Switching activity analysis using Boolean approximation method

T. Uchino, F. Minami, T. Mitsuhashi, N. Goto
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引用次数: 43

Abstract

This paper presents a novel algorithm to estimate the signal probability and switching activity at all nodes in a combinational logic circuit under a zero-delay model without constructing global BDDs. By using Taylor expansion technique, the first-order signal correlation effects due to reconvergent fan-out nodes are taken into account. High accuracy is achieved by considering the dependency of the signal probability and switching activity on each primary input. High speed is also achieved by using the incremental approach for probability calculation. Our approach is able to handle large circuits, since it does not need to construct global BDDs for the probability calculation. The analysis of the time complexity and the experimental results show the running time of our approach to be about 100 times shorter than that of the most accurate approach previously proposed and that our approach has comparable accuracy. The error of the total power estimation is about 0.5% on average.
用布尔逼近法分析开关活动
本文提出了一种在零延迟模型下估计组合逻辑电路中所有节点的信号概率和交换活动的新算法,而无需构造全局bdd。采用泰勒展开技术,考虑了再收敛扇出节点引起的一阶信号相关效应。通过考虑信号概率和开关活动对每个主输入的依赖关系,获得了较高的精度。采用增量方法进行概率计算,也能达到较高的速度。我们的方法能够处理大型电路,因为它不需要为概率计算构建全局bdd。时间复杂度分析和实验结果表明,该方法的运行时间比目前最精确的方法缩短了约100倍,具有相当的精度。总功率估计误差平均在0.5%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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