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Tracking energy efficiency of near-threshold design using process variation control techniques

机译:使用过程变化控制技术跟踪接近阈值设计的能效

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Near-threshold operation offers energy efficiency at the expense of increased performance variability. Adaptive Voltage/Frequency Scaling (AVS/AFS) techniques can be used to mitigate performance variability, yet their impact on energy efficiency has not been characterized. This paper defines different system scenarios for near-threshold design and assesses the impact of AVS/AFS on energy efficiency for each case. It is found that AVS techniques are more effective for tracking energy efficiency in the case of low leakage systems, while AFS techniques provide better tracking in the high leakage case. Moreover, it is found that for near-threshold operating points chosen at relatively high supply voltages, both AVS and AFS show similar behavior regarding energy efficiency tracking. The analysis is validated using circuit level simulation of a logic data path on a 45 nm SOI process.
机译:近阈值操作以提高的性能可变性为代价提供了能效。自适应电压/频率缩放(AVS / AFS)技术可用于减轻性能变化,但尚未确定其对能效的影响。本文定义了用于近阈值设计的不同系统方案,并针对每种情况评估了AVS / AFS对能效的影响。发现在低泄漏系统的情况下,AVS技术对于跟踪能源效率更为有效,而在高泄漏情况下,AFS技术可以提供更好的跟踪。此外,发现对于在相对较高的电源电压下选择的接近阈值的工作点,AVS和AFS在能量效率跟踪方面均表现出相似的行为。该分析通过在45 nm SOI工艺上对逻辑数据路径进行电路级仿真来验证。

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