We discuss an implementation of molecular dynamics (MD) simulations on a graphic processing unit (GPU) in the NVIDIA CUDA language. We tested our code on a modern GPU, the NVIDIA GeForce 8800 GTX. Results for two MD algorithms suitable for short-ranged and long-ranged interactions, and a congruential shift random number generator are presented. The performance of the GPU’s is compared to their main processor counterpart. We achieve speedups of up to 40, 80 and 150 fold, respectively. With the latest generation of GPU’s one can run standard MD simulations at 10 to the power of 7 flops/$
Modern graphics processing units (GPUs) provide impressive computing resources, which can be accesse...
In several fields of research, molecular dynamics simulation techniques are exploited to evaluate th...
Compute Unified Device Architecture (CUDA) was used to design and implement molecular dynamics (MD) ...
We discuss an implementation of molecular dynamics (MD) simulations on a graphic processing unit (GP...
Abstract. Molecular dynamics simulations are a common and often repeated task in molecular biology. ...
Abstract — Molecular dynamics (MD) was widely used in chemistry and bio molecules. Numerous attempts...
It is increasingly easy to develop software that exploits Graphics Processing Units (GPUs). The mole...
Graphics processing units (GPUs), originally developed for rendering real-time effects in computer g...
Graphics processing units (GPUs), originally developed for rendering real-time effects in computer g...
Graphic Processing Units (GPUs), originally developed for rendering real-time effects in computer ga...
This article presents the GPU parallelization of new algorithms SD and DPD types for molecular dynam...
Molecular dynamics (MD) simulation is a powerful computational tool to study the behaviour of macrom...
Molecular dynamics is an important computational tool to simulate and understand biochemical process...
This article presents the GPU parallelization of new algorithms SD and DPD types for molecular dynam...
Compute Unified Device Architecture (CUDA) was used to design and implement molecular dynamics (MD) ...
Modern graphics processing units (GPUs) provide impressive computing resources, which can be accesse...
In several fields of research, molecular dynamics simulation techniques are exploited to evaluate th...
Compute Unified Device Architecture (CUDA) was used to design and implement molecular dynamics (MD) ...
We discuss an implementation of molecular dynamics (MD) simulations on a graphic processing unit (GP...
Abstract. Molecular dynamics simulations are a common and often repeated task in molecular biology. ...
Abstract — Molecular dynamics (MD) was widely used in chemistry and bio molecules. Numerous attempts...
It is increasingly easy to develop software that exploits Graphics Processing Units (GPUs). The mole...
Graphics processing units (GPUs), originally developed for rendering real-time effects in computer g...
Graphics processing units (GPUs), originally developed for rendering real-time effects in computer g...
Graphic Processing Units (GPUs), originally developed for rendering real-time effects in computer ga...
This article presents the GPU parallelization of new algorithms SD and DPD types for molecular dynam...
Molecular dynamics (MD) simulation is a powerful computational tool to study the behaviour of macrom...
Molecular dynamics is an important computational tool to simulate and understand biochemical process...
This article presents the GPU parallelization of new algorithms SD and DPD types for molecular dynam...
Compute Unified Device Architecture (CUDA) was used to design and implement molecular dynamics (MD) ...
Modern graphics processing units (GPUs) provide impressive computing resources, which can be accesse...
In several fields of research, molecular dynamics simulation techniques are exploited to evaluate th...
Compute Unified Device Architecture (CUDA) was used to design and implement molecular dynamics (MD) ...