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author Agostino, Lorenzo
Bauer, Gerry
Beccati, Barbara
Behrens, Ulf
Berryhil, Jeffrey
Biery, Kurt
Bose, Tulika
Brett, Angela
Branson, James
Cano, Eric
Cheung, Harry
Ciganek, Marek
Cittolin, Sergio
Coarasa, Jose Antonio
Dahmes, Bryan
Deldicque, Christian
Dusinberre, E.
Erhan, Samim
Gigi, Dominique
Glege, Frank
Gomez-Reino, Robert
Gutleber, Johannes
Hatton, Derek
Laurens, Jean-Francois
Loizides, Constantin
Ma, Frank
Meijers, Frans
Meschi, Emilio
Meyer, Andreas
Mommsen, Remigius K
Moser, Roland
O'Dell, Vivian
Oh, Alexander
Orsini, Luciano
Patras, Vaios
Paus, C.
Paus, Christoph
Petrucci, Andrea
Pieri, Marco
Racz, Attila
Sakulin, Hannes
Sani, Matteo
Schieferdecker, P.
Schwick, Christoph
Serrano Margaleff, Josep Francesc
Shpakov, Dennis
Simon, Sean
Sumorok, Konstanty
Sungho Yoon, Andre
Wittich, Peter
Zanetti, Marco
author_facet Agostino, Lorenzo
Bauer, Gerry
Beccati, Barbara
Behrens, Ulf
Berryhil, Jeffrey
Biery, Kurt
Bose, Tulika
Brett, Angela
Branson, James
Cano, Eric
Cheung, Harry
Ciganek, Marek
Cittolin, Sergio
Coarasa, Jose Antonio
Dahmes, Bryan
Deldicque, Christian
Dusinberre, E.
Erhan, Samim
Gigi, Dominique
Glege, Frank
Gomez-Reino, Robert
Gutleber, Johannes
Hatton, Derek
Laurens, Jean-Francois
Loizides, Constantin
Ma, Frank
Meijers, Frans
Meschi, Emilio
Meyer, Andreas
Mommsen, Remigius K
Moser, Roland
O'Dell, Vivian
Oh, Alexander
Orsini, Luciano
Patras, Vaios
Paus, C.
Paus, Christoph
Petrucci, Andrea
Pieri, Marco
Racz, Attila
Sakulin, Hannes
Sani, Matteo
Schieferdecker, P.
Schwick, Christoph
Serrano Margaleff, Josep Francesc
Shpakov, Dennis
Simon, Sean
Sumorok, Konstanty
Sungho Yoon, Andre
Wittich, Peter
Zanetti, Marco
author_sort Agostino, Lorenzo
collection CERN
description The CMS experiment will collect data from the proton-proton collisions delivered by the Large Hadron Collider (LHC) at a centre-of-mass energy up to 14 TeV. The CMS trigger system is designed to cope with unprecedented luminosities and LHC bunch-crossing rates up to 40 MHz. The unique CMS trigger architecture only employs two trigger levels. The Level-1 trigger is implemented using custom electronics, while the High Level Trigger (HLT) is based on software algorithms running on a large cluster of commercial processors, the Event Filter Farm. We present the major functionalities of the CMS High Level Trigger system as of the starting of LHC beams operations in September 2008. The validation of the HLT system in the online environment with Monte Carlo simulated data and its commissioning during cosmic rays data taking campaigns are discussed in detail. We conclude with the description of the HLT operations with the first circulating LHC beams before the incident occurred the 19th September 2008.
id cern-1199930
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling cern-11999302023-02-09T07:55:28Zdoi:10.1088/1748-0221/4/10/P10005http://cds.cern.ch/record/1199930engAgostino, LorenzoBauer, GerryBeccati, BarbaraBehrens, UlfBerryhil, JeffreyBiery, KurtBose, TulikaBrett, AngelaBranson, JamesCano, EricCheung, HarryCiganek, MarekCittolin, SergioCoarasa, Jose AntonioDahmes, BryanDeldicque, ChristianDusinberre, E.Erhan, SamimGigi, DominiqueGlege, FrankGomez-Reino, RobertGutleber, JohannesHatton, DerekLaurens, Jean-FrancoisLoizides, ConstantinMa, FrankMeijers, FransMeschi, EmilioMeyer, AndreasMommsen, Remigius KMoser, RolandO'Dell, VivianOh, AlexanderOrsini, LucianoPatras, VaiosPaus, C.Paus, ChristophPetrucci, AndreaPieri, MarcoRacz, AttilaSakulin, HannesSani, MatteoSchieferdecker, P.Schwick, ChristophSerrano Margaleff, Josep FrancescShpakov, DennisSimon, SeanSumorok, KonstantySungho Yoon, AndreWittich, PeterZanetti, MarcoCommissioning of the CMS High Level TriggerDetectors and Experimental Techniquesphysics.ins-detThe CMS experiment will collect data from the proton-proton collisions delivered by the Large Hadron Collider (LHC) at a centre-of-mass energy up to 14 TeV. The CMS trigger system is designed to cope with unprecedented luminosities and LHC bunch-crossing rates up to 40 MHz. The unique CMS trigger architecture only employs two trigger levels. The Level-1 trigger is implemented using custom electronics, while the High Level Trigger (HLT) is based on software algorithms running on a large cluster of commercial processors, the Event Filter Farm. We present the major functionalities of the CMS High Level Trigger system as of the starting of LHC beams operations in September 2008. The validation of the HLT system in the online environment with Monte Carlo simulated data and its commissioning during cosmic rays data taking campaigns are discussed in detail. We conclude with the description of the HLT operations with the first circulating LHC beams before the incident occurred the 19th September 2008.The CMS experiment will collect data from the proton-proton collisions delivered by the Large Hadron Collider (LHC) at a centre-of-mass energy up to 14 TeV. The CMS trigger system is designed to cope with unprecedented luminosities and LHC bunch-crossing rates up to 40 MHz. The unique CMS trigger architecture only employs two trigger levels. The Level-1 trigger is implemented using custom electronics, while the High Level Trigger (HLT) is based on software algorithms running on a large cluster of commercial processors, the Event Filter Farm. We present the major functionalities of the CMS High Level Trigger system as of the starting of LHC beams operations in September 2008. The validation of the HLT system in the online environment with Monte Carlo simulated data and its commissioning during cosmic rays data taking campaigns are discussed in detail. We conclude with the description of the HLT operations with the first circulating LHC beams before the incident occurred the 19th September 2008.arXiv:0908.1065FERMILAB-PUB-09-542-CMSoai:cds.cern.ch:11999302009-06-26
spellingShingle Detectors and Experimental Techniques
physics.ins-det
Agostino, Lorenzo
Bauer, Gerry
Beccati, Barbara
Behrens, Ulf
Berryhil, Jeffrey
Biery, Kurt
Bose, Tulika
Brett, Angela
Branson, James
Cano, Eric
Cheung, Harry
Ciganek, Marek
Cittolin, Sergio
Coarasa, Jose Antonio
Dahmes, Bryan
Deldicque, Christian
Dusinberre, E.
Erhan, Samim
Gigi, Dominique
Glege, Frank
Gomez-Reino, Robert
Gutleber, Johannes
Hatton, Derek
Laurens, Jean-Francois
Loizides, Constantin
Ma, Frank
Meijers, Frans
Meschi, Emilio
Meyer, Andreas
Mommsen, Remigius K
Moser, Roland
O'Dell, Vivian
Oh, Alexander
Orsini, Luciano
Patras, Vaios
Paus, C.
Paus, Christoph
Petrucci, Andrea
Pieri, Marco
Racz, Attila
Sakulin, Hannes
Sani, Matteo
Schieferdecker, P.
Schwick, Christoph
Serrano Margaleff, Josep Francesc
Shpakov, Dennis
Simon, Sean
Sumorok, Konstanty
Sungho Yoon, Andre
Wittich, Peter
Zanetti, Marco
Commissioning of the CMS High Level Trigger
title Commissioning of the CMS High Level Trigger
title_full Commissioning of the CMS High Level Trigger
title_fullStr Commissioning of the CMS High Level Trigger
title_full_unstemmed Commissioning of the CMS High Level Trigger
title_short Commissioning of the CMS High Level Trigger
title_sort commissioning of the cms high level trigger
topic Detectors and Experimental Techniques
physics.ins-det
url https://dx.doi.org/10.1088/1748-0221/4/10/P10005
http://cds.cern.ch/record/1199930
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