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Multiobjective Optimization for Electronic Circuit Design in Time and Frequency Domains

机译:时域和频域中电子电路设计的多目标优化

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摘要

The multiobjective optimization provides an extraordinary opportunity for the finest design of electronic circuits because it allows to mathematically balance contradictory requirements together with possible constraints. In this paper, an original and substantial improvement of an existing method for the multiobjective optimization known as GAM (Goal Attainment Method) is suggested. In our proposal, the GAM algorithm itself is combined with a procedure that automatically provides a set of parameters -- weights, coordinates of the reference point -- for which the method generates noninferior solutions uniformly spread over an appropriately selected part of the Pareto front. Moreover, the resulting set of obtained solutions is then presented in a suitable graphic form so that the solution representing the most satisfactory tradeoff can be easily chosen by the designer. Our system generates various types of plots that conveniently characterize results of up to four-dimensional problems. Technically, the procedures of the multiobjective optimization were created as a software add-on to the CIA (Circuit Interactive Analyzer) program. This way enabled us to utilize many powerful features of this program, including the sensitivity analyses in time and frequency domains. As a result, the system is also able to perform the multiobjective optimization in the time domain and even highly nonlinear circuits can be significantly improved by our program. As a demonstration of this feature, a multiobjective optimization of a C-class power amplifier in the time domain is thoroughly described in the paper. Further, a four-dimensional optimization of a video amplifier is demonstrated with an original graphic representation of the Pareto front, and also some comparison with the weighting method is done. As an example of improving noise properties, a multiobjective optimization of a low-noise amplifier is performed, and the results in the frequency domain are shown. Finally, a necessity of a use of metaheuristic methods at least with a combination with the classical ones is demonstrated.
机译:多目标优化为电子电路的最佳设计提供了绝佳的机会,因为它可以在数学上平衡矛盾的要求和可能的约束。本文提出了对现有的多目标优化方法GAM(目标达成方法)的原始和实质性改进。在我们的建议中,GAM算法本身与自动提供一组参数的过程相结合-权重,参考点的坐标-为此,该方法将生成均匀分布在帕累托前沿适当选择部分上的非劣解。而且,然后以合适的图形形式呈现所获得的解决方案的结果集,以便设计者可以容易地选择代表最令人满意的权衡的解决方案。我们的系统生成各种类型的图,这些图可以方便地描述多达四维问题的结果。从技术上讲,多目标优化的过程是作为CIA(电路交互式分析器)程序的软件附件创建的。这种方式使我们能够利用该程序的许多强大功能,包括时域和频域的灵敏度分析。结果,该系统还能够在时域中执行多目标优化,甚至高度非线性的电路也可以通过我们的程序得到显着改善。为了对此功能进行演示,本文对C级功率放大器在时域中的多目标优化进行了全面描述。此外,用帕累托前沿的原始图形表示来演示视频放大器的四维优化,并且还完成了与加权方法的一些比较。作为改善噪声特性的一个示例,对低噪声放大器进行了多目标优化,并显示了频域中的结果。最后,论证了至少结合经典启发式方法使用元启发式方法的必要性。

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