LAPSE:2023.12987
Published Article

LAPSE:2023.12987
Closed-Loop Adaptive High-Starting Torque Scalar Control Scheme for Induction Motor Variable Speed Drives
February 28, 2023
Abstract
This article proposes a closed-loop (CL) high-starting torque (HST) scalar control scheme (SCS) for induction motors (IM). It endows the recently proposed HST-SCS with high-output torque capability beyond starting after using an outer speed control loop feeding an inner current control loop with adaptive controllers. Presenting a cascade normalized adaptive passivity-based controller (N-APBC) for nonlinear systems encompassing the IM allows obtaining this result. It extends the normalized adaptive controller for the cascade case. As a result, it keeps the HST-SCS simple control scheme without needing variable observers or parameter estimators and employing tuning information only from the motor nameplate and datasheet. Test bench experiments with a 10 HP motor validate the proposal’s effectiveness. Comparative experimental results show that the CL HST-SCS has a required stator phase voltage lower than HST-SCS. The CL HST-SCS applies the adaptive starting voltage curve for a more extended time than HST-SCS, from the start to 1.9 s versus 1.2 s, respectively. Hence, CL HST-SCS assures HST not only for starting but almost up to 600 rpm, resulting in a smoother transient behavior than HST-SCS under this speed.
This article proposes a closed-loop (CL) high-starting torque (HST) scalar control scheme (SCS) for induction motors (IM). It endows the recently proposed HST-SCS with high-output torque capability beyond starting after using an outer speed control loop feeding an inner current control loop with adaptive controllers. Presenting a cascade normalized adaptive passivity-based controller (N-APBC) for nonlinear systems encompassing the IM allows obtaining this result. It extends the normalized adaptive controller for the cascade case. As a result, it keeps the HST-SCS simple control scheme without needing variable observers or parameter estimators and employing tuning information only from the motor nameplate and datasheet. Test bench experiments with a 10 HP motor validate the proposal’s effectiveness. Comparative experimental results show that the CL HST-SCS has a required stator phase voltage lower than HST-SCS. The CL HST-SCS applies the adaptive starting voltage curve for a more extended time than HST-SCS, from the start to 1.9 s versus 1.2 s, respectively. Hence, CL HST-SCS assures HST not only for starting but almost up to 600 rpm, resulting in a smoother transient behavior than HST-SCS under this speed.
Record ID
Keywords
adaptive control, induction motors, nonlinear dynamical systems, variable speed drives
Subject
Suggested Citation
Travieso-Torres JC, Duarte-Mermoud MA, Díaz M, Contreras-Jara C, Hernández F. Closed-Loop Adaptive High-Starting Torque Scalar Control Scheme for Induction Motor Variable Speed Drives. (2023). LAPSE:2023.12987
Author Affiliations
Travieso-Torres JC: Department of Industrial Technologies, University of Santiago de Chile, Santiago 9170125, Chile [ORCID]
Duarte-Mermoud MA: Facultad de Ingeniería y Arquitectura, Universidad Central de Chile, Av. Santa Isabel 1186, Santiago 8330601, Chile; Advanced Mining Technology Center, University of Chile, Av. Tupper 2007, Santiago 8370451, Chile [ORCID]
Díaz M: Department of Electrical Engineering, University of Santiago de Chile, Santiago 9170125, Chile [ORCID]
Contreras-Jara C: Department of Industrial Technologies, University of Santiago de Chile, Santiago 9170125, Chile
Hernández F: Department of Industrial Technologies, University of Santiago de Chile, Santiago 9170125, Chile
Duarte-Mermoud MA: Facultad de Ingeniería y Arquitectura, Universidad Central de Chile, Av. Santa Isabel 1186, Santiago 8330601, Chile; Advanced Mining Technology Center, University of Chile, Av. Tupper 2007, Santiago 8370451, Chile [ORCID]
Díaz M: Department of Electrical Engineering, University of Santiago de Chile, Santiago 9170125, Chile [ORCID]
Contreras-Jara C: Department of Industrial Technologies, University of Santiago de Chile, Santiago 9170125, Chile
Hernández F: Department of Industrial Technologies, University of Santiago de Chile, Santiago 9170125, Chile
Journal Name
Energies
Volume
15
Issue
10
First Page
3489
Year
2022
Publication Date
2022-05-10
ISSN
1996-1073
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Original Submission
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PII: en15103489, Publication Type: Journal Article
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LAPSE:2023.12987
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https://doi.org/10.3390/en15103489
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Feb 28, 2023
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