LAPSE:2023.30950
Published Article

LAPSE:2023.30950
Super-Twisting Sliding Mode Control to Improve Performances and Robustness of a Switched Reluctance Machine for an Electric Vehicle Drivetrain Application
April 17, 2023
Abstract
In electric vehicles, performances of electric vehicle drivetrains depend on the electric machine and the control. Switched Reluctance Machines (SRMs) are today an alternative to rare earth magnets machines such as Permanent Magnet Synchronous Machine (PMSM), which is used in the vehicle drivetrain. Because of its high nonlinear behavior, the classical control designed for SRMs is not sufficient to obtain good performances. The objective of this paper is to make performance and robustness comparisons of the designed robust controllers considering the high nonlinear behavior of SRMs. Sliding Mode Control (SMC) and Super-Twisting Sliding Mode Control (STSMC) are developed and validated by simulation for the velocity control loop and the current control loops of the control strategy. However, an evaluation of their performances compared to classical control based on PI controllers is carried out. For a robustness comparison, a variation of SRM parameters is carried out by simulation using the three controllers. Finally, an experimental validation on a developed test bench using the three controllers is conducted to show that Super-Twisting Sliding Mode Control (STSMC) is the best in terms of performances and robustness for an electric vehicle application.
In electric vehicles, performances of electric vehicle drivetrains depend on the electric machine and the control. Switched Reluctance Machines (SRMs) are today an alternative to rare earth magnets machines such as Permanent Magnet Synchronous Machine (PMSM), which is used in the vehicle drivetrain. Because of its high nonlinear behavior, the classical control designed for SRMs is not sufficient to obtain good performances. The objective of this paper is to make performance and robustness comparisons of the designed robust controllers considering the high nonlinear behavior of SRMs. Sliding Mode Control (SMC) and Super-Twisting Sliding Mode Control (STSMC) are developed and validated by simulation for the velocity control loop and the current control loops of the control strategy. However, an evaluation of their performances compared to classical control based on PI controllers is carried out. For a robustness comparison, a variation of SRM parameters is carried out by simulation using the three controllers. Finally, an experimental validation on a developed test bench using the three controllers is conducted to show that Super-Twisting Sliding Mode Control (STSMC) is the best in terms of performances and robustness for an electric vehicle application.
Record ID
Keywords
electric vehicle, performance, PI control, robustness, sliding mode control, super-twisting sliding mode control, switched reluctance machine
Subject
Suggested Citation
Sehab R, Akrad A, Saadi Y. Super-Twisting Sliding Mode Control to Improve Performances and Robustness of a Switched Reluctance Machine for an Electric Vehicle Drivetrain Application. (2023). LAPSE:2023.30950
Author Affiliations
Sehab R: ESTACA’Lab—ESTACA, Ecole Supérieure des Techniques Aéronautiques et de Construction Automobile, 53000 Laval, France [ORCID]
Akrad A: ESTACA’Lab—ESTACA, Ecole Supérieure des Techniques Aéronautiques et de Construction Automobile, 53000 Laval, France
Saadi Y: ICube, CNRS (UMR 7357) INSA Strasbourg, University of Strasbourg, 67000 Strasbourg, France
Akrad A: ESTACA’Lab—ESTACA, Ecole Supérieure des Techniques Aéronautiques et de Construction Automobile, 53000 Laval, France
Saadi Y: ICube, CNRS (UMR 7357) INSA Strasbourg, University of Strasbourg, 67000 Strasbourg, France
Journal Name
Energies
Volume
16
Issue
7
First Page
3212
Year
2023
Publication Date
2023-04-02
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en16073212, Publication Type: Journal Article
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LAPSE:2023.30950
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https://doi.org/10.3390/en16073212
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Apr 17, 2023
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