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FPGA implementation of an adaptive genetic algorithm

机译:FPGA实现自适应遗传算法

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In this paper, the adaptive genetic algorithm (AGA) is designed use Field Programmable Gate Array (FPGA) based on modular design. First, the FPGA's internal structure and the basic design process are introduced, to Altera Cyclone III series chips as an example. Secondly algorithm of hardware and software environment is introduced. The software is Altera's integrated development software, the Quartus II, development board is SOC/family experiment KX_7C series of experimental development system. Then the AGA is divided into some modules, such as fitness calculation module, control module, population initialization module, selection module, crossover and mutation module, data channel selection module, random number generator module, and memory module, etc. Finally the top-level module is downloaded to the Altera Cyclone III-EP3C40Q240C8N chip, and program is run out and debugged on the development board. Finally we compared the results of the hardware and software running.1
机译:本文基于模块化设计设计了自适应遗传算法(AGA)使用现场可编程门阵列(FPGA)。首先,介绍了FPGA的内部结构和基本设计过程,以Altera Cyclone III系列芯片为例。其次介绍了硬件和软件环境的算法。该软件是Altera的集成开发软件,Quartus II,开发板是SoC / Family实验KX_7C系列的实验开发系统。然后将AGA分为一些模块,例如健身计算模块,控制模块,群体初始化模块,选择模块,交叉和突变模块,数据通道选择模块,随机数发生器模块和内存模块等。最后是顶部 - LEVEL模块已下载到Altera Cyclone III-EP3C40Q240C8N芯片,程序耗尽并在开发板上调试。最后,我们比较了运行的硬件和软件的结果

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