Borstnik Urban, Janezic Dusanka
National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.
J Chem Inf Model. 2005 Nov-Dec;45(6):1600-4. doi: 10.1021/ci050216q.
We have developed a computer program for molecular dynamics (MD) simulation that implements the Split Integration Symplectic Method (SISM) and is designed to run on specialized parallel computers. The MD integration is performed by the SISM, which analytically treats high-frequency vibrational motion and thus enables the use of longer simulation time steps. The low-frequency motion is treated numerically on specially designed parallel computers, which decreases the computational time of each simulation time step. The combination of these approaches means that less time is required and fewer steps are needed and so enables fast MD simulations. We study the computational performance of MD simulation of molecular systems on specialized computers and provide a comparison to standard personal computers. The combination of the SISM with two specialized parallel computers is an effective way to increase the speed of MD simulations up to 16-fold over a single PC processor.
我们开发了一种用于分子动力学(MD)模拟的计算机程序,该程序实现了分裂积分辛方法(SISM),并设计用于在专用并行计算机上运行。MD积分由SISM执行,该方法对高频振动运动进行解析处理,从而能够使用更长的模拟时间步长。低频运动在专门设计的并行计算机上进行数值处理,这减少了每个模拟时间步长的计算时间。这些方法的结合意味着所需时间更少,步数也更少,因此能够实现快速MD模拟。我们研究了分子系统MD模拟在专用计算机上的计算性能,并与标准个人计算机进行了比较。SISM与两台专用并行计算机的结合是将MD模拟速度提高到比单个PC处理器快16倍的有效方法。