DocumentCode
2857807
Title
A Comparative Study of ARL Linux Cluster Performance
Author
Petit, George ; Ianni, James ; Monaghan, Martin
Author_Institution
Raytheon Co., Aberdeen
fYear
2007
fDate
18-21 June 2007
Firstpage
373
Lastpage
377
Abstract
Since 2003, with the installation of a 256 processor Linux Networx XEON 1686 system (Powell), Army Research Laboratory (ARL) has been providing large- scale Linux cluster production systems for use within the Department of Defense (DoD) High Performance Computing Modernization Program (HPCMP). This initial system was followed in 2004 with the 2,048 processor Linux Networx XEONEM64T (JVN) and 2,304 processor IBM Opteron (Stryker) systems, and in 2007 by the 3,368-core Intel Dempsey (Humvee) and 4,488-core Intel Woodcrest (MJM) systems. These latest systems provide an increased peak performance of over 15 times the original Xeon 1686 system in a four year period. The purpose of this paper is provide a comparative study of the three generations of Linux clusters´ capabilities to process some of the most widely used production codes used within the ARL environment. The codes to be benchmarked will include CTH, CFD++, GAMESS, and OVERFLOW. The codes will be run on Powell, JVN and Ping (the Woodcrest testbed machine). The results will focus attention on how architecture enhancements (including CPU speed, memory per node, cache size, and interconnect fabric transfer rates) have affected the overall performance of these systems.
Keywords
Linux; benchmark testing; program testing; software packages; workstation clusters; ARL Linux cluster performance; Army Research Laboratory; CFD++; CTH; GAMESS; Linux Networx XEON 1686 system; OVERFLOW; Benchmark testing; Computational modeling; Deformable models; Instruments; Laboratories; Libraries; Linux; Performance analysis; Production; Projectiles;
fLanguage
English
Publisher
ieee
Conference_Titel
DoD High Performance Computing Modernization Program Users Group Conference, 2007
Conference_Location
Pittsburgh, PA
Print_ISBN
978-0-7695-3088-5
Type
conf
DOI
10.1109/HPCMP-UGC.2007.2
Filename
4438013
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