Title :
Torsional vibration control of large induction motors using constant air gap flux scheme
Author :
Abdel-Rahim, N.M.B. ; Shaltout, A.
Author_Institution :
EE Dept., Benha Univ., Cairo, Egypt
fDate :
9/1/2012 12:00:00 AM
Abstract :
Comprehensive analysis of the starting period of inverter-fed large induction motors reveals that these motors are subjected to additional components of pulsating torsional torque. These torque pulsations may coincide with the natural torsional frequency of the large motor system and produce hazardous shaft torque oscillations. To alleviate the torsional toque problem and limit the motor starting current, a constant air-gap flux using slip frequency control scheme is proposed to operate the motor inverter. Simulation results show that the proposed scheme is capable of drastically reducing the torsional torque oscillations and limiting the motor line current to approximately 22% of its direct online starting value without prolonging its starting period.
Keywords :
air gaps; induction motors; invertors; machine control; torque control; vibration control; constant air gap flux scheme; constant air-gap flux; direct online starting value; hazardous shaft torque oscillations; inverter-fed large induction motors; large motor system; motor inverter; motor line current; motor starting current; natural torsional frequency; pulsating torsional torque; slip frequency control scheme; starting period; torque pulsations; torsional toque problem; torsional torque oscillations; torsional vibration control;
Journal_Title :
Electric Power Applications, IET
DOI :
10.1049/iet-epa.2011.0129