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Integration of task abortion and security requirements in GA-based meta-heuristics for independent batch grid scheduling

机译:在基于GA的元启发式方法中将任务中止和安全要求进行集成,以实现独立的批处理网格调度

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摘要

Scheduling and resource allocation in large scale distributed environments, such as Computational Grids (CGs), arise new requirements and challenges not considered in traditional distributed computing environments. Among these new requirements, task abortion and security become needful criteria for Grid schedulers. The former arises due to the dynamics of the Grid systems, in which resources are expected to enter and leave the system in an unpredictable way. The latter requirement appears crucial in Grid systems mainly due to a multi-domain nature of CGs. The main aim of this paper is to develop a scheduling model that enables the aggregation of task abortion and security requirements as additional, together with makespan and flowtime, scheduling criteria into a cumulative objective function. We demonstrate the high effectiveness of genetic-based schedulers in finding near-optimal solutions for multi-objective scheduling problem, where all criteria (objectives) are simultaneously optimized. The proposed meta-heuristics are experimentally evaluated in static and dynamic Grid scenarios by using a Grid simulator. The obtained results show the fast reduction of the values of basic scheduler performance metrics, especially in the dynamic case, that confirms the usefulness of the proposed approach in real-life scenarios.
机译:诸如计算网格(CG)之类的大规模分布式环境中的调度和资源分配提出了新的要求和挑战,而传统的分布式计算环境并未考虑这些挑战。在这些新要求中,任务中止和安全性成为Grid Scheduler的必要标准。前者是由于网格系统的动态而产生的,在网格系统中,期望资源以不可预测的方式进入和离开系统。后者的要求在网格系统中显得至关重要,这主要是由于CG的多域性质。本文的主要目的是开发一种调度模型,该模型可以使任务中止和安全要求的聚合以及附加的工期和生产时间,调度标准整合为一个累积目标函数。我们证明了基于遗传的调度程序在寻找同时优化所有标准(目标)的多目标调度问题的最佳解决方案方面的高效性。通过使用网格模拟器,在静态和动态Grid场景中对提出的元启发式方法进行了实验评估。获得的结果表明基本调度程序性能指标的值快速降低,尤其是在动态情况下,这证实了该方法在现实场景中的有用性。

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