论二进制乘数景观的性质

Vesselin K. Vassilev, J. Miller, T. Fogarty
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引用次数: 30

摘要

两位乘法器是一种简单的电子电路,小到可以进化,对许多数字系统的实现非常有用。本文在一个理想的现场可编程门阵列模型上研究了由电路进化产生的两位乘法器适应度景观的结构。二比特乘法器的前景颇具挑战性。研究这些景观的困难源于基因型表征,它允许我们进化一系列逻辑细胞的功能和连通性。在这里,基因型只是由两个完全不同的字母定义的字符串。这使得对相应景观的研究更加复杂。我们概述了一个模型,用于研究两位乘法器的景观,并估计从这些景观的傅里叶变换得出的振幅。我们表明,两位乘数景观可以根据子空间来表征,由基因型分区之间的相互作用决定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the nature of two-bit multiplier landscapes
The two-bit multiplier is a simple electronic circuit, small enough to be evolvable, and practically useful for the implementation of many digital systems. In this paper we study the structure of the two-bit multiplier fitness landscapes generated by circuit evolution on an idealised model of a field-programmable gate array. The two-bit multiplier landscapes are challenging. The difficulty in studying these landscapes stems from the genotype representation which allows us to evolve the functionality and connectivity of an array of logic cells. Here, the genotypes are simply strings defined over two completely different alphabets. This makes the study of the corresponding landscapes much more involved. We outline a model for studying the two-bit multiplier landscapes and estimate the amplitudes derived from the Fourier transform of these landscape. We show that the two-bit multiplier landscapes can be characterised in terms of subspaces, determined by the interactions between the genotype partitions.
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