多核混合临界系统的节能研究

S. Narayana, Pengcheng Huang, G. Giannopoulou, L. Thiele, R. V. Prasad
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引用次数: 53

摘要

本文研究了多核混合临界系统的一般能量最小化问题,考虑了不同的系统运行模式,以及静态和动态能量消耗。在制定全局调度决策时,需要权衡不同模式之间的能耗以及静态和动态能耗之间的能耗。因此,这个问题是具有挑战性的。为此,我们首先开发了独核的解析最优解和相应的低复杂度启发式算法。利用这一点,我们进一步提出能源感知映射技术,并探索多核的节能。据我们所知,我们是第一个在这种一般设置下研究混合临界能量最小化的人。通过广泛的模拟和实际的工业应用,证明了我们的方法在节能方面的有效性。
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Exploring Energy Saving for Mixed-Criticality Systems on Multi-Cores
In this paper we study a general energy minimization problem for mixed-criticality systems on multi-cores, considering different system operation modes, and static & dynamic energy consumption. While making global scheduling decisions, trade-offs in energy consumption between different modes and also between static and dynamic energy consumption are required. Thus, such a problem is challenging. To this end, we first develop an optimal solution analytically for unicore and a corresponding low-complexity heuristic. Leveraging this, we further propose energy-aware mapping techniques and explore energy savings for multi-cores. To the best of our knowledge, we are the first to investigate mixed-criticality energy minimization in such a general setting. The effectiveness of our approaches in energy reduction is demonstrated through both extensive simulations and a realistic industrial application.
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