The SNS/HFIR Web Portal System – How Can it Help Me?

In a busy world, continuing with the status-quo, to do things the way we are already familiar, often seems to be the most efficient way to conduct our work. We look for the value-add to decide if investing in a new method is worth the effort. How shall we evaluate if we have reached this tipping poi...

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Veröffentlicht in:Journal of physics. Conference series 2010-11, Vol.251 (1), p.012096
Hauptverfasser: Miller, Stephen D, Geist, Al, Herwig, Kenneth W, Peterson, Peter F, Reuter, Michael A, Ren, Shelly, Bilheux, Jean-Christophe, Campbell, Stuart I, Kohl, James A, Vazhkudai, Sudharshan S, Cobb, John W, Lynch, Vickie E, Chen, Meili, Trater, James R, Smith, Bradford C, Swain, Tom (William), Huang, Jian, Knoxville, University of Tennessee, Mikkelson, Ruth, Mikkelson, Dennis, een, Mar K L Gr
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container_end_page
container_issue 1
container_start_page 012096
container_title Journal of physics. Conference series
container_volume 251
creator Miller, Stephen D
Geist, Al
Herwig, Kenneth W
Peterson, Peter F
Reuter, Michael A
Ren, Shelly
Bilheux, Jean-Christophe
Campbell, Stuart I
Kohl, James A
Vazhkudai, Sudharshan S
Cobb, John W
Lynch, Vickie E
Chen, Meili
Trater, James R
Smith, Bradford C
Swain, Tom (William)
Huang, Jian
Knoxville, University of Tennessee
Mikkelson, Ruth
Mikkelson, Dennis
een, Mar K L Gr
description In a busy world, continuing with the status-quo, to do things the way we are already familiar, often seems to be the most efficient way to conduct our work. We look for the value-add to decide if investing in a new method is worth the effort. How shall we evaluate if we have reached this tipping point for change? For contemporary researchers, understanding the properties of the data is a good starting point. The new generation of neutron scattering instruments being built are higher resolution and produce one or more orders of magnitude larger data than the previous generation of instruments. For instance, we have grown out of being able to perform some important tasks with our laptops – the data are too big and the computations would simply take too long. These large datasets can be problematic as facility users now begin to grapple with many of the same issues faced by more established computing communities. These issues include data access, management, and movement, data format standards, distributed computing, and collaboration among others. The Neutron Science Portal has been architected, designed, and implemented to provide users with an easy-to-use interface for managing and processing data, while also keeping an eye on meeting modern cybersecurity requirements imposed on institutions. The cost of entry for users has been lowered by utilizing a web interface providing access to backend portal resources. Users can browse or search for data which they are allowed to see, data reduction applications can be run without having to load the software, sample activation calculations can be performed for SNS and HFIR beamlines, McStas simulations can be run on TeraGrid and ORNL computers, and advanced analysis applications such as those being produced by the DANSE project can be run. Behind the scenes is a "live cataloging" system which automatically catalogs and archives experiment data via the data management system, and provides proposal team members access to their experiment data. The complexity of data movement and utilizing distributed computing resources has been taken care on behalf of users. Collaboration is facilitated by providing users a read/writeable common area, shared
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subjects Collaboration
COMMUNITIES
Computer networks
COMPUTERS
Cybersecurity
data
Data management
Data processing
Data reduction
Data search
Distributed processing
EYES
MANAGEMENT
MIRRORS
Neutron scattering
NEUTRONS
ORNL
Physics
PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
Portal
PORTAL SYSTEM
PROCESSING
RESOLUTION
SCATTERING
scientific computing
software
user facility
User interfaces
title The SNS/HFIR Web Portal System – How Can it Help Me?
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