Free-running data acquisition system for the AMBER experiment

Triggered data acquisition systems provide only limited possibilities of triggering methods. In our paper, we propose a novel approach that completely removes the hardware trigger and its logic. It introduces an innovative free-running mode instead, which provides unprecedented possibilities to phys...

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Main Authors: Zemko Martin, Frolov Vladimir, Huber Stefan, Jary Vladimir, Konorov Igor, Kveton Antonin, Levit Dmytro, Novy Josef, Steffen Dominik, Veit Benjamin Moritz, Virius Miroslav
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2021/05/epjconf_chep2021_04028.pdf
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spelling doaj-0909c5e251bb4807b68a9035d4e860862021-08-26T09:27:33ZengEDP SciencesEPJ Web of Conferences2100-014X2021-01-012510402810.1051/epjconf/202125104028epjconf_chep2021_04028Free-running data acquisition system for the AMBER experimentZemko MartinFrolov Vladimir0Huber Stefan1Jary Vladimir2Konorov Igor3Kveton Antonin4Levit Dmytro5Novy Josef6Steffen Dominik7Veit Benjamin MoritzVirius Miroslav8Joint Institute for Nuclear Research inTechnical University of MunichCzech Technical University inTechnical University of MunichCharles University inTechnical University of MunichCzech Technical University inTechnical University of MunichCzech Technical University inTriggered data acquisition systems provide only limited possibilities of triggering methods. In our paper, we propose a novel approach that completely removes the hardware trigger and its logic. It introduces an innovative free-running mode instead, which provides unprecedented possibilities to physics experiments. We would like to present such system, which is being developed for the AMBER experiment at CERN. It is based on an intelligent data acquisition framework including FPGA modules and advanced software processing. The system provides a triggerless mode that allows more time for data filtering and implementation of more complex algorithms. Moreover, it utilises a custom data protocol optimized for needs of the free-running system. The filtering procedure takes place in a server farm playing the role of the highlevel trigger. For this purpose, we introduce a high-performance filtering framework providing optimized algorithms and load balancing to cope with excessive data rates. Furthermore, this paper also describes the filter pipeline as well as the simulation chain that is being used for production of artificial data, for testing, and validation.https://www.epj-conferences.org/articles/epjconf/pdf/2021/05/epjconf_chep2021_04028.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Zemko Martin
Frolov Vladimir
Huber Stefan
Jary Vladimir
Konorov Igor
Kveton Antonin
Levit Dmytro
Novy Josef
Steffen Dominik
Veit Benjamin Moritz
Virius Miroslav
spellingShingle Zemko Martin
Frolov Vladimir
Huber Stefan
Jary Vladimir
Konorov Igor
Kveton Antonin
Levit Dmytro
Novy Josef
Steffen Dominik
Veit Benjamin Moritz
Virius Miroslav
Free-running data acquisition system for the AMBER experiment
EPJ Web of Conferences
author_facet Zemko Martin
Frolov Vladimir
Huber Stefan
Jary Vladimir
Konorov Igor
Kveton Antonin
Levit Dmytro
Novy Josef
Steffen Dominik
Veit Benjamin Moritz
Virius Miroslav
author_sort Zemko Martin
title Free-running data acquisition system for the AMBER experiment
title_short Free-running data acquisition system for the AMBER experiment
title_full Free-running data acquisition system for the AMBER experiment
title_fullStr Free-running data acquisition system for the AMBER experiment
title_full_unstemmed Free-running data acquisition system for the AMBER experiment
title_sort free-running data acquisition system for the amber experiment
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2021-01-01
description Triggered data acquisition systems provide only limited possibilities of triggering methods. In our paper, we propose a novel approach that completely removes the hardware trigger and its logic. It introduces an innovative free-running mode instead, which provides unprecedented possibilities to physics experiments. We would like to present such system, which is being developed for the AMBER experiment at CERN. It is based on an intelligent data acquisition framework including FPGA modules and advanced software processing. The system provides a triggerless mode that allows more time for data filtering and implementation of more complex algorithms. Moreover, it utilises a custom data protocol optimized for needs of the free-running system. The filtering procedure takes place in a server farm playing the role of the highlevel trigger. For this purpose, we introduce a high-performance filtering framework providing optimized algorithms and load balancing to cope with excessive data rates. Furthermore, this paper also describes the filter pipeline as well as the simulation chain that is being used for production of artificial data, for testing, and validation.
url https://www.epj-conferences.org/articles/epjconf/pdf/2021/05/epjconf_chep2021_04028.pdf
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