变异性下概率双v值泄漏优化

A. Davoodi, Ankur Srivastava
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引用次数: 17

摘要

在本文中,我们通过有效的双阈值电压分配来解决日益增长的泄漏变异性问题。我们提出了一种基于概率动态规划的方法来分配双阈值电压,使得在给定的违反时序约束的概率(时序屈服)下,总体期望泄漏最小化。我们的策略的关键特征是两个修剪标准,随机识别帕累托最优解和修剪次最优解。与其他可变性驱动的双阈值电压分配方案相比,我们的方法的主要优点是1)考虑由于共同变化源引起的相关性,2)提供可控制的运行时间,这在所提出的策略之一中可与确定性算法相比较,以及3)同时基于所有信号路径执行优化,而不是一次执行一个路径。实验结果表明,在期望泄漏和违反时间约束的概率方面,所提出的概率方案明显优于同类的确定性双阈值电压分配方案
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Probabilistic dual-Vth leakage optimization under variability
In this paper we address the problem of growing leakage variability through effective dual-threshold voltage assignment. We propose a probabilistic dynamic programming-based method to assign dual-threshold voltages such that the overall expected leakage is minimized under a given probability of violating the timing constraint (timing yield). The key characteristics of our strategy are two pruning criteria that stochastically identify pareto-optimal solutions and prune the sub-optimal ones. Compared to other variability-driven dual-threshold voltage assignment schemes, the main advantages of our approach are 1) considering correlations due to common sources of variation, 2) providing controllable runtime, which in one of the proposed strategies is comparable to the deterministic algorithm, and 3) performing optimization based on all the signal paths simultaneously, as opposed to one path at a time. Experimental results indicate that the proposed probabilistic scheme is significantly better than a comparable deterministic dual-threshold voltage assignment, both in terms of expected leakage and the probability of violating the timing constraint
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