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基于精英池演化算法的数字电路在片演化方法

Elitist Pool Evolutionary Algorithm for On-Line Evolution of Digital Circuits

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【作者】 何国良李元香史忠植

【Author】 HE Guo-Liang1),2)LI Yuan-Xiang1),2)SHI Zhong-Zhi3)1)(State Key Laboratory of Software Engineering,Wuhan University,Wuhan 430072)2)(College of Computer Science,Wuhan University,Wuhan 430072)3)(Key Laboratory of Intelligent Information Processing,Institute of Computing Technology,Chinese Academy of Sciences,Beijing 100190)

【机构】 武汉大学软件工程国家重点实验室武汉大学计算机学院中国科学院计算技术研究所智能信息处理重点实验室

【摘要】 20世纪末演化硬件技术的提出为实现硬件系统的自适应与智能化等特征提供了一种可行的新技术,现阶段电路进化是演化硬件研究的热点之一.该文引入人工经验与规则,提出一种扩展矩阵编码法,保护具有较优结构的电路个体不易被淘汰;其次,基于多目标和局部寻优技术,结合子电路杂交与单元重要性的自适应变异策略,提出了一种设计数字电路的精英池演化算法,并在可编程逻辑器件上实现电路的自主动态重构与评价等演化过程.

【Abstract】 Evolvable hardware(EHW)refers to reconfiguration hardware design with natural algorithms,which could change its architecture and behavior dynamically and autonomously by interacting with its environment.At present,the auto-design of electronic and analog circuits is one of hot issues in the field of EHW.In this paper,an elitist pool evolutionary algorithm(EPEA)with some evolution techniques is proposed to optimize the evolutionary design of logic circuits efficiently.First,an extended matrix encoding method is proposed based on human experiences and principles to increase the fitness value of some evolved circuits quickly.This representation can be expected to reflect the potential performance of circuits and avoid deleting some inferior circuits with a good developing potential during the evolution.Then,a novel sub-circuit crossover operator and an adaptive mutation strategy are introduced to improve design efficiency in terms of the techniques of the multi-objective and local searching optimization.Moreover,a framework of on-line evolution is employed to implement EPEA on field-programmable gate array(FPGA).Experiments show that the proposed methods can design digital circuits automatically and efficiently.

【基金】 武汉大学自主科研项目基金(6082019);国家自然科学基金(60773009,60775035);国家“八六三”高技术研究发展计划项目基金(2007AA01Z290,2007AA01Z132);国家“九七三”重点基础研究发展规划项目基金(2007CB311004)资助~~
  • 【文献出处】 计算机学报 ,Chinese Journal of Computers , 编辑部邮箱 ,2010年02期
  • 【分类号】TN79
  • 【被引频次】15
  • 【下载频次】274
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