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Studying protein folding on the Grid: experiences using CHARMM on NPACI resources under Legion

机译:研究网格上的蛋白质折叠:在Legion的NPACI资源上使用CHARMM的经验

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One benefit of a computational Grid is the ability to run high-performance applications over distributed resources simply and securely. We demonstrated this benefit with an experiment in which we studied the protein-folding process with the CHARMM molecular simulation package over a Grid managed by Legion, a Grid operating system. High-performance applications can take advantage of Grid resources if the Grid operating system provides both low-level functionality as well as high-level services. We describe the nature of services provided by Legion for high-performance applications. Our experiences indicate that human factors continue to play a crucial role in the configuration of Grid resources, underlying resources can be problematic, Grid services must tolerate underlying problems or inform the user, and high-level services must continue to evolve to meet user requirements. Our experiment not only helped a scientist perform an important study, but also showed the viability of an integrated approach such as Legion's for managing a Grid.
机译:计算网格的一个好处是能够简单,安全地在分布式资源上运行高性能应用程序。我们通过一个实验证明了这种好处,在该实验中,我们使用CHARMM分子模拟软件包在由Legion(网格操作系统)管理的Grid上研究了蛋白质折叠过程。如果Grid操作系统既提供低级功能又提供高级服务,则高性能应用程序可以利用Grid资源。我们描述了Legion为高性能应用程序提供的服务的性质。我们的经验表明,人为因素继续在Grid资源的配置中起着至关重要的作用,底层资源可能会出现问题,Grid服务必须容忍底层问题或通知用户,并且高级服务必须继续发展以满足用户需求。我们的实验不仅帮助科学家进行了重要的研究,而且还展示了诸如Legion这样的集成方法用于管理网格的可行性。

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