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On effective slack reclamation in task scheduling for energy reduction

机译:关于任务调度中的有效松弛回收以减少能耗

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摘要

Power consumed by modern computer systems, particularly servers in data centers has almost reached an unacceptable level. However, their energy consumption is often not justifiable when their utilization is considered; that is, they tend to consume more energy than needed for their computing related jobs. Task scheduling in distributed computing systems (DCSs) can play a crucial role in increasing utilization; this will lead to the reduction in energy consumption. In this paper, we address the problem of scheduling precedence-constrained parallel applications in DCSs, and present two energy-conscious scheduling algorithms. Our scheduling algorithms adopt dynamic voltage and frequency scaling (DVFS) to minimize energy consumption. DVFS, as an efficient power management technology, has been increasingly integrated into many recent commodity processors. DVFS enables these processors to operate with different voltage supply levels at the expense of sacrificing clock frequencies. In the context of scheduling, this multiple voltage facility implies that there is a trade-off between the quality of schedules and energy consumption. Our algorithms effectively balance these two performance goals using a novel objective function and its variant, which take into account both goals; this claim is verified by the results obtained from our extensive comparative evaluation study.
机译:现代计算机系统,特别是数据中心服务器的功耗几乎达到了无法接受的水平。但是,考虑到它们的利用,它们的能源消耗通常是不合理的。也就是说,他们倾向于消耗比与计算相关的工作所需的更多能量。分布式计算系统(DCS)中的任务调度可以在提高利用率方面发挥关键作用。这将导致能源消耗的减少。在本文中,我们解决了在DCS中调度优先约束的并行应用程序的问题,并提出了两种节能意识的调度算法。我们的调度算法采用动态电压和频率缩放(DVFS)来最大程度地降低能耗。 DVFS作为一种高效的电源管理技术,已越来越多地集成到许多最新的商用处理器中。 DVFS使这些处理器可以在不同的电压供应水平下工作,但以牺牲时钟频率为代价。在调度的上下文中,这种多电压功能意味着在调度的质量和能耗之间要进行权衡。我们的算法使用新颖的目标函数及其变体有效地平衡了这两个性能目标,同时兼顾了两个目标;从我们广泛的比较评估研究中获得的结果证实了这一说法。

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