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Maximum-Utility Scheduling of Operation Modes With Probabilistic Task Execution Times Under Energy Constraints

机译:能量约束下具有概率任务执行时间的工作模式最大效用调度

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摘要

We propose a novel scheduling scheme that determines the instant operation modes of multiple tasks. The tasks have probabilistic execution times and are executed on discrete operation modes providing different utilities with different energy consumptions. We first design an optimal offline scheduling scheme that stochastically maximizes the cumulative utility of the tasks under energy constraints, at the cost of heavy computational overhead. Next, the optimal offline scheme is modified to an approximate online scheduling scheme. The online scheme has little runtime overhead and yields almost the maximum utility, with an energy budget that is given at runtime. The difference between the maximum utility and the output utility of the online scheme is bounded by a controllable input value. Extensive evaluation shows that the output utility of the online scheme approaches the maximum utility in most cases, and is much higher than that of existing methods by up to 50% of the largest utility difference among available operation modes.
机译:我们提出了一种新颖的调度方案,可以确定多个任务的即时操作模式。这些任务具有概率执行时间,并且在离散的操作模式下执行,从而为不同的公用事业提供了不同的能耗。我们首先设计了一种最佳的离线调度方案,该方案可以在能源约束下随机最大化任务的累积效用,但要付出大量的计算开销。接下来,将最佳离线方案修改为近似在线调度方案。在线方案几乎没有运行时开销,并且产生了几乎最大的效用,并且在运行时给出了能量预算。在线方案的最大效用和输出效用之间的差异由可控制的输入值限制。广泛的评估表明,在线方案的输出效用在大多数情况下都接近最大效用,并且比现有方法的效用高得多,高达可用操作模式之间最大效用差额的50%。

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