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Temperature-aware dynamic voltage scaling for near-threshold computing

机译:温度敏感型动态电压定标,用于近阈值计算

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Power/energy reduction is of uttermost importance for applications with stringent power/energy budget such as ultra-low power and energy-harvested systems. Aggressive voltage scaling and in particular Near-Threshold Computing (NTC) is a promising approach to reduce the power and energy consumption. However, reducing the supply voltage leads to drastic performance variation induced by process and runtime variation. Temperature variation is one of the major sources of performance variation. In this paper, we study the impact of temperature variation on the circuit behavior at near threshold region and show that the ambient temperature has a huge impact on the metrics such as circuit delay, power and energy consumption. We also propose a low-cost, ambient temperature-aware voltage scaling technique to reduce the unnecessary energy overhead caused by temperature variation. Simulation results show that our proposed approach reduces the energy consumption by more than 3X.
机译:对于具有严格功率/能量预算的应用,例如超低功率和能量收集系统,降低功率/能量至关重要。激进的电压缩放,尤其是近阈值计算(NTC)是降低功耗和能耗的一种有前途的方法。但是,降低电源电压会导致由过程和运行时间变化引起的剧烈性能变化。温度变化是性能变化的主要来源之一。在本文中,我们研究了温度变化对接近阈值区域的电路行为的影响,并表明环境温度对诸如电路延迟,功耗和能耗等指标具有巨大影响。我们还提出了一种低成本的可感知环境温度的电压缩放技术,以减少由温度变化引起的不必要的能量开销。仿真结果表明,我们提出的方法将能耗降低了3倍以上。

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