Towards compositional coevolution in evolutionary circuit design

Michaela Sikulová, Gergely Komjathy, L. Sekanina
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引用次数: 5

Abstract

A divide and conquer approach is one of the methods introduced to get over the scalability problem of the evolutionary circuit design. A complex circuit is decomposed into modules which are evolved separately and without any interaction. The benefits are in reducing the search space and accelerating the evaluation of candidate circuits. In this paper, the evolution of non-interacting modules is replaced by a coevolutionary algorithm, in which the fitness of a module depends on fitness values of other modules, i.e. the modules are adapted to work together. The proposed method is embedded into Cartesian genetic programming (CGP). The coevolutionary approach was evaluated in the design of a switching image filter which was decomposed into the filtering module and detector module. The filters evolved using the proposed coevolutionary method show a higher quality of filtering in comparison with filters utilizing independently evolved modules. Furthermore, the whole design process was accelerated 1.31 times in comparison with the standard CGP.
论进化电路设计中的元件协同进化
分治法是解决进化电路设计中可扩展性问题的一种方法。一个复杂的电路被分解成各个模块,这些模块各自独立发展,互不影响。这样做的好处是减少了搜索空间,加快了候选电路的评估。本文将不相互作用的模块的进化替换为协同进化算法,其中一个模块的适应度取决于其他模块的适应度值,即模块适应一起工作。该方法被嵌入到笛卡尔遗传规划(CGP)中。在一种开关图像滤波器的设计中对协同进化方法进行了评价,该滤波器分为滤波模块和检测器模块。与使用独立进化模块的滤波器相比,使用所提出的协同进化方法进化的滤波器显示出更高的滤波质量。此外,整个设计过程比标准CGP加快了1.31倍。
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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