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On development of an efficient parallel loop self-scheduling for grid computing environments

机译:关于网格计算环境的高效并行循环自调度的开发

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The approaches to deal with scheduling and load balancing on PC-based cluster systems are famous and well-known. Self-scheduling schemes, which are suitable for parallel loops with independent iterations on cluster computer system, they have been designed in the past. In this paper, we propose a new scheme that can adjust the scheduling parameter dynamically on an extremely heterogeneous PC-based cluster and Grid computing environments in order to improve system performance. A Grid computing environment consists of multiple PC-based clusters is constructed using Globus Toolkit and MPICH-G2 middleware. The experimental results show that our scheduling can result in higher performance than other similar schemes on Grid computing environments.
机译:在基于PC的群集系统上处理调度和负载平衡的方法是著名的。过去已经设计了自调度方案,该方案适合于集群计算机系统上具有独立迭代的并行循环。在本文中,我们提出了一种新方案,该方案可以在极其异构的基于PC的群集和Grid计算环境中动态调整调度参数,以提高系统性能。使用Globus Toolkit和MPICH-G2中间件构建了一个由多个基于PC的群集组成的网格计算环境。实验结果表明,与网格计算环境中的其他类似方案相比,我们的调度可以带来更高的性能。

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