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Enhanced Parallel Application Scheduling Algorithm with Energy Consumption Constraint in Heterogeneous Distributed Systems

机译:异构分布式系统中具有能耗约束的增强并行应用调度算法。

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Energy consumption has always been one of the main design problems in heterogeneous distributed systems, whether for large cluster computer systems or small handheld terminal devices. And as energy consumption explodes for complex performance, many efforts and work are focused on minimizing the schedule length of parallel applications that meet the energy consumption constraints currently. In prior studies, a pre-allocation method based on dynamic voltage and frequency scaling (DVFS) technology allocates unassigned tasks with minimal energy consumption. However, this approach does not necessarily result in minimal scheduling length. In this paper, we propose an enhanced scheduling algorithm, which allocates the same energy consumption for each task by selecting a relatively intermediate value among the unequal allocations. Based on the two real-world applications (Fast Fourier transform and Gaussian elimination) and the randomly generated parallel application, experiments show that the proposed algorithm not only achieves better scheduling length while meeting the energy consumption constraints, but also has better performance than the existing parallel algorithms.
机译:无论对于大型集群计算机系统还是小型手持终端设备,能耗一直是异构分布式系统中的主要设计问题之一。随着能耗因复杂性能而激增,许多工作和工作都集中在最小化满足当前能耗限制的并行应用程序的调度长度上。在先前的研究中,基于动态电压和频率缩放(DVFS)技术的预分配方法以最小的能耗分配未分配的任务。但是,此方法不一定会导致最小的调度长度。在本文中,我们提出了一种增强的调度算法,该算法通过在不等分配中选择一个相对中间的值来为每个任务分配相同的能耗。基于两个实际应用(快速傅立叶变换和高斯消去)以及随机生成的并行应用,实验表明,该算法不仅在满足能耗约束的同时实现了更好的调度长度,而且性能也比现有的更好。并行算法。

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