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Constraints on future analysis metadata systems in High Energy Physics

In high energy physics (HEP), analysis metadata comes in many forms—from theoretical cross-sections, to calibration corrections, to details about file processing. Correctly applying metadata is a crucial and often time-consuming step in an analysis, but designing analysis metadata systems has histor...

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Detalles Bibliográficos
Autores principales: Khoo, T.J., Reinsvold Hall, A., Skidmore, N., Alderweireldt, S., Anders, J., Burr, C., Buttinger, W., David, P., Gouskos, L., Gray, L., Hageboeck, S., Krasznahorkay, A., Laycock, P., Lister, A., Marshall, Z., Meyer, A.B., Novak, T., Rappoccio, S., Ritter, M., Rodrigues, E., Rumsevicius, J., Sexton-Kennedy, L., Smith, N., Stewart, G.A., Wertz, S.
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1007/s41781-022-00086-2
http://cds.cern.ch/record/2805600
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author Khoo, T.J.
Reinsvold Hall, A.
Skidmore, N.
Alderweireldt, S.
Anders, J.
Burr, C.
Buttinger, W.
David, P.
Gouskos, L.
Gray, L.
Hageboeck, S.
Krasznahorkay, A.
Laycock, P.
Lister, A.
Marshall, Z.
Meyer, A.B.
Novak, T.
Rappoccio, S.
Ritter, M.
Rodrigues, E.
Rumsevicius, J.
Sexton-Kennedy, L.
Smith, N.
Stewart, G.A.
Wertz, S.
author_facet Khoo, T.J.
Reinsvold Hall, A.
Skidmore, N.
Alderweireldt, S.
Anders, J.
Burr, C.
Buttinger, W.
David, P.
Gouskos, L.
Gray, L.
Hageboeck, S.
Krasznahorkay, A.
Laycock, P.
Lister, A.
Marshall, Z.
Meyer, A.B.
Novak, T.
Rappoccio, S.
Ritter, M.
Rodrigues, E.
Rumsevicius, J.
Sexton-Kennedy, L.
Smith, N.
Stewart, G.A.
Wertz, S.
author_sort Khoo, T.J.
collection CERN
description In high energy physics (HEP), analysis metadata comes in many forms—from theoretical cross-sections, to calibration corrections, to details about file processing. Correctly applying metadata is a crucial and often time-consuming step in an analysis, but designing analysis metadata systems has historically received little direct attention. Among other considerations, an ideal metadata tool should be easy to use by new analysers, should scale to large data volumes and diverse processing paradigms, and should enable future analysis reinterpretation. This document, which is the product of community discussions organised by the HEP Software Foundation, categorises types of metadata by scope and format and gives examples of current metadata solutions. Important design considerations for metadata systems, including sociological factors, analysis preservation efforts, and technical factors, are discussed. A list of best practices and technical requirements for future analysis metadata systems is presented. These best practices could guide the development of a future cross-experimental effort for analysis metadata tools.
id cern-2805600
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28056002023-10-24T02:40:27Zdoi:10.1007/s41781-022-00086-2http://cds.cern.ch/record/2805600engKhoo, T.J.Reinsvold Hall, A.Skidmore, N.Alderweireldt, S.Anders, J.Burr, C.Buttinger, W.David, P.Gouskos, L.Gray, L.Hageboeck, S.Krasznahorkay, A.Laycock, P.Lister, A.Marshall, Z.Meyer, A.B.Novak, T.Rappoccio, S.Ritter, M.Rodrigues, E.Rumsevicius, J.Sexton-Kennedy, L.Smith, N.Stewart, G.A.Wertz, S.Constraints on future analysis metadata systems in High Energy Physicsphysics.data-anOther Fields of Physicshep-exParticle Physics - ExperimentIn high energy physics (HEP), analysis metadata comes in many forms—from theoretical cross-sections, to calibration corrections, to details about file processing. Correctly applying metadata is a crucial and often time-consuming step in an analysis, but designing analysis metadata systems has historically received little direct attention. Among other considerations, an ideal metadata tool should be easy to use by new analysers, should scale to large data volumes and diverse processing paradigms, and should enable future analysis reinterpretation. This document, which is the product of community discussions organised by the HEP Software Foundation, categorises types of metadata by scope and format and gives examples of current metadata solutions. Important design considerations for metadata systems, including sociological factors, analysis preservation efforts, and technical factors, are discussed. A list of best practices and technical requirements for future analysis metadata systems is presented. These best practices could guide the development of a future cross-experimental effort for analysis metadata tools.In High Energy Physics (HEP), analysis metadata comes in many forms -- from theoretical cross-sections, to calibration corrections, to details about file processing. Correctly applying metadata is a crucial and often time-consuming step in an analysis, but designing analysis metadata systems has historically received little direct attention. Among other considerations, an ideal metadata tool should be easy to use by new analysers, should scale to large data volumes and diverse processing paradigms, and should enable future analysis reinterpretation. This document, which is the product of community discussions organised by the HEP Software Foundation, categorises types of metadata by scope and format and gives examples of current metadata solutions. Important design considerations for metadata systems, including sociological factors, analysis preservation efforts, and technical factors, are discussed. A list of best practices and technical requirements for future analysis metadata systems is presented. These best practices could guide the development of a future cross-experimental effort for analysis metadata tools.arXiv:2203.00463FERMILAB-PUB-22-345-OCIO-SCDoai:cds.cern.ch:28056002022-03-01
spellingShingle physics.data-an
Other Fields of Physics
hep-ex
Particle Physics - Experiment
Khoo, T.J.
Reinsvold Hall, A.
Skidmore, N.
Alderweireldt, S.
Anders, J.
Burr, C.
Buttinger, W.
David, P.
Gouskos, L.
Gray, L.
Hageboeck, S.
Krasznahorkay, A.
Laycock, P.
Lister, A.
Marshall, Z.
Meyer, A.B.
Novak, T.
Rappoccio, S.
Ritter, M.
Rodrigues, E.
Rumsevicius, J.
Sexton-Kennedy, L.
Smith, N.
Stewart, G.A.
Wertz, S.
Constraints on future analysis metadata systems in High Energy Physics
title Constraints on future analysis metadata systems in High Energy Physics
title_full Constraints on future analysis metadata systems in High Energy Physics
title_fullStr Constraints on future analysis metadata systems in High Energy Physics
title_full_unstemmed Constraints on future analysis metadata systems in High Energy Physics
title_short Constraints on future analysis metadata systems in High Energy Physics
title_sort constraints on future analysis metadata systems in high energy physics
topic physics.data-an
Other Fields of Physics
hep-ex
Particle Physics - Experiment
url https://dx.doi.org/10.1007/s41781-022-00086-2
http://cds.cern.ch/record/2805600
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