Title of article :
Highly accelerated simulations of glassy dynamics using GPUs: Caveats on limited floating-point precision Original Research Article
Author/Authors :
Peter H. Colberg، نويسنده , , Felix H?fling، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2011
Pages :
10
From page :
1120
To page :
1129
Abstract :
Modern graphics processing units (GPUs) provide impressive computing resources, which can be accessed conveniently through the CUDA programming interface. We describe how GPUs can be used to considerably speed up molecular dynamics (MD) simulations for system sizes ranging up to about 1 million particles. Particular emphasis is put on the numerical long-time stability in terms of energy and momentum conservation, and caveats on limited floating-point precision are issued. Strict energy conservation over 108 MD steps is obtained by double-single emulation of the floating-point arithmetic in accuracy-critical parts of the algorithm. For the slow dynamics of a supercooled binary Lennard-Jones mixture, we demonstrate that the use of single-floating point precision may result in quantitatively and even physically wrong results. For simulations of a Lennard-Jones fluid, the described implementation shows speedup factors of up to 80 compared to a serial implementation for the CPU, and a single GPU was found to compare with a parallelised MD simulation using 64 distributed cores.
Keywords :
GPU computing , molecular dynamics simulations , Dynamics of supercooled liquids
Journal title :
Computer Physics Communications
Serial Year :
2011
Journal title :
Computer Physics Communications
Record number :
1138253
Link To Document :
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