基于伴随灵敏度分析的模拟电路优化方法

Deepak Joshi, S. Dash, R. Bhattacharjee, G. Trivedi
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引用次数: 1

摘要

模拟电路设计是VLSI芯片设计过程中的一个重要方面。对于模拟电路的设计,电子设计自动化工具需要配备最先进的高效电路分析和优化技术。本文提出了一种利用伴随电路分析方法优化模拟电路(增益、带宽和摆率)的新方法。该方法利用原电(或电子)电路的线性化电路,构建原电(或电子)电路的伴随网络,并将MOS晶体管替换为其小信号模型。利用线性化电路及其伴随网络(电路)和最陡下降法对模拟电路优化需要分析的目标函数进行评估,在设计空间中找到下一组优化电路的设计参数。在电路优化过程中,采用Barzilai和Borwein方法寻找设计参数矢量的方向。本文设计了一个180nm级联放大器的基本电路,以验证所提方法的正确性。为了证明该方法的有效性,还设计了一个两级运算放大器电路,在各种设计条件和约束下进行增益优化。利用本文方法计算的优化参数设计的电路解与使用Mentor图形工具Pyxis (Eldo)设计的级联放大器和两级运算放大器电路解相匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A method of analog circuit optimization using adjoint sensitivity analysis
Analog circuit designing is an important aspect of VLSI chip design process. For the designing of analog circuits, electronic design automation tools need to be equipped with state-of-the-art efficient circuit analysis and optimization techniques. In this paper, a novel approach to optimize analog circuits (for gain, bandwidth and slew rate) is proposed using adjoint circuit analysis method. In this method an adjoint network of the original electrical (or electronic) circuit is constructed by using linearized circuit of the original electrical network in which MOS transistors are replaced by their small signal model. The objective function need to be analyzed for the optimization of analog circuit is evaluated using linearized circuit and its adjoint network (circuit) along with steepest descent method to find the next set of design parameters to optimize circuit in the design space. Barzilai and Borwein method is used to find the direction of design parameter vector during circuit optimization process. In this paper a basic cascode amplifier circuit has been designed at 180nm technology to prove the correctness of proposed method. To prove the effectiveness of the proposed approach, a two-stage operational amplifier circuit is also designed for gain optimization subject to a variety of design conditions and constraints. The solution of these circuits, designed with the optimized parameters calculated using our proposed method, matches with the solution of cascode amplifier and two-stage operational amplifier circuits designed using Mentor Graphics tool Pyxis (Eldo).
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