复制品和原位定时监测器的电压自适应性能比较

Yutaka Masuda, J. Nagayama, Hirotaka Takeno, Yoshimasa Ogawa, Y. Momiyama, M. Hashimoto
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引用次数: 1

摘要

自适应电压缩放(AVS)是克服制造变异性、动态环境波动和老化的一种很有前途的方法。本文重点介绍了实现AVS所需的定时传感器,并比较了原位定时误差预测FF (TEP-FF)和关键路径复制在电压裕度方面可以降低多少。为了估计理想AVS的理论边界,本文提出了基于线性规划的最小供电电压分析,并通过研究下限与实际供电电压之间的差距,定量地讨论了电压自适应性能。实验结果表明,基于TEP-FF的AVS和基于副本的AVS在满足目标MTTF的情况下,分别实现了13.3%和8.9%的电源电压降低。带TEP-FF的AVS电压裕度为2.5 - 5.6%,而带副本的AVS电压裕度为7.2 - 9.9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparing Voltage Adaptation Performance between Replica and In-Situ Timing Monitors
Adaptive voltage scaling (AVS) is a promising approach to overcome manufacturing variability, dynamic environmental fluctuation, and aging. This paper focuses on timing sensors necessary for AVS implementation and compares in-situ timing error predictive FF (TEP-FF) and critical path replica in terms of how much voltage margin can be reduced. For estimating the theoretical bound of ideal AVS, this work proposes linear programming based minimum supply voltage analysis and discusses the voltage adaptation performance quantitatively by investigating the gap between the lower bound and actual supply voltages. Experimental results show that TEP-FF based AVS and replica based AVS achieve up to 13.3% and 8.9% supply voltage reduction, respectively while satisfying the target MTTF. AVS with TEP-FF tracks the theoretical bound with 2.5 to 5.6% voltage margin while AVS with replica needs 7.2 to 9.9% margin.
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