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Multivariate normal distribution based statistical timing analysis using global projection and local expansion

机译:基于多变量的正态分布基于全局投影和本地扩展的统计时序分析

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This paper employs general multivariate normal distribution to develop a new efficient statistical timing analysis methodology. The paper presents the theoretical framework of the statistical timing analysis technique by introducing two strategies: the global projection and the local expansion rules. By using the global projection rule, the large problem size occurring due to the delay correlations among a large number of gates across a chip caused by widely varying global sources, is sufficiently reduced. By using the local expansion rule, the arrival time correlations caused by re-convergent paths in circuits are efficiently evaluated. The experimental results show that the computed mean and the standard deviation values of the maximum circuit delay estimated by the proposed method have average errors of 0.2% and 2.9%, respectively.
机译:本文采用通用多元正态分布,开发新的有效统计时序分析方法。本文介绍了统计时序分析技术的理论框架通过引入两种策略:全球预测和本地扩展规则。通过使用全局投影规则,由于通过广泛改变的全球源引起的芯片中大量栅极之间的延迟相关性而发生的大问题大小。通过使用本地扩展规则,有效地评估由电路中的重复频道引起的到达时间相关性。实验结果表明,所提出的方法估计的最大电路延迟的计算平均值和标准偏差值分别具有0.2%和2.9%的平均误差。

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