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Energy efficient scheduling of real-time tasks on multi-core processors with voltage islands

机译:具有电压岛的多核处理器上的实时任务的节能调度

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摘要

This paper studies energy efficient scheduling of periodic real-time tasks on multi-core processors with voltage islands, in which cores are partitioned into multiple blocks (termed voltage islands) and each block has its own power source to supply voltage. Cores in the same block always operate at trie same voltage level, but can be adjusted by using Dynamic Voltage and Frequency Scaling (DVFS). We propose a Voltage Island Largest Capacity First (VILCF) algorithm for energy efficient scheduling of periodic real-time tasks on multi-core processors. It achieves better energy efficiency by fully utilizing the remaining capacity of an island before turning on more islands or increasing the voltage level of the current active islands. We provide detailed theoretical analysis of the approximation ratio of the proposed VILCF algorithm in terms of energy efficiency. In addition, our experimental results show that VILCF significantly outperforms the existing algorithms when there are multiple cores in a voltage island.
机译:本文研究了具有电压岛的多核处理器上定期实时任务的节能调度,其中内核被划分为多个块(称为电压岛),每个块都有自己的电源来提供电压。同一模块中的内核始终在相同的电压电平下运行,但是可以使用动态电压和频率缩放(DVFS)进行调整。我们提出了电压岛最大容量优先(VILCF)算法,用于多核处理器上的周期性实时任务的节能调度。通过在打开更多孤岛或增加当前活动孤岛的电压电平之前充分利用孤岛的剩余容量,可以提高能源效率。我们从能量效率的角度对提出的VILCF算法的逼近率进行了详细的理论分析。此外,我们的实验结果表明,当电压岛中有多个内核时,VILCF明显优于现有算法。

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