A faster 2D technique for the design of combinational digital circuits using Genetic Algorithm

C. K. Vijayakumari, P. Mythili
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引用次数: 8

Abstract

Combinational digital circuits can be evolved automatically using Genetic Algorithms (GA). Until recently this technique used linear chromosomes and and one dimensional crossover and mutation operators. In this paper, a new method for representing combinational digital circuits as 2 Dimensional (2D) chromosomes and suitable 2D crossover and mutation techniques has been proposed. By using this method, the convergence speed of GA can be increased significantly compared to the conventional methods. Moreover, the 2D representation and crossover operation provides the designer with better visualization of the evolved circuits. In addition to this, a technique to display automatically the evolved circuits has been developed with the help of MATLAB.
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一种利用遗传算法设计组合数字电路的快速二维技术
组合数字电路可以使用遗传算法(GA)自动进化。直到最近,这项技术还使用线性染色体和一维交叉和突变算子。本文提出了一种将组合数字电路表示为二维染色体的新方法以及相应的二维交叉和突变技术。采用该方法,遗传算法的收敛速度比传统方法有明显提高。此外,二维表示和交叉操作为设计人员提供了更好的可视化进化电路。此外,还利用MATLAB开发了一种自动显示演化电路的技术。
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