DocumentCode :
1571791
Title :
Three-phase, two-switch PFC rectifier fed three-level VSI based FOC of induction motor drive
Author :
Bhuvaneswari, G. ; Singh, Bawa ; Madishetti, Sandeep
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Delhi, New Delhi, India
fYear :
2012
Firstpage :
1
Lastpage :
6
Abstract :
This paper presents a Scott transformer based three-phase, two-switch PFC (Power Factor Correction) boost rectifier for improving the power quality in a three-level diode clamped inverter (DCI) feeding indirect rotor field oriented control (FOC) based induction motor drive (IMD). Sinusoidal unity power factor source current and dc-link voltage regulation are achieved in the proposed rectifier only with two-switches. The three-level DCI is supplied by a split dc-link obtained from a Scott connected transformer feeding a rectifier. It is shown that a three-level DCI achieves reduced stator current with lower voltage harmonic content even at a lower switching frequency as compared to a two-level inverter. This results in reduction of voltage stress on motor windings for the same amount of torque ripple when indirect rotor FOC algorithm is implemented for the IMD. A MATLAB based simulation model of proposed PFC rectifier is developed for validating the design and to verify that the power quality issues in three-level DCI fed IMD are adequately addressed. The performance of the system is studied and compared with a conventional diode rectifier fed vector controlled IMD for different operating conditions of the drive.
Keywords :
induction motor drives; invertors; machine vector control; power factor correction; power supply quality; power transformers; rectifying circuits; rotors; Matlab based simulation model; Scott connected transformer; dc-link voltage regulation; diode rectifier fed vector controlled IMD; indirect rotor FOC algorithm; indirect rotor field oriented control; induction motor drive; lower switching frequency; power factor correction boost rectifier; power quality; reduced stator current; sinusoidal unity power factor source current; split dc-link; three-level DCI fed IMD; three-level diode clamped inverter; three-phase two-switch PFC rectifier fed three-level VSI; torque ripple; two-level inverter; voltage harmonic content; voltage source inverter; voltage stress reduction; Harmonic analysis; Pulse width modulation; Rectifiers; Rotors; Stators; Torque; Voltage control; AC-DC converter; Improved power quality converter; Indirect vector control; Induction motor; Power factor correction (PFC); Power quality improvement; Rotor field oriented control (FOC); Scott transformer; Split dc bus voltage; Three-phase rectifier;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power India Conference, 2012 IEEE Fifth
Conference_Location :
Murthal
Print_ISBN :
978-1-4673-0763-5
Type :
conf
DOI :
10.1109/PowerI.2012.6479577
Filename :
6479577
Link To Document :
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