模拟设计优化的自动化成本函数公式

L. Labrak, T. Tixier, Y. Fellah, N. Abouchi
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引用次数: 2

摘要

本文提出了一种提高模拟设计自动化和设计复用的新方法。将自顶向下约束驱动方法应用于复杂模拟系统的设计。该方法将设计问题表述为多目标优化问题(MOOP)。由于构建专用于模拟电路的优化问题所需的知识仍然超出了设计人员的能力范围,我们的方法提出了一种新的有效方法来捕获设计性能指标,从而允许自动优化问题的制定。仅基于性能规格(例如,80db增益)和设计人员的偏好(即,最大化或最小化给定的性能指标),构建了一个多目标优化问题(MOOP)。给出了利用基于模式搜索的混合算法和基于共轭梯度的混合算法求解CMOS两级运放的MOOP的实例。
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Automated cost function formulation for analog design optimization
In this article, we present a new method to improve analog design automation and design reuse. A top-down constraint driven methodology is applied to design complex analog system. This approach formulates the design problem as a multi objective optimization problem (MOOP). As the knowledge needed to build an optimization problem dedicated to an analog circuit is still out of reach of designers, our approach propose a new efficient way to capture design performance metrics allowing an automatic optimization problem formulation. Based only on performance specifications (e.g., gain of 80 dB) and preferences of the designers (i.e, maximize or minimize a given performance metric), a multi objective optimisation problem (MOOP) is built. An example using hybrid algorithm consisting in coupling a pattern search based algorithm and a conjugate gradient based one to solve the MOOP for a CMOS two stage opamp is given.
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