DocumentCode
941309
Title
Elimination of saturation effects in sensorless position-controlled induction motors
Author
Holtz, Joachim ; Pan, Hangwen
Author_Institution
Electr. Machines & Drives Group, Univ. of Wuppertal, Germany
Volume
40
Issue
2
fYear
2004
Firstpage
623
Lastpage
631
Abstract
Owing to the variable magnetic coupling between the stator windings and the discrete rotor bars of an induction motor, a quasicontinuous rotor position signal can be acquired by instantaneous measurement of the total leakage inductance of the three stator phases. The signals are sampled in synchronism with the regular commutations of the pulsewidth-modulation process, thus making the injection of additional high-frequency carriers obsolete. The acquired position signal exhibits high spatial resolution and high dynamic bandwidth. Magnetic saturation also influences the total leakage inductances and, hence, constitutes a disturbance for position identification. This paper presents a detailed analysis of the saturation effects and proposes methods to eliminate their undesired impact on the position signal. Experimental results of closed-loop sensorless position control at full load and high dynamic performance are presented.
Keywords
closed loop systems; inductance; induction motors; machine control; position control; signal sampling; velocity control; leakage inductance; magnetic saturation; position controlled induction motors; position identification; pulse width modulation process; quasicontinuous rotor position signal; rotor bars; saturation effects elimination; stator winding; variable magnetic coupling; Bars; Couplings; Inductance measurement; Induction motors; Phase measurement; Position measurement; Rotors; Saturation magnetization; Signal processing; Stator windings;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2004.824435
Filename
1278643
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