System-Level Energy-Efficiency for Real-Time Tasks

Chuan-Yue Yang, Jian-Jia Chen, Chia-Mei Hung, Tei-Wei Kuo
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引用次数: 17

Abstract

Dynamic voltage scaling (DVS) has been adopted in many computing systems to reduce the energy consumption of the processor by slowing down the processor speed. However, for system devices without DVS capability, the longer a task executes, the more energy the task consumes in the required system devices. This paper explores energy-efficient scheduling for periodic hard real-time tasks in a system consisted of a DVS processor and multiple non-DVS system devices. We propose an algorithm for static scheduling which minimizes the system energy consumption of a given set of real-time tasks, provided that each task executes in its worst case. For systems in which some tasks might complete earlier than its estimated worst-case execution time, we develop on-line algorithms to reclaim the slack time to reduce the energy consumption. Compared to existing algorithms, our proposed algorithm can reduce the energy consumption both in the CPU and system devices
实时任务的系统级能效
动态电压缩放(DVS)在许多计算系统中被采用,通过降低处理器速度来降低处理器的能耗。但对于不具备分布式交换机功能的系统设备,任务执行时间越长,在所需系统设备上消耗的能量越大。本文研究了由一个分布式交换机处理器和多个非分布式交换机系统设备组成的系统中周期性硬实时任务的节能调度。我们提出了一种静态调度算法,该算法可以使给定的实时任务集的系统能耗最小化,并且每个任务都在其最坏情况下执行。对于某些任务可能比其估计的最坏情况执行时间更早完成的系统,我们开发了在线算法来回收空闲时间以减少能量消耗。与现有算法相比,我们的算法可以降低CPU和系统设备的能耗
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