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The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN

ATLAS is a general purpose particle detector, at the Large Hadron Collider (LHC) at CERN, designed to measure the products of proton collisions. Given the high interaction rate (40 MHz), selective triggering in real time is required to reduce the rate to the experiment's data storage capacity (...

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Autores principales: Abbott, Brad, Blair, Robert, Crone, Gordon Jeremy, Green, Barry, Love, Jeremy, Proudfoot, James, Rifki, Othmane, Panduro Vazquez, William, Vandelli, Wainer, Zhang, Jinlong
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/11/02/C02080
http://cds.cern.ch/record/2063306
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author Abbott, Brad
Blair, Robert
Crone, Gordon Jeremy
Green, Barry
Love, Jeremy
Proudfoot, James
Rifki, Othmane
Panduro Vazquez, William
Vandelli, Wainer
Zhang, Jinlong
author_facet Abbott, Brad
Blair, Robert
Crone, Gordon Jeremy
Green, Barry
Love, Jeremy
Proudfoot, James
Rifki, Othmane
Panduro Vazquez, William
Vandelli, Wainer
Zhang, Jinlong
author_sort Abbott, Brad
collection CERN
description ATLAS is a general purpose particle detector, at the Large Hadron Collider (LHC) at CERN, designed to measure the products of proton collisions. Given the high interaction rate (40 MHz), selective triggering in real time is required to reduce the rate to the experiment's data storage capacity (1 kHz). To meet this requirement, ATLAS employs a hardware trigger that reduces the rate to 100 kHz and software based triggers to select interesting interactions for physics analysis. The Region of Interest Builder (RoIB) is an essential part of the ATLAS detector Trigger and Data Acquisition (TDAQ) chain where the coordinates of the regions of interest (RoIs) identified by the first level trigger (L1) are collected and passed to the High Level Trigger (HLT) to make a decision. While the current custom VME based RoIB operated reliably during the first run of the LHC, it is desirable to have a more flexible RoIB and more operationally maintainable in the future, as the LHC reaches higher luminosity and ATLAS increases the complexity and number of L1 triggers. We are responsible for migrating the functionality of the multi-card VME based RoIB into a commodity PC with a PCI-Express card. In the ATLAS TDAQ testbed at CERN, the RoIB evolution achieved a rate above 100 kHz with 12 channels using fragments of 400 bytes.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20633062022-08-10T12:46:13Zdoi:10.1088/1748-0221/11/02/C02080http://cds.cern.ch/record/2063306engAbbott, BradBlair, RobertCrone, Gordon JeremyGreen, BarryLove, JeremyProudfoot, JamesRifki, OthmanePanduro Vazquez, WilliamVandelli, WainerZhang, JinlongThe Evolution of the Region of Interest Builder for the ATLAS Experiment at CERNParticle Physics - ExperimentATLAS is a general purpose particle detector, at the Large Hadron Collider (LHC) at CERN, designed to measure the products of proton collisions. Given the high interaction rate (40 MHz), selective triggering in real time is required to reduce the rate to the experiment's data storage capacity (1 kHz). To meet this requirement, ATLAS employs a hardware trigger that reduces the rate to 100 kHz and software based triggers to select interesting interactions for physics analysis. The Region of Interest Builder (RoIB) is an essential part of the ATLAS detector Trigger and Data Acquisition (TDAQ) chain where the coordinates of the regions of interest (RoIs) identified by the first level trigger (L1) are collected and passed to the High Level Trigger (HLT) to make a decision. While the current custom VME based RoIB operated reliably during the first run of the LHC, it is desirable to have a more flexible RoIB and more operationally maintainable in the future, as the LHC reaches higher luminosity and ATLAS increases the complexity and number of L1 triggers. We are responsible for migrating the functionality of the multi-card VME based RoIB into a commodity PC with a PCI-Express card. In the ATLAS TDAQ testbed at CERN, the RoIB evolution achieved a rate above 100 kHz with 12 channels using fragments of 400 bytes.ATL-DAQ-PROC-2015-052oai:cds.cern.ch:20633062015-10-29
spellingShingle Particle Physics - Experiment
Abbott, Brad
Blair, Robert
Crone, Gordon Jeremy
Green, Barry
Love, Jeremy
Proudfoot, James
Rifki, Othmane
Panduro Vazquez, William
Vandelli, Wainer
Zhang, Jinlong
The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN
title The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN
title_full The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN
title_fullStr The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN
title_full_unstemmed The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN
title_short The Evolution of the Region of Interest Builder for the ATLAS Experiment at CERN
title_sort evolution of the region of interest builder for the atlas experiment at cern
topic Particle Physics - Experiment
url https://dx.doi.org/10.1088/1748-0221/11/02/C02080
http://cds.cern.ch/record/2063306
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