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http://dx.doi.org/10.5762/KAIS.2014.15.3.1685

Real-Time Compensation Method of Current Measurement Error in Vector-Controlled Inverter for Induction Motor  

Kim, Ji-Hoon (Department of Electrical, Electronic and Control Engineering, Graduate School of Kongju National University)
Yoon, Duck-Yong (Department of Electrical, Electronic and Control Engineering, Graduate School of Kongju National University)
Publication Information
Journal of the Korea Academia-Industrial cooperation Society / v.15, no.3, 2014 , pp. 1685-1690 More about this Journal
Abstract
This paper proposes a novel method to compensate for the measurement errors in detecting phase currents for vector-controlled inverter in real-time. The output torque equations for 3-phase induction motor are derived in terms of offset error and transducing gain error in current measurement circuits, and the equations shows that motor output torque has many ripples due to current measurement errors. Especially, if the proposed method is applied to vector-controlled inverter, the torque ripple by transducing gain error can be reduced in real-time at running state of motor. To verify the proposed method, it was applied to vector-controlled inverter for 3-phase induction motor of 200[W] and computer simulation and experimentation were carried out.
Keywords
Current Measurement Error; Induction Motor; Torque Ripple; Vector-Controlled Inverter;
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