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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Automated Robust Design and Optimization of Integrated Circuits by Means of Penalty Functions
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Automated Robust Design and Optimization of Integrated Circuits by Means of Penalty Functions

机译:罚函数法自动鲁棒设计和集成电路优化

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摘要

The ever-shorter time-to-market calls for efficient robust IC design algorithms. Robust circuits satisfy all design requirements across a range of operating conditions and manufacturing process variation. In the paper we propose an automated robust IC design and optimization process derived from the design algorithms utilized manually by experienced analog IC designers. We achieve this by transforming the robust design and optimization problem into a constrained optimization problem using tradeoff planes and penalty functions. We illustrate the method on a robust differential amplifier design problem. Circuits resulting from several different optimization runs show that a computer can not only improve existing circuit designs but it can also size a circuit with very little initial knowledge. The resulting circuits have comparable or even superior performance to humanly designed circuits. The method could easily take advantage of parallel processing but is still efficient enough to be run on a single computer.
机译:越来越短的上市时间要求高效,强大的IC设计算法。坚固的电路可满足一系列工作条件和制造工艺变化的所有设计要求。在本文中,我们提出了一种自动健壮的IC设计和优化过程,该过程源自经验丰富的模拟IC设计人员手动使用的设计算法。我们通过使用权衡平面和惩罚函数将鲁棒性设计和优化问题转换为约束优化问题来实现这一目标。我们说明了一种针对鲁棒差分放大器设计问题的方法。通过几次不同的优化运行得出的电路表明,计算机不仅可以改善现有电路设计,而且还可以在很少了解初始知识的情况下确定电路大小。所得电路具有与人工设计的电路相当甚至更好的性能。该方法可以轻松利用并行处理的优势,但是仍然足够高效,可以在单台计算机上运行。

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