DocumentCode
2905555
Title
Loss-minimizing flux level control of induction motor drives
Author
Qu, Zengcai ; Ranta, Mikaela ; Hinkkanen, Marko ; Luomi, Jorma
Author_Institution
Sch. of Electr. Eng., Aalto Univ., Aalto, Finland
fYear
2011
fDate
15-18 May 2011
Firstpage
1585
Lastpage
1590
Abstract
The paper applies a dynamic space-vector model to loss-minimizing control in induction motor drives. The induction motor model, which takes hysteresis losses and eddy-current losses as well as the magnetic saturation into account, improves the flux estimation and rotor-flux-oriented control. Based on the corresponding steady-state loss function, a method is proposed for solving the loss-minimizing flux reference at each sampling period. A flux controller augmented with a voltage feedback algorithm is applied for improving the dynamic operation and field weakening. Both the steady-state and dynamic performance of the proposed method is investigated using laboratory experiments with a 2.2-kW induction motor drive. The method improves the accuracy of the loss minimization and torque production, it does not require excessive computational resources, and it shows fast convergence to the optimum flux level.
Keywords
eddy current losses; hysteresis; induction motor drives; machine vector control; voltage control; dynamic space-vector model; eddy-current losses; field weakening; flux estimation; hysteresis losses; induction motor drives; loss-minimizing flux level control; magnetic saturation; power 2.2 kW; rotor-flux-oriented control; steady-state loss function; torque production; voltage feedback algorithm; Magnetic cores; Magnetic hysteresis; Observers; Rotors; Stator cores; Torque; Induction motor; control; core losses; efficiency optimization;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Machines & Drives Conference (IEMDC), 2011 IEEE International
Conference_Location
Niagara Falls, ON
Print_ISBN
978-1-4577-0060-6
Type
conf
DOI
10.1109/IEMDC.2011.5994597
Filename
5994597
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