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Embedded Intelligent Adaptive PID Controller for an Electromechanical System [Technical]

By: ISA Transactions
06 January, 2020
1 min read
Embedded Intelligent Adaptive PID Controller for an Electromechanical System [Technical]
Embedded Intelligent Adaptive PID Controller for an Electromechanical System [Technical]
It can be difficult to define suitable PID gains when an industrial plant has a high level of complexity, such as, modeling nonlinearities, time delay and structural uncertainties.

This post is an excerpt from the journal ISA Transactions. All ISA Transactions articles are free to ISA members, or can be purchased from Elsevier Press .

Abstract:

In this study, an intelligent adaptive controller approach using the interval type-2 fuzzy neural network (IT2FNN) is presented. The proposed controller consists of a lower level proportional - integral (PI) controller, which is the main controller and an upper level IT2FNN which tuning on-line the parameters of a PI controller. The proposed adaptive PI controller based on IT2FNN (API-IT2FNN) is implemented practically using the Arduino DUE kit for controlling the speed of a nonlinear DC motor-generator system. The parameters of the IT2FNN are tuned on-line using back-propagation algorithm. The Lyapunov theorem is used to derive the stability and convergence of the IT2FNN.

The obtained experimental results, which are compared with other controllers, demonstrate that the proposed API-IT2FNN is able to improve the system response over a wide range of system uncertainties.

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