Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier

This paper presents the fault tolerance of model predictive direct torque control for a permanent magnet synchronous generator under a faulty Vienna rectifier. The fault applied includes open-switch and short-switch fault in a particular active switching device of the Vienna rectifier. The measured...

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Main Authors: Sook Yee Yip, Dek Wei Yong, Kah Haur Yiauw, Xiao Jian Tan, Jorinda Yuh Ruh Wong
Format: Article
Language:English
Published: IEEE 2022-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9878312/
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author Sook Yee Yip
Dek Wei Yong
Kah Haur Yiauw
Xiao Jian Tan
Jorinda Yuh Ruh Wong
author_facet Sook Yee Yip
Dek Wei Yong
Kah Haur Yiauw
Xiao Jian Tan
Jorinda Yuh Ruh Wong
author_sort Sook Yee Yip
collection DOAJ
description This paper presents the fault tolerance of model predictive direct torque control for a permanent magnet synchronous generator under a faulty Vienna rectifier. The fault applied includes open-switch and short-switch fault in a particular active switching device of the Vienna rectifier. The measured input current is used in the proposed fault diagnosis approach to detect the switch fault’s position without any additional hardware being implemented. Whenever a switching fault occurs at any phase of the Vienna rectifier, the available switching vectors for prediction control are reduced from five to four. The feasibility and effectiveness of the proposed fault tolerance model predictive direct torque control under a faulty Vienna rectifier are demonstrated and investigated through MATLAB/Simulink. The results show that it is feasible for the proposed method to be operated under a short-switch fault with slightly higher total harmonics distortion of the input current but out of control under an open-switch fault.
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spelling doaj.art-2d786c84a872456c812f1fac1f3c5ac42022-12-22T04:04:27ZengIEEEIEEE Access2169-35362022-01-0110949989500710.1109/ACCESS.2022.32048099878312Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna RectifierSook Yee Yip0https://orcid.org/0000-0002-3268-3032Dek Wei Yong1Kah Haur Yiauw2Xiao Jian Tan3Jorinda Yuh Ruh Wong4Department of Electrical and Electronics Engineering, Centre for Multimodal Signal Processing, Faculty of Engineering and Technology, Tunku Abdul Rahman University College (TARUC), Kuala Lumpur, MalaysiaDepartment of Electrical and Electronics Engineering, Faculty of Engineering and Technology, Tunku Abdul Rahman University College (TARUC), Kuala Lumpur, MalaysiaDepartment of Electrical and Electronics Engineering, Faculty of Engineering and Technology, Tunku Abdul Rahman University College (TARUC), Kuala Lumpur, MalaysiaDepartment of Electrical and Electronics Engineering, Centre for Multimodal Signal Processing, Faculty of Engineering and Technology, Tunku Abdul Rahman University College (TARUC), Kuala Lumpur, MalaysiaUM Power Energy Dedicated Advanced Centre (UMPEDAC), Wisma Research and Development, University of Malaya, Kuala Lumpur, MalaysiaThis paper presents the fault tolerance of model predictive direct torque control for a permanent magnet synchronous generator under a faulty Vienna rectifier. The fault applied includes open-switch and short-switch fault in a particular active switching device of the Vienna rectifier. The measured input current is used in the proposed fault diagnosis approach to detect the switch fault’s position without any additional hardware being implemented. Whenever a switching fault occurs at any phase of the Vienna rectifier, the available switching vectors for prediction control are reduced from five to four. The feasibility and effectiveness of the proposed fault tolerance model predictive direct torque control under a faulty Vienna rectifier are demonstrated and investigated through MATLAB/Simulink. The results show that it is feasible for the proposed method to be operated under a short-switch fault with slightly higher total harmonics distortion of the input current but out of control under an open-switch fault.https://ieeexplore.ieee.org/document/9878312/Fault diagnosis and tolerance controlmodel predictive direct torque controlpermanent magnet synchronous generatorpower converter faultsVienna rectifier
spellingShingle Sook Yee Yip
Dek Wei Yong
Kah Haur Yiauw
Xiao Jian Tan
Jorinda Yuh Ruh Wong
Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier
IEEE Access
Fault diagnosis and tolerance control
model predictive direct torque control
permanent magnet synchronous generator
power converter faults
Vienna rectifier
title Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier
title_full Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier
title_fullStr Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier
title_full_unstemmed Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier
title_short Model Predictive Direct Torque With Fault Tolerance Control for a Permanent Magnet Synchronous Generator Based on Vienna Rectifier
title_sort model predictive direct torque with fault tolerance control for a permanent magnet synchronous generator based on vienna rectifier
topic Fault diagnosis and tolerance control
model predictive direct torque control
permanent magnet synchronous generator
power converter faults
Vienna rectifier
url https://ieeexplore.ieee.org/document/9878312/
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