Computation of Induced Dipoles in Molecular Mechanics Simulations Using Graphics Processors
2012 | journal article. A publication with affiliation to the University of Göttingen.
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- Authors
- Pratas, Frederico; Sousa, Leonel; Dieterich, Johannes M.; Mata, Ricardo A.
- Abstract
- In this work, we present a tentative step toward the efficient implementation of polarizable molecular mechanics force fields with GPU acceleration. The computational bottleneck of such applications is found in the treatment of electrostatics, where higher-order multipoles and a self-consistent treatment of polarization effects are needed. We have implemented a CPU accelerated code, based on the Tinker program suite, for the computation of induced dipoles. The largest test system used shows a speedup factor of over 20 for a single precision GPU implementation, when comparing to the serial CPU version. A discussion of the optimization and parametrization steps is included. Comparison between different graphic cards and CPU-CPU embedding is also given. The current work demonstrates the potential usefulness of CPU programming in accelerating this field of applications.
- Issue Date
- 2012
- Journal
- Journal of Chemical Information and Modeling
- ISSN
- 1549-9596
- eISSN
- 1549-960X
- Language
- English