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Journal ArticleDOI

Improved constant phase fractional order approximation method for induction motor FOPI speed controller

Sudheer Adigintla, +1 more
- 24 Oct 2022 - 
- Vol. 51, pp 1069-1091
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TLDR
In this paper , the authors presented the digital realization of the fractional-order PI (FOPI) controller fractional integrator element using the improved constant phase approximation method.
Abstract
This paper presents the digital realization of the fractional‐order PI (FOPI) controller fractional integrator element using the improved constant phase approximation method. A new pole‐zero rationalization approach is proposed within the bandwidth of the Bode phase plot. The voltage source inverter fed induction motor fractional‐order model has been identified. A novel mathematical FOPI controller design procedure for the identified FO plant model has been proposed. The designed FOPI controller fractional integrator element is implemented using the constant phase approximation method. A detailed comparative performance study of the proposed approximation method with the existing Charef, Oustaloup, and refined Oustaloup methods has been carried out using the Bode, Nyquist, and Nichols plots. The proposed FOPI controller is placed in the speed feedback loop of the rotor field‐oriented control algorithm of IM. To confirm the proposed FOPI controller approximation method's robustness, a hardware study is carried out on the laboratory hardware‐in‐loop (HIL) platform. In addition, variation in the number of pole‐zero pair's effect on the speed tracking performance, robustness against parameter and load variations are also analyzed.

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Journal ArticleDOI

Nonlinear Fractional Order Model Identification of the Voltage Source Inverter Fed Induction Motor

TL;DR: In this article , the authors presented a new nonlinear fractional-order model identification of a two-level voltage source inverter fed induction motor (VSI-IM) using PWM signal injection method.
References
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Journal ArticleDOI

Fractional-order systems and PI/sup /spl lambda//D/sup /spl mu//-controllers

TL;DR: In this article, a fractional-order PI/sup/spl lambda/D/sup /spl mu/controller with fractionalorder integrator and fractional order differentiator is proposed.
Journal ArticleDOI

Frequency-band complex noninteger differentiator: characterization and synthesis

TL;DR: In this article, the state-of-the-art on generalized (or any order) derivatives in physics and engineering sciences is outlined for justifying the interest of the noninteger differentiation.
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A review of PID control, tuning methods and applications

TL;DR: This paper attempts to address the literature review of PID control in an era of control system and bio-medical applications by surveying the development of classical PID to the integration of intelligent control to it.
Journal ArticleDOI

Electrical circuits RC, LC, and RL described by Atangana–Baleanu fractional derivatives

TL;DR: The analytical solutions for the electrical series circuits RC, LC, and RL using novel fractional derivatives of type Atangana–Baleanu with non-singular and nonlocal kernel in Liouville–Caputo and Riemann–Liouville sense were obtained.
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