利用遗传算法进化正弦振荡器

V. Aggarwal
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引用次数: 22

摘要

本文采用遗传算法合成了单opamp正弦振荡器。其动机是使用不同的主动构建块(ABBs)来发展振荡器的新拓扑,并自动研究其性质。通过分析电路的传递函数,提出了一种新的适应度评估方案,并提出了一种从拉马克搜索中得到启发的学习方案。测试了一种新的针对特定问题的交叉算子,并对不同的交叉算子进行了比较研究。将遗传算法的结果与已有的结果进行比较,发现遗传算法重新发现了所有12种经典的基于单峰的sfo。提出了一些新的、有趣的基于opamp、OTRA和DDCC的振荡器拓扑结构。它清楚地解释了如何将本研究扩展到其他抗体或多个抗体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolving sinusoidal oscillators using genetic algorithms
In the present paper, single-opamp sinusoidal oscillators are synthesized using genetic algorithms. The motivation is to evolve new topologies of oscillators using different active building blocks (ABBs) and automate the study of their properties. A new fitness evaluation scheme by analyzing transfer function of the circuits is used and a learning scheme loosely inspired from Lamarckian search is also suggested. A new problem specific crossover operator is tested and a comparative study of different crossover operators is done. On comparison of the results of the GA with existing results, it was found that the GA rediscovered all the twelve canonic singleopamp based SFOs. Some new interesting opamp, OTRA and DDCC based topologies of oscillators are also presented. It is clearly explained how this study can be extended to other ABBs or multiple ABBs.
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