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Job Superscheduler Architecture and Performance in Computational Grid Environments

机译:计算网格环境中的作业超级调度程序体系结构和性能

摘要

Computational grids hold great promise in utilizing geographically separated heterogeneous resources to solve large-scale complex scientific problems. However, a number of major technical hurdles, including distributed resource management and effective job scheduling, stand in the way of realizing these gains. In this paper, we propose a novel grid superscheduler architecture and three distributed job migration algorithms. We also model the critical interaction between the superscheduler and autonomous local schedulers. Extensive performance comparisons with ideal, central, and local schemes using real workloads from leading computational centers are conducted in a simulation environment. Additionally, synthetic workloads are used to perform a detailed sensitivity analysis of our superscheduler. Several key metrics demonstrate that substantial performance gains can be achieved via smart superscheduling in distributed computational grids.
机译:计算网格在利用地理上分离的异构资源解决大规模复杂科学问题方面具有广阔的前景。但是,实现分布式系统的这些主要障碍包括分布式资源管理和有效的作业调度。在本文中,我们提出了一种新颖的网格超级调度程序体系结构和三种分布式作业迁移算法。我们还对超级调度程序和自治本地调度程序之间的关键交互进行建模。在模拟环境中,使用来自领先的计算中心的实际工作量,对理想,中央和本地方案进行了广泛的性能比较。此外,综合工作负载用于对我们的超级调度程序进行详细的敏感性分析。几个关键指标表明,可以通过在分布式计算网格中进行智能超调度来获得可观的性能提升。

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