Exploiting Memory-Boundedness in Energy-Efficient Hard Real-Time Scheduling

M. Spiga, Mattia Spiga, A. Alimonda, S. Carta, F. Aymerich
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引用次数: 4

Abstract

Dynamic voltage and frequency scaling (DVFS) has been extensively exploited in the context of hard real-time systems for the development of energy efficient task scheduling algorithms. However, when tasks are memory bounded, further energy improvement could be obtained. In this paper we analyze the effect of memory boundedness in a state-of-the-art energy efficient hard real-time scheduling algorithm, and we propose a new technique to take into account these effects to substantially improve energy efficiency of the scheduling algorithm while still preventing deadline misses. The proposed technique is compared to a state-of-the-art hard real-time scheduling algorithm from energy efficiency viewpoint. Results show an energy reduction from 15% to 90% depending on the amount of memory boundedness of the task.
在高能效硬实时调度中利用内存约束性
动态电压频率标度(DVFS)在硬实时系统中被广泛应用于开发高效节能的任务调度算法。然而,当任务有内存限制时,可以获得进一步的能量改进。在本文中,我们分析了当前最先进的节能硬实时调度算法中内存有界性的影响,并提出了一种新的技术来考虑这些影响,从而大大提高调度算法的能源效率,同时仍然防止错过截止日期。从能源效率的角度将该技术与当前最先进的硬实时调度算法进行了比较。结果显示,根据任务的内存边界的大小,能量减少了15%到90%。
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