Title :
An Active Power-Decoupling Method for Single-Phase AC–DC Converters
Author :
Mei Su ; Pan Pan ; Xi Long ; Yao Sun ; Jian Yang
Author_Institution :
Sch. of Inf. Sci. & Eng., Central South Univ., Changsha, China
Abstract :
This paper presents an active topology for power decoupling in single-phase ac-dc converters, featuring the effective suppression of low-frequency power ripple which is an inherent problem in single-phase energy conversion systems. This topology is composed of an H-bridge circuit and a ripple power-decoupling circuit. The ripple power-decoupling circuit shares one bridge arm with the H-bridge circuit so it has less additional components: just one IGBT, one diode, and an energy-storage inductor. Its modulation strategy is properly devised to coordinate the operation of decoupling circuit and H-bridge circuit. To enhance the power-decoupling performance, a direct ripple power-cancellation method based on energy-storage inductor is proposed. A multiresonant controller with feed-forward control is introduced for fast and precise current tracking. The effectiveness of this topology has been verified by detailed simulation studies as well as the laboratory prototype experiment results.
Keywords :
AC-DC power convertors; bridge circuits; energy storage; feedforward; inductors; insulated gate bipolar transistors; power bipolar transistors; power field effect transistors; power semiconductor diodes; H-bridge circuit; IGBT; active power-decoupling topology method; current tracking; diode; direct ripple power-cancellation method; energy-storage inductor; feed-forward control; low-frequency power ripple suppression; modulation strategy; multiresonant controller; ripple power-decoupling circuit; single-phase AC-DC converter; single-phase energy conversion system; Active power decoupling; direct ripple power cancellation; multiresonant controller; single-phase ac–dc converter;
Journal_Title :
Industrial Informatics, IEEE Transactions on
DOI :
10.1109/TII.2013.2261081