DocumentCode
2477824
Title
Evaluating graphical processing units for clutter model calculation in a simulation facility
Author
Daniel, Barry ; Meredith, Jeremy ; Sumner, James ; Vacaliuc, Bogdan ; Ellenburg, Jason
Author_Institution
Oak Ridge Nat. Lab., Oak Ridge, TN, USA
fYear
2012
fDate
8-9 Oct. 2012
Firstpage
1
Lastpage
4
Abstract
Graphics processing units (GPUs) are being fused together with the traditional central processing units (CPUs) to form accelerated processing units (APUs). These hybrid computing machines provide a viable alternative to traditional processors for high-performance computing systems thanks to substantial computational performance and advanced programmability. A team at Oak Ridge National Laboratory experienced with radar clutter modeling and simulation, and with computation using a variety of processors, has explored the viability of GPUs for accelerating clutter simulation for the Joint Research Analysis and Assessment Center at the Missile and Space Intelligence Center. The results show substantial performance gains of approximately 20× relative to a CPU-only algorithm. We show a number of ways these accelerated clutter calculations provide real-time results starting from readily extended simulation models.
Keywords
digital simulation; graphics processing units; parallel processing; radar clutter; radar computing; APU; CPU; GPU; Joint Research Analysis and Assessment Center; Missile and Space Intelligence Center; Oak Ridge National Laboratory; accelerated processing units; central processing units; clutter model calculation; graphical processing units; high-performance computing systems; hybrid computing machines; radar clutter modeling; radar clutter simulation; simulation facility; Acceleration; Clutter; Computational modeling; Graphics processing units; Mathematical model; Radar clutter; GPU; clutter; radar;
fLanguage
English
Publisher
ieee
Conference_Titel
Future of Instrumentation International Workshop (FIIW), 2012
Conference_Location
Gatlinburg, TN
Print_ISBN
978-1-4673-2483-0
Type
conf
DOI
10.1109/FIIW.2012.6378321
Filename
6378321
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