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Automatic Transfer Function Improvement based on Genetic Algorithm

机译:基于遗传算法的自动传递函数改进

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This paper presents the automatic transfer function improvement based on the genetic algorithm for searching the optimal transfer function. A traditional genetic algorithm is modified to perform the searching process. The proposed chromosome design is presented in the form of 15-bit supported the resistance and inductance. Transfer function is used to design and control the systems. The optimal fitness function is used for the objective function of system to optimize the transfer function. Experiment results show that the second order of automatic transfer function performed by the genetic algorithm can achieve more accuracy than the traditional first order transfer function process. By the process improvement using the genetic algorithm, the time is used for searching transfer function with the chromosome design under the optimal fitness function by the genetic algorithm is approximately 13.35 seconds.
机译:本文介绍了基于搜索最优传递函数的遗传算法的自动传递函数改进。 修改了传统的遗传算法以执行搜索过程。 所提出的染色体设计以15位支持的电阻和电感的形式提出。 传输功能用于设计和控制系统。 最佳的健身功能用于系统的目标函数,以优化传递函数。 实验结果表明,遗传算法执行的自动传递函数的二阶可以实现比传统的一阶传递函数过程更准确。 通过使用遗传算法的过程改进,时间用于通过遗传算法在最佳的健身功能下与染色体设计进行传递函数的时间约为13.35秒。

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