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首页> 外文期刊>Design automation for embedded systems >An energy-efficient time-triggered scheduling algorithm for mixed-criticality systems
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An energy-efficient time-triggered scheduling algorithm for mixed-criticality systems

机译:用于混合关键性系统的节能时间触发调度算法

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摘要

Real-time safety-critical systems are getting more complicated due to the introduction of mixed-criticality systems. The increasing use of mixed-criticality systems has motivated the real-time systems research community to investigate various non-functional aspects of these systems. Energy consumption minimization is one such aspect which is just beginning to be explored. In this paper, we propose a time-triggered dynamic voltage and frequency scaling (DVFS) algorithm for uniprocessor mixed-criticality systems. We show that our algorithm outperforms the predominant existing algorithm which uses DVFS for mixed-criticality systems with respect to minimization of energy consumption. In addition, ours is the first energy-efficient time-triggered algorithm for mixed-criticality systems. We prove an optimality result for the proposed algorithm with respect to energy consumption. Then we extend our algorithm for tasks with dependency constraints.
机译:由于引入混合关键性系统,实时安全关键系统正在变得更加复杂。 越来越多的混合关键性系统的使用是激励了实时系统研究界,以调查这些系统的各种非功能方面。 能量消耗最小化是刚刚开始探索的一个这样的方面。 在本文中,我们提出了一种用于单处理器混合 - 关键性系统的时间触发的动态电压和频率缩放(DVFS)算法。 我们表明,我们的算法优于优势现有算法,该算法利用DVF的混合关键系统相对于最小化能量消耗。 此外,我们的是用于混合关键系统的第一种节能时间触发算法。 我们证明了所提出的算法关于能量消耗的最优性结果。 然后,我们将算法扩展了具有依赖性约束的任务。

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