Title :
Standstill Parameter Identification of Vector-Controlled Induction Motors Using the Frequency Characteristics of Rotor Bars
Author :
Kwon, Young-Su ; Lee, Jeong-Hum ; Moon, Sang-Ho ; Kwon, Byung-Ki ; Choi, Chang-Ho ; Seok, Jul-Ki
Author_Institution :
Autom. R&D Center, LS Ind. Syst. Co., Ltd., Cheonan, South Korea
Abstract :
We propose a current injection-based estimator to identify accurately standstill induction motor (IM) parameters necessary for vector control. A mathematical model that faithfully represents the general deep bar effect is introduced. Then, two exciting signals with a different frequency are sequentially injected to track the parameters based on the frequency function of the rotor bar. The proposed methodology employs closed-loop control of an injected current due to little knowledge of the unknown motor, rather than the open-loop voltage injection approaches commonly used in sensorless control schemes. Subsequently, this control scheme proactively prevents electrical accidents resulting from inadequate open-loop voltage injection. Our developed specialized offline commissioning test compensates for the phase delay resulting from the drive, which significantly affects estimation precision. The effectiveness of the identification technique is validated by means of experiments performed on three different IMs.
Keywords :
closed loop systems; induction motors; machine vector control; open loop systems; parameter estimation; closed-loop control; current injection-based estimator; frequency characteristics; frequency function; mathematical model; open-loop voltage injection; phase delay; rotor bar; sensorless control schemes; standstill induction motor parameter; standstill parameter identification; vector control; vector-controlled induction motor; Closed-loop control of an injected current; frequency function of the rotor bar; standstill induction motor (IM) parameter identification; vector control;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2009.2027164