Title :
Polygon-Connected Autotransformer-Based 24-Pulse AC–DC Converter for Vector-Controlled Induction-Motor Drives
Author :
Singh, Bhim ; Garg, Vipin ; Bhuvaneswari, G.
Author_Institution :
Indian Inst. of Technol., New Delhi
Abstract :
This paper presents a novel autotransformer-based 24-pulse AC-DC converter feeding vector-controlled induction motor drives (VCIMDs) for improving power quality at the point of common coupling. The DC-ripple-reinjection technique is used in achieving the pulse multiplication in a 12-pulse AC-DC converter. The design of the proposed autotransformer is given, and necessary modifications are made in it to provide the same output DC voltage as a 6-pulse diode-bridge AC-DC converter to make it suitable for retrofit applications. The proposed 24-pulse AC-DC converter is found capable of suppressing up to the 21st harmonics in the supply current along with the power-factor improvement close to unity in the wide operating range of the drive. A set of power-quality indexes at input AC mains and on DC bus for a VCIMD fed from various AC-DC converters are also given to compare their performance. A prototype of the proposed autotransformer-based 24-pulse AC-DC converter is developed, and test results are presented to validate the developed design procedure and the simulation models of this AC-DC converter under varying loads.
Keywords :
AC-DC power convertors; autotransformers; induction motor drives; machine vector control; power factor; power supply quality; 24-pulse AC-DC converter; 6-pulse diode-bridge AC-DC converter; common coupling; dc-ripple-reinjection technique; polygon-connected autotransformer-based AC-DC converter; power quality; power-factor improvement; power-quality index; pulse multiplication; supply current; vector-controlled induction-motor drives; AC-DC power converters; Couplings; Current supplies; Diodes; Induction motor drives; Power quality; Power system harmonics; Testing; Virtual prototyping; Voltage; Autotransformer; multipulse ac–dc converter; power quality; pulse multiplication; vector-controlled induction motor drives (VCIMDs);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2007.896270