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An Improved Energy-Efficient Scheduling for Precedence Constrained Tasks in Multiprocessor Clusters

机译:改进的节能调度,用于多处理器集群中的优先限制任务

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Excessive energy consumption has become a critical issue in high performance computing. Task scheduling algorithms affect not only schedule length but also energy consumption. To shorten schedule length of parallel tasks with precedence constraints, scheduling algorithms could duplicate tasks on critical paths to avoid communication delay caused by inter-task dependence. However, task duplications incur more energy consumption. In this paper, we propose a heuristic Processor Reduction Optimizing (PRO) method to reduce the number of processors used to run parallel tasks, thereby decreasing system energy consumption. The PRO method can find appropriate time slots to accommodate tasks immigrated from low-utilized processors. The PRO method can be combined with existing duplication-based scheduling algorithms, such as Task Duplication Scheduling (TDS), Energy-Aware Duplication (EAD) scheduling and Performance-Energy Balanced Duplication (PEBD) scheduling. Experimental results show that the proposed PRO method can effectively decrease the number of used processors and save energy while maintaining schedule length.
机译:能量消耗过多已成为高性能计算中的关键问题。任务调度算法不仅影响时间表长度,而且影响能量消耗。为了缩短具有优先约束的并行任务的计划长度,调度算法可以在关键路径上重复任务,以避免由任务间依赖引起的通信延迟。但是,任务重复性会产生更多能耗。在本文中,我们提出了一种启发式处理器减少优化(Pro)方法,以减少用于运行并行任务的处理器的数量,从而降低了系统能量消耗。 Pro方法可以找到适当的时隙以适应从低利用处理器移植的任务。 Pro方法可以与现有的基于复制的调度算法组合,例如任务复制调度(TDS),能量感知复制(EAD)调度和性能 - 能量平衡复制(PEBD)调度。实验结果表明,所提出的Pro方法可以有效地降低使用的处理器的数量,并在保持时间表长度的同时节省能量。

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