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Impact of operating points on DVFS power management

机译:工作点对DVFS电源管理的影响

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Dynamic voltage and frequency scaling (DVFS) techniques are commonly used for energy management in modern systems to reduce processor clock frequency and corresponding voltages. This reduces overall power and energy utilization. However the power levels associated with corresponding frequencies play an important role in effective DVFS based strategies, as in some cases energy utilization can actually be increased. We present a DVFS based power strategy dedicated to video processing with an application to an H.264 decoder. We analyze the effectiveness of this strategy using an ARM1176JZF-S hardware platform and a QEMU based virtual platform configured with models of ARM processors. Our results show that we can gain up to 57 % by choosing correct adaptation constraints. However, results also show that the efficiency of a DVFS strategy depends upon the characteristics of operating points (frequency/voltage couples). In particular, attention must be paid to the power level gap between consecutive frequencies, to compensate the increase in execution time resulting from frequency downscaling.
机译:动态电压和频率缩放(DVFS)技术通常用于现代系统中的能量管理,以降低处理器时钟频率和相应的电压。这降低了整体功率和能量利用率。但是,与相应频率相关的功率水平在有效的基于DVFS的策略中起着重要作用,因为在某些情况下,实际上可以提高能量利用率。我们提出了一种基于DVFS的电源策略,专门用于视频处理以及H.264解码器的应用。我们使用ARM1176JZF-S硬件平台和配置了ARM处理器模型的基于QEMU的虚拟平台来分析该策略的有效性。我们的结果表明,通过选择正确的适应性约束,我们可以获得多达57%的收益。但是,结果还表明,DVFS策略的效率取决于工作点(频率/电压耦合)的特性。特别是,必须注意连续频率之间的功率电平差距,以补偿由于频率降低而导致的执行时间的增加。 *

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