首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Total Energy Minimization of Real-Time Tasks in an On-Chip Multiprocessor Using Dynamic Voltage Scaling Efficiency Metric
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Total Energy Minimization of Real-Time Tasks in an On-Chip Multiprocessor Using Dynamic Voltage Scaling Efficiency Metric

机译:使用动态电压缩放效率度量标准的片上多处理器中实时任务的总能量最小化

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This paper proposes an algorithm that provides both dynamic voltage scaling and power shutdown to minimize the total energy consumption of an application executed on an on-chip multiprocessor. The proposed algorithm provides an extended schedule and stretch method, where task computations are iteratively stretched within the slack of a time-constrained dependent task set. In addition, the break-even threshold interval for amortizing the shutdown overhead is considered. By evaluating each set of stretched task computations, an energy-efficient set is obtained. The proposed dynamic voltage scaling efficiency metric is the ratio of the reduced energy to the increased cycle time when the supply voltage is scaled, which can be used to determine the task computation cycle to be stretched. Experimental results show that the proposed algorithm outperforms the traditional schedule and stretch method in the various evaluations of target real applications.
机译:本文提出了一种算法,该算法可提供动态电压调节和电源关闭功能,以最大程度地减少片上多处理器上执行的应用的总能耗。所提出的算法提供了一种扩展的调度和扩展方法,其中任务计算在时间受限的相关任务集的松弛范围内迭代地扩展。另外,考虑了用于摊销停机开销的收支平衡阈值间隔。通过评估每组延伸的任务计算,可以获得高能效的一组。提出的动态电压缩放效率度量是缩放电源电压时减少的能量与增加的循环时间的比率,该比率可用于确定要延长的任务计算循环。实验结果表明,该算法在目标实际应用的各种评估中均优于传统的调度和拉伸方法。

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