DocumentCode :
1347384
Title :
Copper and Core Loss Minimization for Induction Motors Using High-Order Sliding-Mode Control
Author :
Domínguez, Jorge Rivera ; Mora-Soto, Christian ; Ortega-Cisneros, Susana ; Panduro, Juan José Raygoza ; Loukianov, Alexander G.
Author_Institution :
Dept. de Electron., Centro Univ. de Cienc. Exactas e Ingenierias, Guadalajara, Mexico
Volume :
59
Issue :
7
fYear :
2012
fDate :
7/1/2012 12:00:00 AM
Firstpage :
2877
Lastpage :
2889
Abstract :
A novel nonlinear affine model for an induction motor with core loss is developed in the well-known (α, β) stationary reference frame, where the core is represented with a resistance in parallel with a magnetization inductance. Then, an optimal rotor flux modulus is calculated such that the power loss due to stator, rotor, and core resistances is minimized, and as a consequence, the motor efficiency is raised; therefore, this flux modulus is forced to be tracked by the induction motor along with a desired rotor velocity by means of a high-order sliding-mode controller, the supertwisting algorithm. Using a novel Lyapunov function, the closed-loop stability of the system is demonstrated. Moreover, a classical sliding-mode observer is designed for the estimation of unmeasurable variables like rotor fluxes and magnetization currents. For the load torque, a Luenberger observer is designed. The performance of the proposed controller is finally studied by simulation and experimental tests. It was observed that the steady-state optimal flux signal corresponds to the load torque profile. This fact suggests that the flux demand is the necessary one to produce the electric torque that can cancel out the load torque.
Keywords :
Lyapunov methods; closed loop systems; induction motors; losses; machine control; magnetic flux; observers; rotors; torque; variable structure systems; Luenberger observer; Lyapunov function; classical sliding mode observer; closed loop stability; copper loss minimization; core loss minimization; electric torque; high order sliding mode control; induction motors; load torque; magnetization current; magnetization inductance; nonlinear affine model; optimal rotor flux modulus; rotor velocity; supertwisting algorithm; Core loss; Induction motors; Mathematical model; Observers; Rotors; Stators; Torque; Induction motors; magnetic losses; variable structure systems;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2011.2171170
Filename :
6042332
Link To Document :
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