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Benchmark of Schemes for Multiscale Molecular Dynamics Simulations

机译:多尺度分子动力学模拟方案的基准

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In multiscale molecular dynamics simulations the accuracy of detailed models is combined with the efficiency of a reduced representation. For several applications - namely those of sampling enhancement - it is desirable to combine fine-grained (FG) and coarse-grained (CG) approaches into a single hybrid approach with an adjustable mixing parameter. We present a benchmark of three algorithms that use a mixing of the two representation layers using a Lagrangian formalism. The three algorithms use three different approaches for keeping the particles at the FG level of representation together: 1) addition of forces, 2) mass scaling, and 3) temperature scaling. The benchmark is applied to liquid hexadecane and includes an evaluation of the average configurational entropy of the FG and CG subsystems. The temperature-scaling scheme achieved a 3-fold sampling speedup with little deviation of FG properties. The addition-of-forces scheme kept FG properties the best but provided little sampling speedup. The mass-scaling scheme yielded a 5-fold speedup but deviated the most from FG properties.
机译:在多尺度分子动力学模拟中,详细模型的准确性与简化表示的效率结合在一起。对于几种应用(即采样增强的应用),希望将细粒度(FG)方法和粗粒度(CG)方法组合为具有可调混合参数的单个混合方法。我们提出了三种算法的基准,这些算法使用拉格朗日形式主义将两个表示层混合使用。三种算法使用三种不同的方法将粒子保持在表示的FG级别上:1)施加力,2)质量缩放和3)温度缩放。该基准适用于液态十六烷,包括对FG和CG子系统的平均构型熵的评估。温度缩放方案实现了3倍的采样加速,而FG特性几乎没有偏差。加力方案使FG性能保持最佳,但采样速度却很少。质量缩放方案产生了5倍的加速,但与FG属性的偏差最大。

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