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Designing Electronic Circuits by Means of Gene Expression Programming II

机译:通过基因表达程序设计电子电路II

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摘要

A major bottleneck in the evolutionary design of electronic circuits is the problem of scale. This refers to the very fast growth of the number of gates, used in the target circuit, as the number of inputs of the evolved logic function increases. Another related obstacle is the time required to calculate the fitness value of a circuit. In this paper, We propose a new means (Gene Expression Programming) for designing electronic circuits and introduces the encoding of the circuit as a chromosome, the genetic operators and the fitness function. From the case studies show this means has proved to be efficient to the electronic circuit and the evolution speed is fast. The experiments results show that we have attained the better results.
机译:电子电路的进化设计中的主要瓶颈是规模问题。这指的是目标电路中使用的门的数量随着所发展的逻辑函数的输入数量的增加而快速增长。另一个相关的障碍是计算电路适应度值所需的时间。在本文中,我们提出了一种用于设计电子电路的新方法(基因表达编程),并介绍了该电路作为染色体的编码,遗传算子和适应度函数。通过案例研究表明,这种方法已被证明对电子电路有效,并且演进速度很快。实验结果表明,我们取得了较好的结果。

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