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Genetic algorithm based fully automated and adaptive fuzzy logic controller

机译:基于遗传算法的全自动自适应模糊逻辑控制器

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In this paper, an integration of fuzzy logic controller (FLC) and genetic algorithm (GA) is developed with a view to make the design process fully automatic, without requiring any human expert knowledge. Here, GA is used in two stages simultaneously: the first stage involves selection and definition of fuzzy rules, while the second stage performs an optimal selection of membership function types associated to the fuzzy rules. It is argued that the performance of an FLC greatly depends on the fuzzy rules as well as the types of membership functions associated to the fuzzy sets. Thus, the aforementioned two-stage GA is a viable solution for designing an efficient FLC system. In order to evaluate performance, the proposed approach is applied to a well-known benchmarking controller design task, “backing up a truck reversing system”. The simulation result exhibits superior performance and thereby validates the proposed integrated GA and FLC system.
机译:本文旨在将模糊逻辑控制器(FLC)与遗传算法(GA)集成在一起,以使设计过程完全自动化,而无需任何专业知识。在这里,GA同时用于两个阶段:第一阶段涉及模糊规则的选择和定义,而第二阶段执行与模糊规则相关的隶属函数类型的最佳选择。有人认为,FLC的性能很大程度上取决于模糊规则以及与模糊集相关的隶属函数的类型。因此,上述两级遗传算法是设计高效FLC系统的可行解决方案。为了评估性能,建议的方法应用于著名的基准控制器设计任务“备份卡车倒车系统”。仿真结果显示出优异的性能,从而验证了所提出的集成GA和FLC系统。

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