A Novel Approach to a Recurrent Fuzzy Logic Controller Design Applied to Systems with Multiple Disturbances

José Cruz Múñoz-Esparza, J. Jaime-Leal
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引用次数: 0

Abstract

In any process, control plays a vital role in the quality of the product. The influence of a controller's operation on a process is linked to its success or failure. However, using a controller that works properly presents several obstacles, such as non-linearity or the lack of a model that adequately represents the behavior of the process. Different approaches have been devised and studied to deal with these difficulties. One of the most promising and widely applied and studied in recent years is fuzzy control due to its ability to operate systems with no precise plant model. Herein, a set of rules and a fuzzy control structure are proposed, with fewer design parameters than a conventional fuzzy controller and better performance. The global stochastic optimization tool Differential Evolution is used to obtain the design parameters of the proposed fuzzy controller.
应用于多重干扰系统的循环模糊逻辑控制器设计新方法
在任何过程中,控制都对产品质量起着至关重要的作用。控制器的运行对工艺的影响关系到工艺的成败。然而,使用能正常工作的控制器会遇到一些障碍,如非线性或缺乏能充分反映过程行为的模型。为了解决这些难题,人们设计并研究了不同的方法。模糊控制是近年来最有前途、应用最广泛、研究最深入的方法之一,因为它能够在没有精确设备模型的情况下运行系统。本文提出了一套规则和模糊控制结构,与传统的模糊控制器相比,设计参数更少,性能更好。全局随机优化工具 "差分进化论 "被用来获取拟议模糊控制器的设计参数。
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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