DocumentCode
3195215
Title
Optimal direct torque control of three-phase symmetric induction motors
Author
Papafotiou, Georgios ; Geyer, Tobias ; Morari, Manfred
Author_Institution
Autom. Control Lab., Swiss Fed. Inst. of Technol., Zurich, Switzerland
Volume
2
fYear
2004
fDate
14-17 Dec. 2004
Firstpage
1860
Abstract
Direct torque control (DTC) is a state of the art control methodology for induction motor drives which features very favorable control performance and implementation properties. However, one of its main deficiencies is the lack of a systematic design procedure for the inverter switching table, which is the core of the control system. This is addressed in this paper, where we propose a novel modelling and control approach for the DTC problem which is based on a systematic design procedure. The DTC drive comprising of a three-level dc-link inverter driving a three-phase induction motor is modelled in the hybrid mixed logical dynamical (MLD) framework, and a constrained optimal control problem is set up and solved over a receding finite horizon using model predictive control (MPC). Simulation results are provided and compared to the current industrial state of the art, which demonstrate the potential for performance improvements.
Keywords
induction motor drives; invertors; machine control; optimal control; predictive control; torque control; constrained optimal control problem; control system; hybrid mixed logical dynamical; induction motor drives; model predictive control; optimal direct torque control; receding finite horizon; three-level dc-link inverter; three-phase symmetric induction motors; Automatic control; Induction motor drives; Induction motors; Inverters; Mathematical model; Optimal control; Predictive models; Stators; Switches; Torque control;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 2004. CDC. 43rd IEEE Conference on
ISSN
0191-2216
Print_ISBN
0-7803-8682-5
Type
conf
DOI
10.1109/CDC.2004.1430318
Filename
1430318
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