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Optimum design of fuzzy controller using hybrid ant lion optimizer and Jaya algorithm

机译:使用混合蚂蚁狮子优化器和Jaya算法的模糊控制器的优化设计

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摘要

Fuzzy logic controller is the most common and versatile control algorithm in the structural motion control. In most cases, the formulation of the fuzzy controller is based on the human knowledge and expert so the membership functions and the rule base are formulated by trials and errors. In recent years, there is an increasing interest to optimize the fuzzy logic controller with different metaheuristics and nature inspired approaches. This paper focuses on the optimization of a fuzzy controller applied to the seismically excited nonlinear buildings. In the majority of cases, this problem is formulated based on the linear behavior of the structure, however in this paper, objective functions and the performance criteria are considered with respect to the nonlinear responses of the structures. The optimization algorithm is based on the implementation of ant lion optimizer and Jaya algorithm as a hybrid method. The new method is utilized to design a fuzzy controller for two benchmark buildings with nonlinear behavior. The performance of the hybrid method is compared with various classical and advanced optimization algorithms.
机译:模糊逻辑控制器是结构运动控制中最常见和多功能的控制算法。在大多数情况下,模糊控制器的制定基于人类知识和专家,因此成员函数和规则基础由试验和错误制定。近年来,利益越来越兴趣,优化具有不同的殖民学和自然灵感方法的模糊逻辑控制器。本文重点介绍应用于施加到地震兴奋的非线性建筑物的模糊控制器。在大多数情况下,该问题基于结构的线性行为配制,然而,在本文中,关于结构的非线性响应,考虑客观功能和性能标准。优化算法基于实现蚂蚁优化器和Jaya算法的混合方法。新方法用于为具有非线性行为的两个基准建筑设计模糊控制器。将混合方法的性能与各种经典和高级优化算法进行比较。

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