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首页> 外文期刊>Research journal of applied science, engineering and technology >Genetic Algorithm Tuned Fuzzy Logic Controller for Rotary Inverted Pendulum
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Genetic Algorithm Tuned Fuzzy Logic Controller for Rotary Inverted Pendulum

机译:旋转倒立的遗传算法优化模糊逻辑控制器

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摘要

In this study, a Genetic Algorithm (GA) is proposed to search for the optimal input membership functions of the fuzzy logic controller. With the optimal membership function, the fuzzy logic controller can efficiently control a rotary inverted pendulum. The advantage of the proposed method is tuning the parameters of membership functions automatically rather than tuning them manually. In genetic algorithm, these parameters are converted to a chromosome which is encoded into a binary string. Because the membership functions are symmetric to zero, the length of each chromosome could be reduced by half. The computation time will also be shorter with the shorter chromosomes. Moreover, the roulette wheel selection is chosen as reproduction operator and one-point crossover operator and random mutation operator are also used. After the genetic algorithm completes searching for optimal parameters, the optimal membership function will be introduced to the fuzzy logic controller. Finally, simulation results show that the proposed GA-tuned fuzzy logic controller is effective for the rotary inverted pendulum control system with robust stabilization capability.
机译:在这项研究中,提出了一种遗传算法(GA)来搜索模糊逻辑控制器的最佳输入隶属函数。通过最佳隶属度函数,模糊逻辑控制器可以有效地控制旋转倒立摆。该方法的优点是自动调整隶属函数的参数,而不是手动调整。在遗传算法中,这些参数被转换为染色体,并被编码为二进制字符串。由于隶属函数对称于零,因此每个染色体的长度可以减少一半。染色体越短,计算时间也越短。此外,选择轮盘赌轮作为再现算子,并且还使用单点交叉算子和随机变异算子。遗传算法完成最优参数的搜索后,最优隶属度函数将被引入到模糊逻辑控制器中。最后,仿真结果表明,所提出的GA调谐模糊逻辑控制器对于具有稳定能力的旋转倒立摆控制系统是有效的。

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