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A hierarchical approach for energy-efficient scheduling of large workloads in multicore distributed systems

机译:多核分布式系统中大型工作负载的节能调度的分层方法

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This article presents a two-level strategy for scheduling large workloads of parallel applications in multicore distributed systems, taking into account the minimization of both the total computation time and the energy consumption of solutions. Nowadays, energy efficiency is of major concern when using large computing systems such as cluster, grid, and cloud computing facilities. In the approach proposed in this article, a combination of higher-level (i.e., between distributed systems) and lower-level (i.e., within each data-center) schedulers are studied for finding efficient mappings of workflows into the resources in order to maximize the quality of service, while reducing the energy required to compute them. The experimental evaluation demonstrates that accurate schedules are computed by using combined list scheduling heuristics (accounting for both problem objectives) in the higher level, and ad-hoc scheduling techniques to take advantage of multicore infrastructures in the lower level. Solutions are also evaluated with two user- and administrator-oriented metrics. Significant improvements are reported on the two problem objectives when compared with traditional load-balancing and round-robin techniques.
机译:本文提出了一种用于调度多核分布式系统中并行应用程序的大工作量的两级策略,同时考虑了总计算时间和解决方案能耗的最小化。如今,在使用大型计算系统(例如群集,网格和云计算设施)时,能源效率已成为主要问题。在本文提出的方法中,研究了较高级别(即在分布式系统之间)和较低级别(即在每个数据中心内)的调度程序的组合,以查找工作流到资源的有效映射,以最大化服务质量,同时减少了计算它们所需的能量。实验评估表明,通过使用较高级别的组合列表调度启发式方法(考虑到两个问题目标)和临时调度技术来利用较低级别的多核基础架构来计算准确的调度。还使用两个面向用户和管理员的指标评估解决方案。与传统的负载平衡和轮询技术相比,在两个问题目标上报告了显着改进。

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