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A new Grid scheduler with failure recovery and rescheduling mechanisms: Discussion and analysis

机译:具有故障恢复和重新调度机制的新Grid调度器:讨论和分析

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摘要

Computational Grids (CGs) have become an appealing research area. They suggest a suitable environment for developing large scale parallel applications. CGs integrate a huge mount of distributed heterogeneous resources for constituting a powerful virtual supercomputer. Scheduling is the most important issue for enhancing the performance of CGs. Various strategies have been introduced, including static and dynamic behaviors. The former maps tasks to resources at submission time, while the latter operates at run time. While static scheduling is unsuitable for the dynamic Grid environment, scheduling in CGs is still more complex than the proposed dynamic solutions. This paper introduces a decentralized Adaptive Grid Scheduler (AGS) based on a novel rescheduling mechanism. AGS has several salient properties as it is; hybrid, adaptive, decentralized, and efficient. Also, AGS is a robust mechanism as it has the ability to; (i) detect resource failures, (ii) continue its functionality in spite of the failure existence, then (iii) recover back. Moreover, it integrates both static and dynamic scheduling behaviors. An initial static scheduling map is proposed for an input Direct Acyclic Graph (DAG). However, DAG tasks may be rescheduled if the performance of the allocated resources changes in away that may affect the tasks' response time. AGS overcomes drawbacks of traditional schedulers by utilizing the mobile agent unique features to enhance the resource discovery and monitoring processes. Experimental results have shown that AGS outperforms traditional Grid schedulers as it introduces a better scheduling efficiency.
机译:计算网格(CG)已成为有吸引力的研究领域。他们为开发大规模并行应用程序提供了合适的环境。 CG集成了大量的分布式异构资源,以构成功能强大的虚拟超级计算机。调度是增强CG性能的最重要问题。引入了各种策略,包括静态和动态行为。前者在提交时将任务映射到资源,而后者在运行时运行。尽管静态调度不适用于动态网格环境,但CG中的调度仍比拟议的动态解决方案复杂。本文介绍了一种基于新型重新调度机制的分散式自适应网格调度器(AGS)。 AGS本身具有几个显着特性;混合,自适应,分散和高效。此外,AGS具有强大的功能,因此具有强大的功能。 (i)检测资源故障,(ii)继续存在故障的功能,然后(iii)恢复。而且,它集成了静态和动态调度行为。提出了用于输入直接非循环图(DAG)的初始静态调度图。但是,如果分配的资源的性能发生变化(可能影响任务的响应时间),则DAG任务可能会重新安排。 AGS通过利用移动代理的独特功能来增强资源发现和监视过程,从而克服了传统调度程序的缺点。实验结果表明,由于AGS引入了更好的调度效率,因此其性能优于传统的Grid调度程序。

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