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Towards Provenance and Traceability in CRISTAL for HEP

This paper discusses the CRISTAL object lifecycle management system and its use in provenance data management and the traceability of system events. This software was initially used to capture the construction and calibration of the CMS ECAL detector at CERN for later use by physicists in their data...

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Detalles Bibliográficos
Autores principales: Shamdasani, Jetendr, Branson, Andrew, McClatchey, Richard
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/513/3/032091
http://cds.cern.ch/record/1665572
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author Shamdasani, Jetendr
Branson, Andrew
McClatchey, Richard
author_facet Shamdasani, Jetendr
Branson, Andrew
McClatchey, Richard
author_sort Shamdasani, Jetendr
collection CERN
description This paper discusses the CRISTAL object lifecycle management system and its use in provenance data management and the traceability of system events. This software was initially used to capture the construction and calibration of the CMS ECAL detector at CERN for later use by physicists in their data analysis. Some further uses of CRISTAL in different projects (CMS, neuGRID and N4U) are presented as examples of its flexible data model. From these examples, applications are drawn for the High Energy Physics domain and some initial ideas for its use in data preservation HEP are outlined in detail in this paper. Currently investigations are underway to gauge the feasibility of using the N4U Analysis Service or a derivative of it to address the requirements of data and analysis logging and provenance capture within the HEP long term data analysis environment.
id cern-1665572
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-16655722021-05-03T20:11:13Zdoi:10.1088/1742-6596/513/3/032091http://cds.cern.ch/record/1665572engShamdasani, JetendrBranson, AndrewMcClatchey, RichardTowards Provenance and Traceability in CRISTAL for HEPComputing and ComputersThis paper discusses the CRISTAL object lifecycle management system and its use in provenance data management and the traceability of system events. This software was initially used to capture the construction and calibration of the CMS ECAL detector at CERN for later use by physicists in their data analysis. Some further uses of CRISTAL in different projects (CMS, neuGRID and N4U) are presented as examples of its flexible data model. From these examples, applications are drawn for the High Energy Physics domain and some initial ideas for its use in data preservation HEP are outlined in detail in this paper. Currently investigations are underway to gauge the feasibility of using the N4U Analysis Service or a derivative of it to address the requirements of data and analysis logging and provenance capture within the HEP long term data analysis environment.arXiv:1402.6245oai:cds.cern.ch:16655722014-02-24
spellingShingle Computing and Computers
Shamdasani, Jetendr
Branson, Andrew
McClatchey, Richard
Towards Provenance and Traceability in CRISTAL for HEP
title Towards Provenance and Traceability in CRISTAL for HEP
title_full Towards Provenance and Traceability in CRISTAL for HEP
title_fullStr Towards Provenance and Traceability in CRISTAL for HEP
title_full_unstemmed Towards Provenance and Traceability in CRISTAL for HEP
title_short Towards Provenance and Traceability in CRISTAL for HEP
title_sort towards provenance and traceability in cristal for hep
topic Computing and Computers
url https://dx.doi.org/10.1088/1742-6596/513/3/032091
http://cds.cern.ch/record/1665572
work_keys_str_mv AT shamdasanijetendr towardsprovenanceandtraceabilityincristalforhep
AT bransonandrew towardsprovenanceandtraceabilityincristalforhep
AT mcclatcheyrichard towardsprovenanceandtraceabilityincristalforhep