysis2100-014X10.1051/epjconf/202125512011https://doaj.org/article/1ff4d9ee21c6412cbfcc7db05785e8d92021-01-01T00:00:00Zhttps://www.epj-conferences.org/articles/epjconf/pdf/2021/09/epjconf_eosam2021_12011.pdfhttps://doaj.org/toc/2100-014XTwo innovative optical fibre cable layouts designed to improve BOTDA strain measurement accuracy through improved strain transfer efficiency are presented, discussed and tested through experiments, analytical and numerical modelling. The second improved design presents good features to minimize the mismatch between measured and actual strain.Bastianini FilippoFalcetelli FrancescoBocheński PawełRossi LeonardoDi Sante RaffaellaBolognini GabrieleEDP SciencesarticlePhysicsQC1-999ENEPJ Web of Conferences, Vol 255, p 12011 (2021)
institution DOAJ
collection DOAJ
language EN
topic Physics
QC1-999
spellingShingle Physics
QC1-999
Bastianini Filippo
Falcetelli Francesco
Bocheński Paweł
Rossi Leonardo
Di Sante Raffaella
Bolognini Gabriele
Optical characterization of strain sensing cables for Brillouin optical time domain analysis
description Two innovative optical fibre cable layouts designed to improve BOTDA strain measurement accuracy through improved strain transfer efficiency are presented, discussed and tested through experiments, analytical and numerical modelling. The second improved design presents good features to minimize the mismatch between measured and actual strain.
format article
author Bastianini Filippo
Falcetelli Francesco
Bocheński Paweł
Rossi Leonardo
Di Sante Raffaella
Bolognini Gabriele
author_facet Bastianini Filippo
Falcetelli Francesco
Bocheński Paweł
Rossi Leonardo
Di Sante Raffaella
Bolognini Gabriele
author_sort Bastianini Filippo
title Optical characterization of strain sensing cables for Brillouin optical time domain analysis
title_short Optical characterization of strain sensing cables for Brillouin optical time domain analysis
title_full Optical characterization of strain sensing cables for Brillouin optical time domain analysis
title_fullStr Optical characterization of strain sensing cables for Brillouin optical time domain analysis
title_full_unstemmed Optical characterization of strain sensing cables for Brillouin optical time domain analysis
title_sort optical characterization of strain sensing cables for brillouin optical time domain analysis
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/1ff4d9ee21c6412cbfcc7db05785e8d9
work_keys_str_mv AT bastianinifilippo opticalcharacterizationofstrainsensingcablesforbrillouinopticaltimedomainanalysis
AT falcetellifrancesco opticalcharacterizationofstrainsensingcablesforbrillouinopticaltimedomainanalysis
AT bochenskipaweł opticalcharacterizationofstrainsensingcablesforbrillouinopticaltimedomainanalysis
AT rossileonardo opticalcharacterizationofstrainsensingcablesforbrillouinopticaltimedomainanalysis
AT disanteraffaella opticalcharacterizationofstrainsensingcablesforbrillouinopticaltimedomainanalysis
AT bologninigabriele opticalcharacterizationofstrainsensingcablesforbrillouinopticaltimedomainanalysis
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