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HEP.TrkX [Vidyo]

<!--HTML-->Reconstruction of charged particle tracks is a central task in the processing of physics data at the LHC and other colliders. Current state-of-the-art tracking algorithms are based on the Kalman filter and have seen great success both offline and at trigger level. However, these a...

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Autor principal: Anderson, Dustin James
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2256884
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author Anderson, Dustin James
author_facet Anderson, Dustin James
author_sort Anderson, Dustin James
collection CERN
description <!--HTML-->Reconstruction of charged particle tracks is a central task in the processing of physics data at the LHC and other colliders. Current state-of-the-art tracking algorithms are based on the Kalman filter and have seen great success both offline and at trigger level. However, these algorithms scale poorly with increasing detector occupancy, and it is foreseen that significant changes will be needed to achieve efficient track reconstruction in very high luminosity conditions. The HEP.TrkX pilot project aims to develop and explore machine-learning-based algorithms for particle tracking, with the goal of identifying candidate techniques for a more scalable tracking algorithm. In this talk we will discuss the techniques explored in the project so far, with emphasis on algorithms based on recurrent and convolutional neural networks. We will demonstrate the performance of these algorithms on toy detector data, and discuss plans to adapt them into complete algorithms for seed-finding and/or full track reconstruction in a realistic detector environment.
id cern-2256884
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-22568842022-11-02T22:34:06Zhttp://cds.cern.ch/record/2256884engAnderson, Dustin JamesHEP.TrkX [Vidyo]IML Machine Learning WorkshopMachine Learning<!--HTML-->Reconstruction of charged particle tracks is a central task in the processing of physics data at the LHC and other colliders. Current state-of-the-art tracking algorithms are based on the Kalman filter and have seen great success both offline and at trigger level. However, these algorithms scale poorly with increasing detector occupancy, and it is foreseen that significant changes will be needed to achieve efficient track reconstruction in very high luminosity conditions. The HEP.TrkX pilot project aims to develop and explore machine-learning-based algorithms for particle tracking, with the goal of identifying candidate techniques for a more scalable tracking algorithm. In this talk we will discuss the techniques explored in the project so far, with emphasis on algorithms based on recurrent and convolutional neural networks. We will demonstrate the performance of these algorithms on toy detector data, and discuss plans to adapt them into complete algorithms for seed-finding and/or full track reconstruction in a realistic detector environment.oai:cds.cern.ch:22568842017
spellingShingle Machine Learning
Anderson, Dustin James
HEP.TrkX [Vidyo]
title HEP.TrkX [Vidyo]
title_full HEP.TrkX [Vidyo]
title_fullStr HEP.TrkX [Vidyo]
title_full_unstemmed HEP.TrkX [Vidyo]
title_short HEP.TrkX [Vidyo]
title_sort hep.trkx [vidyo]
topic Machine Learning
url http://cds.cern.ch/record/2256884
work_keys_str_mv AT andersondustinjames heptrkxvidyo
AT andersondustinjames imlmachinelearningworkshop