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首页> 外文期刊>The Journal of Chemical Physics >Accurate reaction-diffusion operator splitting on tetrahedral meshes for parallel stochastic molecular simulations
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Accurate reaction-diffusion operator splitting on tetrahedral meshes for parallel stochastic molecular simulations

机译:平行随机分子模拟四面体网格上精确的反作用 - 扩散操作员分裂

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摘要

Spatial stochastic molecular simulations in biology are limited by the intense computation required to track molecules in space either in a discrete time or discrete space framework, which has led to the development of parallel methods that can take advantage of the power of modern supercomputers in recent years. We systematically test suggested components of stochastic reaction-diffusion operator splitting in the literature and discuss their effects on accuracy. We introduce an operator splitting implementation for irregular meshes that enhances accuracy with minimal performance cost. We test a range of models in small-scale MPI simulations from simple diffusion models to realistic biological models and find that multi-dimensional geometry partitioning is an important consideration for optimum performance. We demonstrate performance gains of 1-3 orders of magnitude in the parallel implementation, with peak performance strongly dependent on model specification. Published by AIP Publishing.
机译:生物学中的空间随机分子模拟受到在离散时间或离散空间框架中跟踪空间中分子所需的强烈计算的限制,这导致了近年来可以利用现代超级计算机的力量的并行方法的开发。我们系统地测试了文献中随机反应扩散操作员分裂的建议组件,并讨论了它们对精度的影响。我们介绍了一种用于不规则网格的操作员分离实现,以提高性能成本最小的精度。我们从简单的扩散模型测试一系列模型,从简单的扩散模型到现实的生物模型,发现多维几何分区是最佳性能的重要考虑因素。我们在并行实施情况下展示了1-3级数量级的性能提升,峰值性能强烈取决于模型规范。通过AIP发布发布。

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