Analytical structure of a two-input two-output fuzzy controller

H. Ying
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引用次数: 3

Abstract

This study investigates the analytical structure of a two-input two-output fuzzy controller which employs triangular-shaped input fuzzy sets, trapezoidal-shaped output fuzzy sets, linear control rules, probabilistic AND fuzzy logic, Lukasiewcz OR fuzzy logic, Mamdani's minimum inference method and a center of gravity defuzzification algorithm. The structure of the fuzzy controller is proven to be the sum of global 4D multilevel relays and local nonlinear proportional-integral (PI) controllers with variable gains continuously changing with process outputs. The global multilevel relays play a major role in determining control action of the fuzzy controller while the local PI controllers locally fine tune the control action of the relays. As the number of control rules approaches /spl infin/, each global 4D multilevel relay becomes the sum of two global linear PI controllers while the local PI controllers disappear.<>
一种双输入双输出模糊控制器的解析结构
本文研究了一种采用三角形输入模糊集、梯形输出模糊集、线性控制规则、概率模糊逻辑、Lukasiewcz OR模糊逻辑、Mamdani最小推理法和重心去模糊化算法的双输入双输出模糊控制器的解析结构。证明了模糊控制器的结构是全局四维多电平继电器和随过程输出连续变化的局部非线性比例积分(PI)控制器的总和。全局多电平继电器对模糊控制器的控制动作起主要作用,局部PI控制器对继电器的控制动作进行局部微调。当控制规则数趋近于/spl / /时,每个全局4D多电平继电器成为两个全局线性PI控制器的和,而局部PI控制器消失
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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