2011Unpublished venueRequires access

Introduction to the nonlinear PIλDμ control

Farshad Merrikh‐Bayat, Nafiseh Mirebrahimi

Open publisher page 6 citations

Abstract

In this paper, the nonlinear fractional-order PID (N-FO-PID) controller, which can be considered as a combination of the nonlinear and the fractional-order PID controllers, is introduced for the first time. It is shown that the proposed structure, which has eight parameters to tune, provides us with a powerful framework to control complicated processes by using smaller control effort compared to the PID controllers. Tuning the parameters of the proposed N-FO-PID controller is discussed and the challenges are presented. Application of the N-FO-PID controller to control a first-order plus time delay process, a process with nonlinear valve and the nonlinear magnetic levitation system is studied and the results are compared with the conventional PID, nonlinear PID and fractional-order PID controllers.

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What this paper is about

In this paper, the nonlinear fractional-order PID (N-FO-PID) controller, which can be considered as a combination of the nonlinear and the fractional-order PID controllers, is introduced for the first time. It is shown that the proposed structure, which has eight parameters to tune, provides us with a powerful framework to control complicated processes by using smaller control effort compared to the PID controllers. Tuning the parameters of the proposed N-FO-PID controller is discussed and the challenges are presented. Application of the N-FO-PID controller to control a first-order plus time delay process, a process with nonlinear valve and the nonlinear magnetic levitation system is studied and the results are compared with the conventional PID, nonlinear PID and fractional-order PID controllers.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper, the nonlinear fractional-order PID (N-FO-PID) controller, which can be considered as a combination of the nonlinear and the fractional-order PID controllers, is introduced for the first time. It is shown that the proposed structure, which has eight parameters to tune, provides us with a powerful framework to control complicated processes by using smaller control effort compared to the PID controllers. Tuning the parameters of the proposed N-FO-PID controller is discussed and the challenges are presented. Application of the N-FO-PID controller to control a first-order plus time delay process, a process with nonlinear valve and the nonlinear magnetic levitation system is studied and the results are compared with the conventional PID, nonlinear PID and fractional-order PID controllers.

Key concepts: PID controller, Control theory (sociology), Nonlinear system, Pi, Controller (irrigation), Process control, Order (exchange), Mathematics

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