Title :
A three-phase boost AC-AC voltage converter
Author :
Hossain, M. Rubaiyat Tanvir ; Choudhury, M.A. ; Uddin, M. Nasir
Author_Institution :
Dept. of EEE, Chittagong Univ. of Eng. & Tech., Chittagong, Bangladesh
Abstract :
A two bi-directional switch based three-phase boost AC voltage regulator is presented in this paper. The operational principle of the proposed three-phase regulator is a direct consequence of using two three-phase bi-directional switches in the boost converter topology. The topology has reduced number of switches for a three-phase AC voltage regulator having output voltage regulation, input current shaping and power factor improvement capability. It provides opportunity for simple control technique to be adopted. In this paper output/input voltage feedback and boost inductor average current tracking method is used for controlling the regulator. Reduced number of switches allows simple control circuit, less switching loss, reliable operation and low cost. Steady state analysis and simulation results of close loop control of the proposed converter are presented in this paper. The average inductor current tracking control shows acceptable regulation of the converter output voltage. During sudden variation of load or input voltage the controller adjusts the duty cycle to recover to the desired output voltage. Experimental investigation of the converter without any feedback control is also described.
Keywords :
AC-AC power convertors; closed loop systems; electric current control; switching convertors; voltage control; average inductor current tracking control; bidirectional switch based three-phase boost AC voltage regulator; boost converter topology; boost inductor average current tracking method; close loop control; input current shaping; output voltage regulation; output-input voltage feedback; power factor improvement capability; steady state analysis; three-phase AC voltage regulator; three-phase bidirectional switches; three-phase boost AC-AC voltage converter; Inductors; Power harmonic filters; Reactive power; Switches; Topology; Voltage control; Automatic voltage control; Circuit topology; Closed loop systems; Negative feedback; Power conditioning; Power conversion; Power quality; Pulse width modulation; Switched mode power supplies; Three-phase ac bidirectional switch;
Conference_Titel :
Industry Applications Society Annual Meeting, 2014 IEEE
Conference_Location :
Vancouver, BC
DOI :
10.1109/IAS.2014.6978388