集群异构mpsoc上实时流应用的节能映射

Di Liu, J. Spasić, Gang Chen, T. Stefanov
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引用次数: 27

摘要

在本文中,我们提出了一种新的多项式时间算法,称为频率驱动映射,将指定为循环静态数据流(CSDF)图的实时流应用映射到集群异构MPSoC上。我们的映射方法的目标是减少能耗并保证延迟和吞吐量约束。我们的映射算法的主要新颖之处在于:(1)通过使用CSDF图的硬实时调度,我们提出了一种有效的方法来为CSDF图中的每个任务确定合适的处理器类型,其中能耗最小,并且满足吞吐量和延迟约束;(2)根据首次拟合递减启发式导出的初始映射,提出了一种重新映射方法,将部分任务重新映射到未使用的集群中,通过集群动态电压/频率缩放(DVFS)进一步降低系统能耗。实验结果表明,与现有的方法相比,该算法找到了更节能的映射。由于我们提出的算法节能高达34%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-efficient mapping of real-time streaming applications on cluster heterogeneous MPSoCs
In this paper, we propose a novel polynomial time algorithm, called Frequency Driven Mapping, to map real-time streaming applications specified as cyclo-static dataflow (CSDF) graphs onto a cluster heterogeneous MPSoC. The objective of our mapping approach is to reduce the energy consumption and guarantee latency and throughput constraints. The main novelty in our mapping algorithm is twofold: (1) By using hard-realtime scheduling of CSDF graphs, we propose an efficient way to determine a suitable processor type for each task in a CSDF graph, where the energy consumption is minimized and throughput and latency constraints are met; (2) According to an initial mapping derived by a first-fit-decreasing heuristic, we propose a remapping approach, where some tasks are remapped to unused clusters in order to further reduce the energy consumption of the system by cluster dynamic voltage/frequency scaling (DVFS). The experimental results show that the proposed algorithm finds more energy efficient mapping compared to existing approaches. The energy savings due to our proposed algorithm are up to 34%.
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