整合跨异构资源的多层次分子模拟

Yudong Sun, S. McKeever, K. Balali-Mood, M. Sansom
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引用次数: 6

摘要

生物分子模拟在微观水平上研究复杂的生物过程中起着关键作用,其中涉及大分子如蛋白质。这种模拟通常需要大量的计算量,没有一种方法可以实现所有级别的细节。因此,需要集成不同级别的模拟,以联合显示对这些过程的原子洞察。本文提出了一个基于网格的仿真框架,通过动态耦合、自动化工作流管理、依赖资源的作业分配和基于xml的数据表示来支持多级仿真的集成。该框架提供了一个电子科学基础设施来支持网格上的生物分子模拟。开发了一种生物分子模拟标记语言BioSimML,为多层次模拟提供格式化的数据表示。实验模拟表明,基于该框架的分子模拟实现了灵活集成和高性能增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating multi-level molecular simulations across heterogeneous resources
Biomolecular simulations play a key role in the study of complex biological processes at microscopic levels in which macromolecules such as proteins are involved. The simulations are usually computationally demanding and no single method can achieve all levels of details. Thus, the simulations at different levels need to be integrated to jointly manifest atomic insights into these processes. This paper presents a grid-based simulation framework to support the integration of multi-level simulations by means of dynamic coupling, automated workflow management, resource-dependent job distribution, and XML-based data representation. The framework provides an e-science infrastructure to support biomolecular simulations on grids. A biomolecular simulation markup language called BioSimML is developed to provide a formatted data representation to the multi-level simulations. Experimental simulations have shown flexible integration and high performance enhancement achieved in molecular simulations based on our framework.
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