Decoupling Fuzzy-Neural PID Controller for TITO Nonlinear Systems

Author:

Ganchev I.,Ahmed S.,Taneva A.,Petrov M.

Abstract

AbstractThis paper presents a fuzzy-neural structure of a Decoupling Fuzzy PID controller with self-tuning parameters. This structure is appropriate for Two-Input-Two-Output (TITO) nonlinear system. The main advantage here is that the equation of classical PID control and decoupling coefficients are used as a Sugeno function into the fuzzy rules. Hence the designed decoupling fuzzy PID controller can be viewed as a natural similarity to the conventional one with decoupling elements. A benchmark quadruple tank, implementing a TITO nonlinear system is considered to illustrate the benefits of the design paradigm. The performance of this set up was studied for reference tracking and disturbance rejection cases. Simulation results confirm the effectiveness of the proposed solution.

Publisher

Walter de Gruyter GmbH

Reference9 articles.

1. Neural Network Control for a Closed - Loop System Using Feedback - Error - Learning;Gomi;Neural Networks,1993

2. An On - Line Self - Constructing Neural Fuzzy Inference Network and Its Applications Fuzzy System No;Chia;IEEE trans,1999

3. fuzzy Control Based on the Nefcon - model : Recent Developments;Nurnberger;Soft Computing,1999

4. A fuzzy System Modeling with Self - Constructing Rule Generation and Hybrid SVD - Based Learning Fuzzy System No;Shie;IEEE Trans,2003

5. Fuzzy Inference and Rule Extraction and Using Neural Network;Castellano;Neural Network World Journal,2000

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