Title :
Accelerating Data Acquisition, Reduction, and Analysis at the Spallation Neutron Source
Author :
Shipman, Galen ; Campbell, Stuart ; Dillow, David ; Doucet, Mathieu ; Kohl, Johannes ; Granroth, Garrett ; Miller, Ross ; Stansberry, Dale ; Proffen, Thomas ; Taylor, Russell
Author_Institution :
Oak Ridge Nat. Lab., Oak Ridge, TN, USA
Abstract :
ORNL operates the world´s brightest neutron source, the Spallation Neutron Source (SNS). Funded by the US DOE Office of Basic Energy Science, this national user facility hosts hundreds of scientists from around the world, providing a platform to enable break-through research in materials science, sustainable energy, and basic science. While the SNS provides scientists with advanced experimental instruments, the deluge of data generated from these instruments represents both a big data challenge and a big data opportunity. For example, instruments at the SNS can now generate multiple millions of neutron events per second providing unprecedented experiment fidelity but leaving the user with a dataset that cannot be processed and analyzed in a timely fashion using legacy techniques. To address this big data challenge, ORNL has developed a near real-time streaming data reduction and analysis infrastructure. The Accelerating Data Acquisition, Reduction, and Analysis (ADARA) system provides a live streaming data infrastructure based on a high-performance publish subscribe system, in situ data reduction, visualization, and analysis tools, and integration with a high-performance computing and data storage infrastructure. ADARA allows users of the SNS instruments to analyze their experiment as it is run and make changes to the experiment in real-time and visualize the results of these changes. In this paper we describe ADARA, provide a high-level architectural overview of the system, and present a set of use-cases and real-world demonstrations of the technology.
Keywords :
Big Data; data acquisition; data integration; data reduction; data visualisation; materials science; middleware; neutron sources; nuclear spallation; parallel processing; real-time systems; scientific information systems; storage management; ADARA system; Big Data; ORNL; SNS instruments; US DOE Office of Basic Energy Science; accelerating data acquisition reduction and analysis; basic science; break-through research; data analysis tools; data integration; data storage infrastructure; data visualization; experimental instruments; high-performance computing; high-performance publish subscribe system; in situ data reduction; legacy techniques; materials science; national user facility; neutron events; real-time streaming data infrastructure; spallation neutron source; sustainable energy; Data acquisition; Data processing; Data visualization; Instruments; Measurement; Monitoring; Neutrons; Big Data; Data Analysis; HPC; Neutrons; Visualization;
Conference_Titel :
e-Science (e-Science), 2014 IEEE 10th International Conference on
Conference_Location :
Sao Paulo
Print_ISBN :
978-1-4799-4288-6
DOI :
10.1109/eScience.2014.31