网格计算中新型动态资源管理与作业调度研究*

Fufang Li, Deyu Qi, Limin Zhang, Xianguang Zhang, Zhili Zhang
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引用次数: 30

摘要

网格计算是近年来的一个热点。在网格计算应用中,资源管理和作业调度是网格计算系统中最关键的问题。本文提出了一种基于agent的动态网格资源管理模型,将资源管理和作业调度作为一个联盟完整性来考虑,从而获得良好的鲁棒性、可扩展性、高效性和高性能。在我们的模型中,我们使用精心设计的agent来获取网格环境中各个节点的动态实时可用计算能力,从而将新的作业分配给具有最大可用计算能力的节点,从而以良好的负载平衡来提高系统的负载能力和性能。我们将所有网格计算资源构建为两层堆排序树(HST);这使得系统具有更高的可扩展性、健壮性、容错性和高性能。该模型利用智能体对两层HST的构造和重构,能够很好地适应变化莫测的网格环境
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Novel Dynamic Resource Management and Job Scheduling in Grid Computing*
Grid computing has been a hot spot recent year. In grid computing applications, resource management and job scheduling are the most crucial problems in grid computing systems. In this paper, we try to present a novel agent-based dynamic grid resource management model considering both the resource management and job scheduling as a coalition integrity, so as to gain good robust, scalability, efficiency, and high performance. In our model, we use a carefully designed agent to obtain dynamic real time available computational ability of various nodes in the grid environment, so that new job could be assigned to the node that has the largest available computational power, and thus to improve system load ability and performance with good load balance. We construct all grid computational resources into two-layered heap sort tree (HST); this makes the system be more scalable, robust, fault-tolerant and high performance. By taking advantages of agents in constructing and reconstructing the two-layered HST, this model is well fitted with the unpredictable changing grid environment
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