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一种用于分子系统自由能模拟的可扩展并行蒙特卡罗方法。

A scalable parallel Monte Carlo method for free energy simulations of molecular systems.

作者信息

Khan Malek O, Kennedy Gareth, Chan Derek Y C

机构信息

Particulate Fluids Processing Centre, Department of Mathematics & Statistics, The University of Melbourne, Parkville, Victoria 3010, Australia.

出版信息

J Comput Chem. 2005 Jan 15;26(1):72-7. doi: 10.1002/jcc.20143.

Abstract

We present a method of parallelizing flat histogram Monte Carlo simulations, which give the free energy of a molecular system as an output. In the serial version, a constant probability distribution, as a function of any system parameter, is calculated by updating an external potential that is added to the system Hamiltonian. This external potential is related to the free energy. In the parallel implementation, the simulation is distributed on to different processors. With regular intervals the modifying potential is summed over all processors and distributed back to every processor, thus spreading the information of which parts of parameter space have been explored. This implementation is shown to decrease the execution time linearly with added number of processors.

摘要

我们提出了一种并行化平面直方图蒙特卡罗模拟的方法,该方法将分子系统的自由能作为输出。在串行版本中,通过更新添加到系统哈密顿量的外部势来计算作为任何系统参数函数的恒定概率分布。这个外部势与自由能相关。在并行实现中,模拟分布在不同的处理器上。每隔一定时间间隔,对所有处理器上的修正势进行求和并重新分发给每个处理器,从而传播已探索参数空间哪些部分的信息。结果表明,这种实现方式可使执行时间随处理器数量的增加而线性减少。

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