Adjoint transient sensitivity computation in piecewise linear simulation

Tuyen V. Nguyen, A. Devgan, Ognen J. Nastov
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引用次数: 12

Abstract

This paper presents a general method for computing transient sensitivities using the adjoint method in event driven simulation algorithms that employ piecewise linear device models. Sensitivity information provides first order assessment of circuit variability with respect to design variables and parasitics. This information is particularly useful for noise stability analysis, timing rule generation, and circuit optimization. Techniques for incorporating adjoint transient sensitivity into ACES, a general piecewise linear simulator, are presented. Sensitivity computation includes algorithms to handle instantaneous charge redistribution due to the discontinuous conductance models of the piecewise linear elements, and the loss of simulation accuracy due to the non-monotonous responses in autonomous adjoint circuits with non-zero initial conditions. Results demonstrate the efficiency and accuracy of the proposed techniques.
分段线性模拟中伴随瞬态灵敏度的计算
本文提出了在采用分段线性器件模型的事件驱动仿真算法中,利用伴随法计算瞬态灵敏度的一般方法。灵敏度信息提供了有关设计变量和寄生的电路可变性的一阶评估。这些信息对于噪声稳定性分析、定时规则生成和电路优化特别有用。介绍了将伴随瞬态灵敏度引入通用分段线性仿真器ACES的技术。灵敏度计算包括处理分段线性元件电导模型不连续导致的瞬时电荷重分布的算法,以及非零初始条件下自治伴随电路非单调响应导致的仿真精度损失的算法。实验结果证明了该方法的有效性和准确性。
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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