高效、精确的基于fpga的分子动力学模拟器

Eunjung Cho, A. Bourgeois, José Alberto Fernández-Zepeda
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引用次数: 5

摘要

分子动力学(MD)系统是由粒子的位置和动量及其相互作用来定义的。即使对于系统中少量的粒子,用数值方法求解动力学和评估相互作用在计算上也是昂贵的。我们关注的是远程相互作用,因为对于N个粒子系统,计算时间为O(N2)。现有的许多算法都是为了减少MD仿真的计算时间。在现有算法中,多重网格(MG)方法[1]将0 (N2)次计算时间减少到O(N)次,同时仍能达到合理的精度。另一个实现更快计算时间的运动是在专用处理器和带有asic或fpga的定制硬件上运行MD仿真。本文采用一种高效的MG方法,设计并实现了基于fpga的MD模拟器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient and accurate FPGA-based simulator for Molecular Dynamics
A molecular dynamics (MD) system is defined by the position and momentum of particles and their interactions. Solving the dynamics numerically and evaluating the interaction is computationally expensive even for a small number of particles in the system. We are focusing on long-ranged interactions, since the calculation time is O(N2) for an N particle system. There are many existing algorithms aimed at reducing the calculation time of MD simulations. Among the existing algorithms, multigrid (MG) method [1] reduces O(N2) calculation time to O(N) time while still achieving reasonable accuracy. Another movement to achieve much faster calculation time is running MD simulation on special purpose processors and customized hardware with ASICs or an FPGAs. In this paper, we design and implement FPGA-based MD simulator with an efficient MG method.
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