Title :
Multiphase Zero-Current Switching Bidirectional Converters and Battery Energy Storage Application
Author :
Yuang-Shung Lee ; Yi-Pin Ko ; Ming-Wang Cheng ; Li-Jen Liu
Author_Institution :
Dept. of Electr. Eng., Fu Jen Catholic Univ., Taipei, Taiwan
Abstract :
A multiphase quasi-resonant (QR) zero-current switching (ZCS) switched capacitor (SC) bidirectional dc-dc converter structure is proposed to reduce current ripple and switching loss, and significantly increase converter efficiency and power density. This approach provides a more precise output voltage to obtain voltage conversion ratios from the double-mode versus half-mode to n-mode versus 1/n mode. This is accomplished by adding a different number of switched capacitors and power MOSFET switches with a small series connected resonant inductor for forward and reverse schemes. The size and cost can be reduced when the proposed converter is designed with coupled inductors. Simulation and experimental results demonstrate four-phase with and without coupled inductor interleaved QR ZCS SC converter performance for bidirectional power flow control applications. A battery energy storage system for a bidirectional power flow control application is demonstrated.
Keywords :
DC-DC power convertors; cells (electric); field effect transistor switches; inductors; load flow control; power MOSFET; power capacitors; power convertors; zero current switching; battery energy storage application; bidirectional power flow control applications; converter efficiency; coupled inductor interleaved QR ZCS SC converter performance; current ripple reduction; double-mode versus half-mode voltage conversion ratios; forward schemes; multiphase QR ZCS SC bidirectional DC-DC converter structure; multiphase quasiresonant zero-current switching switched capacitor bidirectional DC-DC converter structure; multiphase zero-current switching bidirectional converters; n-mode versus 1/n mode voltage conversion ratios; output voltage; power MOSFET switches; power density; reverse schemes; small series connected resonant inductor; switched capacitors; switching loss; Batteries; Bidirectional power flow; Capacitors; Inductors; Switches; Zero current switching; Battery energy storage; multiphase dc–dc converter; quasi-resonant (QR) zero-current switching (ZCS); switched-capacitor (SC) bidirectional converter;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2012.2227822