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Energy efficient scheduling strategies in Federated Grids

机译:联邦网格中的节能调度策略

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摘要

The impact of energy consumption and CO_2 emissions in high-performance grid computing is no longer ignored. So far, most efforts have focused on energy efficiency measures of grid infrastructures's underlying hardware and on direct reduction of CO_2 emissions. Thus, in the field of scheduling and resource allocation in computational grids some algorithms have been proposed for selecting grid infrastructures in energy- and CO_2 -aware manner or based on hardware power consumption. However, these hardware energy efficiency measures are not suitable at meta-scheduler level. Instead, this paper presents software energy efficiency measures that reduce computing power and communication bandwidth, and hence reduce algorithm's total communication cost and power consumption. The main idea is to restrict to the maximum the number of needed messages per job scheduled. Thus, we proposed performance based scheduling policies and self-adjusting resource sharing strategies that accomplish with applications makespan and resources performance while reducing the total amount of computation power and communication bandwidth required by the algorithm itself.
机译:能耗和CO_2排放在高性能网格计算中的影响已不再被忽略。到目前为止,大多数工作都集中在电网基础设施底层硬件的能效措施以及直接减少CO_2排放上。因此,在计算网格中的调度和资源分配领域,已经提出了一些算法,用于以能量和CO 2感知方式或基于硬件功耗来选择网格基础设施。但是,这些硬件能效措施不适用于元调度程序级别。相反,本文提出了软件能效措施,这些措施可降低计算能力和通信带宽,从而降低算法的总通信成本和功耗。主要思想是限制每个计划的作业所需的最大消息数。因此,我们提出了基于性能的调度策略和自调整资源共享策略,这些策略可通过应用的制造时间和资源性能来实现,同时减少算法本身所需的计算能力和通信带宽总量。

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