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Handling Recoverable Temporal Violations in Scientific Workflow Systems: A Workflow Rescheduling Based Strategy

机译:处理科学工作流系统中可恢复的时间违规:基于工作流重新安排的策略

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摘要

Due to the complex nature of scientific workflow systems, the violations of temporal QoS constraints often take place and may severely affect the usefulness of the executionȁ9;s results. Therefore, to deliver satisfactory QoS, temporal violations need to be recovered effectively. However, there are two fundamental issues which have so far not been well addressed: how to define recoverable temporal violations, how to design corresponding exception handling strategies. In this paper, we first propose a probability based temporal consistency model to define the temporal violations which are statistically recoverable by light-weight exception handling strategies. Afterwards, a novel Ant Colony Optimisation based two-stage workflow local rescheduling strategy (ACOWR) is proposed to handle detected recoverable temporal violations in an automatic and cost-effective fashion. The simulation experiments conducted in our scientific workflow system demonstrate the excellent performance of our handling strategy in reducing both local and global temporal violation rates.
机译:由于科学工作流系统的复杂性,经常会发生违反时间QoS约束的情况,并可能严重影响执行结果的有效性。因此,为了提供令人满意的QoS,需要有效地恢复时间违规。但是,到目前为止,有两个基本问题尚未得到很好的解决:如何定义可恢复的时间违规,如何设计相应的异常处理策略。在本文中,我们首先提出一个基于概率的时间一致性模型,以定义可以通过轻量级异常处理策略在统计上恢复的时间违规。之后,提出了一种新颖的基于蚁群优化的两阶段工作流本地重新调度策略(ACOWR),以自动且经济高效的方式处理检测到的可恢复时间违规。在我们科学的工作流程系统中进行的模拟实验证明了我们的处理策略在降低本地和全局时间违规率方面的出色表现。

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