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A general technique for deriving analytical structure of fuzzy controllers using arbitrary trapezoidal input fuzzy sets and Zadeh AND operator

机译:使用任意梯形输入模糊集和Zadeh AND算子推导模糊控制器的解析结构的通用技术

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Deriving the analytical structure of fuzzy controllers is very important as it creates a solid foundation for better understanding, insightful analysis, and more effective design of fuzzy control systems. We previously developed a technique for deriving the analytical structure of the fuzzy controllers that use Zadeh fuzzy AND operator and the symmetric, identical trapezoidal or triangular input fuzzy sets. Many fuzzy controllers use arbitrary trapezoidal/triangular input fuzzy sets that are asymmetric. At present, there exists no technique capable of deriving the analytical structure of these fuzzy controllers. Extending our original technique, we now present a novel method that can accomplish rigorously the structure derivation for any fuzzy controller, Mamdani type or TS type, that employs the arbitrary trapezoidal input fuzzy sets and Zadeh fuzzy AND operator. The new technique contains our original technique as a special case. Given the importance of PID control, we focus on Mamdani fuzzy PI and PD controllers in this paper and show in detail how to use the new technique for different configurations of the fuzzy PI/PD controllers. The controllers use two arbitrary trapezoidal fuzzy sets for each input variable, four arbitrary singleton output fuzzy sets, four fuzzy rules, Zadeh fuzzy AND operator, and the centroid defuzzifier. This configuration is more general and complicated than the Mamdani fuzzy PI/PD controllers in the current literature. It actually contains them as special cases. We call this configuration the generalized fuzzy PI/PD controller. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 26]
机译:推导模糊控制器的分析结构非常重要,因为它为更好地理解,深入分析和更有效地设计模糊控制系统奠定了坚实的基础。我们之前开发了一种技术,用于推导使用Zadeh模糊AND算子以及对称,相同梯形或三角形输入模糊集的模糊控制器的解析结构。许多模糊控制器使用不对称的任意梯形/三角形输入模糊集。目前,还没有能够推导这些模糊控制器的分析结构的技术。在扩展我们原始技术的基础上,我们现在提出了一种新颖的方法,该方法可以严格采用任意梯形输入模糊集和Zadeh模糊AND运算符,对任何Mamdani型或TS型模糊控制器进行结构推导。新技术包含我们作为特例的原始技术。考虑到PID控制的重要性,我们将重点放在Mamdani模糊PI和PD控制器上,并详细说明如何将新技术用于模糊PI / PD控制器的不同配置。控制器对每个输入变量使用两个任意的梯形模糊集,四个任意的单例输出模糊集,四个模糊规则,Zadeh模糊AND运算符和质心解模糊器。这种配置比当前文献中的Mamdani模糊PI / PD控制器更为通用和复杂。它实际上包含它们作为特殊情况。我们将此配置称为广义模糊PI / PD控制器。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:26]

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