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Reliability-Driven Energy-Efficient Task Scheduling for Multiprocessor Real-Time Systems

机译:多处理器实时系统的可靠性驱动的节能任务调度

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This paper proposes a reliability-driven task scheduling scheme for multiprocessor real-time embedded systems that optimizes system energy consumption under stochastic fault occurrences. The task scheduling problem is formulated as an integer linear program where a novel fault adaptation variable is introduced to model the uncertainties of fault occurrences. The proposed scheme, which considers both the dynamic power and the leakage power, is able to handle the scheduling of independent tasks and tasks with precedence constraints, and is capable of scheduling tasks with varying deadlines. Experimental results have demonstrated that the proposed reliability-driven parallel scheduling scheme achieves energy savings of more than 15% when compared to the approach of designing for the corner case of fault occurrences.
机译:本文提出了一种用于多处理器实时嵌入式系统的可靠性驱动的任务调度方案,该方案优化了随机故障发生时的系统能耗。任务调度问题被表述为整数线性程序,其中引入了新的故障适应变量以对故障发生的不确定性进行建模。所提出的方案同时考虑了动态功率和泄漏功率,能够处理独立任务和具有优先约束的任务的调度,并且能够调度具有不同期限的任务。实验结果表明,与针对故障发生的极端情况进行设计的方法相比,所提出的可靠性驱动的并行调度方案可节省超过15%的能源。

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