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Embedded software of the KM3NeT central logic board
Aiello, S.; Albert, A.; Alves Garre, S.; Aly, Z.; Ambrosone, A.; Ameli, F.; Andre, M.; Androutsou, E.; Anghinolfi, M.; Anguita, M.; Aphecetche, L.; Ardid, M.; Ardid, S.; Atmani, H.; Aublin, J.; Bagatelas, C.; Bailly-Salins, L.; Bardačová, Z.; Baret, B.; Basegmez du Pree, S.; Becherini, Y.; Bendahman, M.; Benfenati, F.; Benhassi, M.; Benoit, D.M.; Berbee, E.; Bertin, V.; van Beveren, V.; Biagi, S.; Boettcher, M.; Boumaaza, J.; Bouta, M.; Bouwhuis, M.; Bozza, C.; Bozza, R.M.; Brânzaş, H.; Bretaudeau, F.; Bruijn, R.; Brunner, J.; Bruno, R.; Buis, E.; Buompane, R.; Busto, J.; Caiffi, B.; Calvo, D.; Campion, S.; Capone, A.; Carenini, F.; Carretero, V.; Cartraud, T.; Castaldi, P.; Cecchini, V.; Celli, S.; Cerisy, L.; Chabab, M.; Chadolias, M.; Chen, A.; Cherubini, S.; Chiarusi, T.; Circella, M.; Cocimano, R.; Coelho, J.A.B.; Coleiro, A.; Coniglione, R.; Coyle, P.; Creusot, A.; Cruz, A.; Cuttone, G.; Dallier, R.; Darras, Y.; De Benedittis, A.; De Martino, B.; Decoene, V.; Del Burgo, R.; Di Mauro, L.S.; Di Palma, I.; Díaz, A.F.; Diego-Tortosa, D.; Distefano, C.; Domi, A.; Donzaud, C.; Dornic, D.; Dörr, M.; Drakopoulou, E.; Drouhin, D.; Dvornický, R.; Eberl, T.; Eckerová, E.; Eddymaoui, A.; van Eeden, T.; Eff, M.; van Eijk, D.; El Bojaddaini, I.; El Hedri, S.; Enzenhöfer, A.; Ferrara, G.; Filipović, M.D.; Filippini, F.; Fusco, L.A.; Gabella, O.; Gabriel, J.; Gagliardini, S.; Gal, T.; García Méndez, J.; Garcia Soto, A.; Gatius Oliver, C.; Geißelbrecht, N.; Ghaddari, H.; Gialanella, L.; Gibson, B.K.; Giorgio, E.; Girardi, A.; Goos, I.; Goupilliere, D.; Gozzini, S.R.; Gracia, R.; Graf, K.; Guidi, C.; Guillon, B.; Gutiérrez, M.; van Haren, H.; Heijboer, A.; Hekalo, A.; Hennig, L.; Hernández-Rey, J.J.; Huang, F.; Idrissi Ibnsalih, W.; Illuminati, G.; James, C.W.; Jansweijer, P.; de Jong, M.; de Jong, P.; Jung, B.J.; Kalaczyński, P.; Kalekin, O.; Katz, U.F.; Khan Chowdhury, N.R.; Khatun, A.; Kistauri, G.; Kopper, C.; Kouchner, A.; Kulikovskiy, V.; Kvatadze, R.; Labalme, M.; Lahmann, R.; Larosa, G.; Lastoria, C.; Lazo, A.; Le Stum, S.; Lehaut, G.; Leonora, E.; Lessing, N.; Levi, G.; Lindsey Clark, M.; Longhitano, F.; Majumdar, J.; Malerba, L.; Mamedov, F.; Mańczak, J.; Manfreda, A.; Marconi, M.; Margiotta, A.; Marinelli, A.; Markou, C.; Martin, L.; Martínez-Mora, J.A.; Marzaioli, F.; Mastrodicasa, M.; Mastroianni, S.; Miccichè, S.; Miele, G.; Migliozzi, P.; Migneco, E.; Minutoli, S.; Mitsou, M.L.; Mollo, C.M.; Morales-Gallegos, L.; Morley-Wong, C.; Mosbrugger, A.; Moussa, A.; Mozun Mateo, I.; Muller, R.; Musone, M.R.; Musumeci, M.; Nauta, L.; Navas, S.; Nayerhoda, A.; Nicolau, C.A.; Nkosi, B.; Ó Fearraigh, B.; Oliviero, V.; Orlando, A.; Oukacha, E.; Palacios González, J.; Papalashvili, G.; Pastor Gomez, E.J.; Păun, A.M.; Păvălaş, G.E.; Peña Martínez, S.; Perrin-Terrin, M.; Perronnel, J.; Pestel, V.; Pestes, R.; Piattelli, P.; Poirè, C.; Popa, V.; Pradier, T.; Pulvirenti, S.; Quéméner, G.; Quiroz, C.; Rahaman, U.; Randazzo, N.; Razzaque, S.; Rea, I.C.; Real, D.; Reck, S.; Riccobene, G.; Robinson, J.; Romanov, A.; Saina, A.; Salesa Greus, F.; Samtleben, D.F.E.; Sánchez Losa, A.; Sanguineti, M.; Santonastaso, C.; Santonocito, D.; Sapienza, P.; Scarpetta, Y.; Schnabel, J.; Schneider, M.F.; Schumann, J.; Schutte, H.M.; Seneca, J.; Setter, B.; Sgura, I.; Shanidze, R.; Shitov, Y.; Šimkovic, F.; Simonelli, A.; Sinopoulou, A.; Smirnov, M.V.; Spisso, B.; Spurio, M.; Stavropoulos, D.; Štekl, I.; Taiuti, M.; Tayalati, Y.; Tedjditi, H.; Thiersen, H.; Tosta e Melo, I.; Trocme, B.; Tsagkli, S.; Tsourapis, V.; Tzamariudaki, E.; Vacheret, A.; Valsecchi, V.; Van Elewyck, V.; Vannoye, G.; Vasileiadis, G.; Vazquez de Sola, F.; Verilhac, C.; Veutro, A.; Viola, S.; Vivolo, D.; Warnhofer, H.; Wilms, J.; de Wolf, E.; Yepes-Ramirez, H.; Zarpapis, G.; Zavatarelli, S.; Zegarelli, A.; Zito, D.; Zornoza, J.D.; Zúñiga, J.; Zywucka, N. (2024). Embedded software of the KM3NeT central logic board. Computer Physics Communications 296: 109036. In: Computer Physics Communications. ELSEVIER SCIENCE BV: Amsterdam. ISSN 0010-4655; e-ISSN 1879-2944, more
Peer reviewed article  

Author keywords

    Embedded software; Neutrino detectors; Synchronization networks


Author  Top 
  • van Haren, H., more

Abstract
    The KM3NeT Collaboration is building and operating two deep sea neutrino telescopes at the bottom of the Mediterranean Sea. The telescopes consist of latices of photomultiplier tubes housed in pressure-resistant glass spheres, called digital optical modules and arranged in vertical detection units. The two main scientific goals are the determination of the neutrino mass ordering and the discovery and observation of high-energy neutrino sources in the Universe. Neutrinos are detected via the Cherenkov light, which is induced by charged particles originated in neutrino interactions. The photomultiplier tubes convert the Cherenkov light into electrical signals that are acquired and timestamped by the acquisition electronics. Each optical module houses the acquisition electronics for collecting and timestamping the photomultiplier signals with one nanosecond accuracy. Once finished, the two telescopes will have installed more than six thousand optical acquisition nodes, completing one of the more complex networks in the world in terms of operation and synchronization. The embedded software running in the acquisition nodes has been designed to provide a framework that will operate with different hardware versions and functionalities. The hardware will not be accessible once in operation, which complicates the embedded software architecture. The embedded software provides a set of tools to facilitate remote manageability of the deployed hardware, including safe reconfiguration of the firmware. This paper presents the architecture and the techniques, methods and implementation of the embedded software running in the acquisition nodes of the KM3NeT neutrino telescopes.

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