A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation

In this paper, a combined structure of algorithms based on field-oriented control (FOC) and direct torque control (DTC) is proposed for improving the performance of a three-phase induction motor (IM) over a wide range of torque loads. The objective of this study is to investigate the state-of-the-ar...

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Main Authors: Mohamed Elgbaily, Fatih Anayi, Mussaab M. Alshbib
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Series:Mathematics
Subjects:
Online Access:https://www.mdpi.com/2227-7390/10/20/3842
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author Mohamed Elgbaily
Fatih Anayi
Mussaab M. Alshbib
author_facet Mohamed Elgbaily
Fatih Anayi
Mussaab M. Alshbib
author_sort Mohamed Elgbaily
collection DOAJ
description In this paper, a combined structure of algorithms based on field-oriented control (FOC) and direct torque control (DTC) is proposed for improving the performance of a three-phase induction motor (IM) over a wide range of torque loads. The objective of this study is to investigate the state-of-the-art research performed on the resilient intersection control management between FOC and DTC algorithms for IM drive. Three algorithms are employed in the proposed scheme: Direct Torque Stator Flux Control (DTSFC), Direct Torque Rotor Flux Control (DTRFC), and the FOC algorithm. The main aim of the control law is to launch the drive system by selecting DTSFC or DTRFC during the transient state while FOC is switched smoothly to the steady-state. The proposed method had several advantages, including the ability to produce torque beyond the pull-out torque range at 340%, high torque dynamics during transient state within 0.5 ms, low chattering up to 0.05 N.m, and fixed frequency at steady-state operation. Furthermore, a comprehensive comparison study has been conducted, including the most recent research, to verify the effectiveness and superiority of the proposed technique. Results were obtained using both MATLAB/Simulink environment and also were experimentally performed by using a dSPACE DS1103 digital signal processing board to verify the concept of the proposed control scheme.
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spelling doaj.art-392c0abec78c4b6897fcbae4755195032023-11-30T22:52:10ZengMDPI AGMathematics2227-73902022-10-011020384210.3390/math10203842A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental ValidationMohamed Elgbaily0Fatih Anayi1Mussaab M. Alshbib2Wolfson Centre for Magnetics, School of Engineering, Cardiff University, Cardiff CF24 3AA, UKWolfson Centre for Magnetics, School of Engineering, Cardiff University, Cardiff CF24 3AA, UKMechatronics and Laboratory Engineering Department, Sham University, Aleppo 11566, SyriaIn this paper, a combined structure of algorithms based on field-oriented control (FOC) and direct torque control (DTC) is proposed for improving the performance of a three-phase induction motor (IM) over a wide range of torque loads. The objective of this study is to investigate the state-of-the-art research performed on the resilient intersection control management between FOC and DTC algorithms for IM drive. Three algorithms are employed in the proposed scheme: Direct Torque Stator Flux Control (DTSFC), Direct Torque Rotor Flux Control (DTRFC), and the FOC algorithm. The main aim of the control law is to launch the drive system by selecting DTSFC or DTRFC during the transient state while FOC is switched smoothly to the steady-state. The proposed method had several advantages, including the ability to produce torque beyond the pull-out torque range at 340%, high torque dynamics during transient state within 0.5 ms, low chattering up to 0.05 N.m, and fixed frequency at steady-state operation. Furthermore, a comprehensive comparison study has been conducted, including the most recent research, to verify the effectiveness and superiority of the proposed technique. Results were obtained using both MATLAB/Simulink environment and also were experimentally performed by using a dSPACE DS1103 digital signal processing board to verify the concept of the proposed control scheme.https://www.mdpi.com/2227-7390/10/20/3842combined structure (FOC and DTC)direct torque controldynamic reconfiguration of control algorithmslookup tablefield-oriented controlvoltage source inverter
spellingShingle Mohamed Elgbaily
Fatih Anayi
Mussaab M. Alshbib
A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation
Mathematics
combined structure (FOC and DTC)
direct torque control
dynamic reconfiguration of control algorithms
lookup table
field-oriented control
voltage source inverter
title A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation
title_full A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation
title_fullStr A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation
title_full_unstemmed A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation
title_short A Combined Control Scheme of Direct Torque Control and Field-Oriented Control Algorithms for Three-Phase Induction Motor: Experimental Validation
title_sort combined control scheme of direct torque control and field oriented control algorithms for three phase induction motor experimental validation
topic combined structure (FOC and DTC)
direct torque control
dynamic reconfiguration of control algorithms
lookup table
field-oriented control
voltage source inverter
url https://www.mdpi.com/2227-7390/10/20/3842
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