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首页> 外文期刊>The Journal of Chemical Physics >Simple and effective application of the Wang-Landau method for multicanonical molecular dynamics simulation
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Simple and effective application of the Wang-Landau method for multicanonical molecular dynamics simulation

机译:Wang-Landau方法在多规范分子动力学模拟中的简单有效应用

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摘要

We propose a novel application of the Wang-Landau method (WLM) for multicanonical molecular dynamics (McMD) simulations. Originally, WLM was developed for Monte Carlo (MC) simulations. Fundamentally, WLM remarkably reduces simulation efforts because it estimates the optimal multicanonical energy function automatically. When WLM is applied to McMD, not only the multicanonical energy but also energy gradient must be estimated adequately. However, because of the rugged multicanonical energy function at the early simulation stage, applications of WLM for MD simulations are difficult and require a smoothing procedure: simulation efforts such as cubic-spline extrapolation and gathering multiple preruns are utilized for smoothing. We propose a simple and effective smoothing method that requires only one additional equation and two time-dependent parameters. As a result, our method produced the correct multicanonical energy function and succeeded in the flat sampling of a small biomolecule with reduced simulation effort.
机译:我们提出了旺-朗道方法(WLM)在多规范分子动力学(McMD)模拟中的一种新颖应用。 WLM最初是为Monte Carlo(MC)模拟开发的。从根本上讲,WLM显着减少了仿真工作,因为它会自动估算最佳的多规范能量函数。当WLM应用于McMD时,不仅必须充分估计多规范能量,而且还必须充分估计能量梯度。但是,由于在早期仿真阶段具有强大的多规范能量函数,因此将WLM用于MD仿真非常困难,并且需要进行平滑处理:将诸如三次样条外推和收集多个预运行之类的仿真工作用于平滑处理。我们提出了一种简单有效的平滑方法,该方法仅需要一个附加方程式和两个与时间有关的参数。结果,我们的方法产生了正确的多规范能量函数,并以较少的仿真工作成功地对小型生物分子进行了平面采样。

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