Using discrete-variable optimization for CMOS spiral inductor design

P. Pereira, M. Fino, F. Coito
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引用次数: 11

Abstract

In this paper a discrete-variable optimization methodology for the automatic design of CMOS integrated spiral inductors is introduced. The use of discrete variable optimization procedure offers the designer the possibility for exploring the design space exclusively in those points available for the technology under use. Further user-defined constraints between layout parameters may also be incorporated as a way of taking into account design heuristics. A comparison between using discrete-variable optimization and a continuous optimization procedure followed by a discretization of the results is presented, where the benefits of the proposed methodology are presented. An application using the proposed methodology was developed in Matlab and the optimization toolbox is used. For the sake of simplicity the π-model has been used for characterizing the inductor. The validity of the design results is checked against circuit simulation with ASITIC.
用离散变量优化方法进行CMOS螺旋电感的设计
本文介绍了一种用于CMOS集成螺旋电感器自动设计的离散变量优化方法。离散变量优化程序的使用为设计者提供了探索设计空间的可能性,这些空间专门适用于正在使用的技术。布局参数之间进一步的用户定义约束也可以作为考虑设计启发式的一种方式。使用离散变量优化和连续优化过程之间的比较,随后的结果离散化,其中提出的方法的好处被提出。在Matlab中开发了一个应用程序,并使用了优化工具箱。为简便起见,我们采用π模型来表示电感。通过asic电路仿真验证了设计结果的有效性。
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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