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An Efficient Scheduling Algorithm for Energy Consumption Constrained Parallel Applications on Heterogeneous Distributed Systems

机译:一种有效的能耗调度算法,用于异构分布式系统上的并行应用

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As the explosive growth of energy consumption in current heterogeneous distributed systems, energy consumption constraint has been one of the primary design issues. Minimizing the schedule length while satisfying the energy consumption constraint of parallel applications is one of the most important problem which has been studied recently. Previous studies have proposed a preassignment approach which tried to presuppose the minimum energy consumption assignment for unassigned tasks to solve the problem based on the dynamic voltage and frequency scaling (DVFS) technique. However, the preassignment of unassigned tasks with the minimum energy consumption does not necessarily lead to the minimization of the schedule length. In this study, we propose an efficient scheduling algorithm using a relative average assignments for tasks. The results of experiments on two real parallel applications validate that the proposed algorithm can obtain shorter schedule length while satisfying the energy consumption constraint compared with the state-ofthe-art methods in various situations.
机译:作为电流异构分布式系统中能耗的爆炸性增长,能源消耗约束一直是主要设计问题之一。最小化进度长度,同时满足并行应用的能量消耗约束是最近研究过的最重要的问题之一。以前的研究提出了一种预测方法,该方法试图预先假定未分配的任务的最低能耗分配,以解决基于动态电压和频率缩放(DVFS)技术的问题。但是,具有最小能量消耗的未分配任务的预计不一定导致时间表长度的最小化。在这项研究中,我们使用用于任务的相对平均分配来提出一种有效的调度算法。两个真实并行应用的实验结果验证了所提出的算法可以获得更短的时间表长度,同时满足各种情况下的最新方法的能量消耗约束。

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