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首页> 外文期刊>Journal of supercomputing >Replication based fault tolerant job scheduling strategy for economy driven grid
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Replication based fault tolerant job scheduling strategy for economy driven grid

机译:基于复制的经济驱动网格容错作业调度策略

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摘要

In this paper, the problem of fault tolerance in grid computing is addressed and a novel adaptive task replication based fault tolerant job scheduling strategy for economy driven grid is proposed. The proposed strategy maintains fault history of the resources termed as resource fault index. Fault index entry for the resource is updated based on successful completion or failure of an assigned task by the grid resource. Grid Resource Broker then replicates the task (submitting the same task to different backup resources) with different intensity, based on vulnerability of resource towards faults suggested by resource fault index. Consequently, in case of possible fault at a resource the results of replicated task(s) on other backup resource(s) can be used. Hence, user job(s) can be completed within specified deadline and assigned budget, even on the event of faults at the grid resource(s). Through extensive simulations, performance of the proposed strategy is evaluated and compared with the Time Optimization and Checkpointing based Strategy in an economy driven grid environment. The experimental results demonstrate that in the presence of faults, proposed fault tolerant strategy improves the number of tasks completed with varied deadline and fixed budget as well as number of tasks completed with varied budget and fixed deadline. Additionally, the proposed strategy used a smaller percentage of deadline time as compare to both Time Optimization and Checkpointing based Strategy. Although the proposed strategy has a percentage of budget spent greater than that of Time Optimization Strategy and Checkpointing based Strategy, it is accepted as a proposed strategy in time optimization where the main objective is to maximize tasks completed within a given deadline. It can be concluded from the experiments that the proposed strategy shows improvement in satisfying the user QoS requirements. It can effectively schedule tasks and tolerate faults gracefully even in the presence of failures, but the costs are slightly higher in terms of budget consumption. Hence, the proposed fault tolerant strategy helps in sustaining user's faith in the grid, by enabling the grid to deliver reliable and consistent performance in the presence of faults.
机译:本文针对网格计算中的容错问题,提出了一种基于自适应任务复制的经济驱动网格容错作业调度策略。所提出的策略保留了称为资源故障索引的资源故障历史记录。根据网格资源成功完成或失败分配的任务,更新资源的故障索引条目。然后,网格资源代理根据资源对资源故障索引所建议的故障的脆弱性,以不同的强度复制任务(将同一任务提交给不同的备份资源)。因此,在资源可能出现故障的情况下,可以使用在其他备份资源上复制任务的结果。因此,即使在网格资源发生故障的情况下,用户作业也可以在指定的期限和指定的预算内完成。通过广泛的仿真,在经济驱动的电网环境中,对所提出策略的性能进行了评估,并与基于时间优化和检查点的策略进行了比较。实验结果表明,在存在故障的情况下,提出的容错策略提高了在期限和固定预算不同的情况下完成的任务数量以及在预算和期限固定的情况下完成的任务数量。此外,与基于时间优化和基于检查点的策略相比,所提出的策略使用的截止时间百分比较小。尽管所建议的策略所花费的预算百分比大于“时间优化策​​略”和“基于检查点”策略的预算百分比,但是它被认为是时间优化的建议策略,其主要目标是最大化给定期限内完成的任务。从实验可以得出结论,所提出的策略在满足用户QoS要求方面显示出了改进。它即使在出现故障的情况下也可以有效地计划任务并优雅地容忍故障,但是就预算消耗而言,成本略高。因此,所提出的容错策略通过使网格能够在存在故障的情况下提供可靠且一致的性能,从而有助于维持用户对网格的信心。

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