首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >System-Wide Leakage-Aware Energy Minimization Using Dynamic Voltage Scaling and Cache Reconfiguration in Multitasking Systems
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System-Wide Leakage-Aware Energy Minimization Using Dynamic Voltage Scaling and Cache Reconfiguration in Multitasking Systems

机译:在多任务系统中使用动态电压缩放和高速缓存重新配置,将系统范围的泄漏感知能量降至最低

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摘要

System optimization techniques are widely used to improve energy efficiency as well as overall performance. Dynamic voltage scaling (DVS) is well studied and known to be successful in reducing processor energy consumption. Due to the increasing significance of the memory subsystem's energy consumption, dynamic cache reconfiguration (DCR) techniques are recently proposed at the aim of improving cache subsystem's energy efficiency. As the manufacturing technology scales into the order of nanometers, leakage current, which leads to static power consumption, becomes a significant contributor in the overall power dissipation. In this paper, we consider various system components and study their impact on system-wide energy consumption under different processor voltage levels as well as cache configurations. Based on the observation, we efficiently integrate DVS and DCR techniques together to make decisions judiciously so that the total energy consumption is minimized. Our studies show that considering only DVS or DCR and ignoring the impact from other system components may lead to incorrect conclusions in overall energy savings. Experimental results demonstrate that our approach outperforms existing leakage-aware DVS techniques by 47.6% and leakage-oblivious DVS + DCR technique by up to 23.5%.
机译:系统优化技术被广泛用于提高能源效率和整体性能。动态电压缩放(DVS)已得到充分研究,并成功地降低了处理器的能耗。由于内存子系统能耗的重要性日益提高,最近提出了动态高速缓存重新配置(DCR)技术,旨在提高高速缓存子系统的能源效率。随着制造技术的规模扩大到纳米级,导致静态功耗的泄漏电流成为整体功耗的重要贡献。在本文中,我们考虑了各种系统组件,并研究了它们在不同处理器电压水平和缓存配置下对系统范围能耗的影响。根据观察结果,我们将DVS和DCR技术有效地集成在一起,以明智地做出决策,从而将总能耗降至最低。我们的研究表明,仅考虑DVS或DCR而忽略其他系统组件的影响可能会导致总体节能的错误结论。实验结果表明,我们的方法比现有的可识别泄漏的DVS技术高47.6%,比不易泄漏的DVS + DCR技术高23.5%。

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