DocumentCode
1064338
Title
Data Quality Monitoring Framework for the ATLAS Experiment at the LHC
Author
Corso-Radu, A. ; Hadavand, H. ; Hauschild, M. ; Kehoe, R. ; Kolos, S.
Author_Institution
California Univ., Irvine
Volume
55
Issue
1
fYear
2008
Firstpage
417
Lastpage
420
Abstract
Data quality monitoring (DQM) is an integral part of the data taking process of HEP experiments. DQM involves automated analysis of monitoring data through user-defined algorithms and relaying the summary of the analysis results to the shift personnel while data is being processed. In the online environment, DQM provides the shifter with current run information that can be used to overcome problems early on. During the offline reconstruction, more complex analysis of physics quantities is performed by DQM, and the results are used to assess the quality of the reconstructed data. The ATLAS data quality monitoring framework (DQMF) is a distributed software system providing DQM functionality in the online environment. The DQMF has a scalable architecture achieved by distributing the execution of the analysis algorithms over a configurable number of DQMF agents running on different nodes connected over the network. The core part of the DQMF is designed to have dependence only on software that is common between online and offline (such as ROOT) and therefore the same framework can be used in both environments. This paper describes the main requirements, the architectural design, and the implementation of the DQMF.
Keywords
computerised monitoring; data analysis; high energy physics instrumentation computing; position sensitive particle detectors; ATLAS experiment; DQM; HEP experiments; LHC; data quality monitoring; Algorithm design and analysis; Computer architecture; Computerized monitoring; Data analysis; Large Hadron Collider; Performance analysis; Personnel; Physics; Relays; Software systems; Data quality; framework; process monitoring;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2007.912884
Filename
4448489
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