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Reliability Driven Task Scheduling for Heterogeneous Systems

机译:异构系统的可靠性驱动任务调度

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摘要

In recent years, more and more heterogeneous processor cores are embedded into a single chip. To deploy such heterogeneous embedded systems in critical applications, e.g., aircraft control, battleship missile launches, nuclear plant safe operations, etc., an important research problem is how to maximize system reliability while satisfying the required time constraint. Therefore, a scheduling scheme is needed to exploit the heterogeneity of a system and satisfy both the reliability requirement and the given time constraint. In this paper, we study the heterogeneous reliability scheduling problem, i.e., given a heterogeneous system, a Directed Acyclic Graph (DAG) that models an application and a time constraint, find a schedule for the DAG so that the system reliability can be maximized and the time constraint can be met. To solve this problem, two heuristic algorithms, MCMS and PRMS, are proposed. The experimental results show that our algorithms can improve system reliability significantly. Among them, PRMS has the best performance and 1 the improvement of reliability can be up to 30%.
机译:近年来,越来越多的异构处理器内核被嵌入到单个芯片中。为了在诸如飞机控制,战舰导弹发射,核工厂安全运行等关键应用中部署这种异构嵌入式系统,一个重要的研究问题是如何在满足所需时间限制的同时最大化系统可靠性。因此,需要一种调度方案来利用系统的异构性并同时满足可靠性要求和给定的时间约束。在本文中,我们研究了异构可靠性调度问题,即给定异构系统,对应用程序和时间约束进行建模的有向无环图(DAG),找到DAG的调度,从而可以最大程度地提高系统可靠性并可以满足时间限制。为了解决这个问题,提出了两种启发式算法:MCMS和PRMS。实验结果表明,我们的算法可以显着提高系统可靠性。其中,PRMS具有最佳性能,并且1可靠性提高了30%。

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