Title :
A High Gain Input-Parallel Output-Series DC/DC Converter With Dual Coupled Inductors
Author :
Xuefeng Hu ; Chunying Gong
Author_Institution :
Jiangsu Key Lab. of New Energy Generation & Power Conversion, Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
Abstract :
High voltage gain dc-dc converters are required in many industrial applications such as photovoltaic and fuel cell energy systems, high-intensity discharge lamp (HID), dc back-up energy systems, and electric vehicles. This paper presents a novel input-parallel output-series boost converter with dual coupled inductors and a voltage multiplier module. On the one hand, the primary windings of two coupled inductors are connected in parallel to share the input current and reduce the current ripple at the input. On the other hand, the proposed converter inherits the merits of interleaved series-connected output capacitors for high voltage gain, low output voltage ripple, and low switch voltage stress. Moreover, the secondary sides of two coupled inductors are connected in series to a regenerative capacitor by a diode for extending the voltage gain and balancing the primary-parallel currents. In addition, the active switches are turned on at zero current and the reverse recovery problem of diodes is alleviated by reasonable leakage inductances of the coupled inductors. Besides, the energy of leakage inductances can be recycled. A prototype circuit rated 500-W output power is implemented in the laboratory, and the experimental results shows satisfactory agreement with the theoretical analysis.
Keywords :
DC-DC power convertors; capacitors; diodes; inductors; switches; switching convertors; voltage multipliers; windings; DC back-up energy system; HID; current ripple reduction; diode; dual coupled inductor; electric vehicle; fuel cell energy system; high voltage gain input-parallel output-series DC-DC converter; high-intensity discharge lamp; input-parallel output-series boost converter; interleaved series-connected output capacitor; leakage inductance; low output voltage ripple; low switch voltage stress; photovoltaic energy system; power 500 W; primary winding; primary-parallel current balancing; regenerative capacitor; reverse recovery problem; switch; voltage multiplier module; zero current problem; Capacitors; Inductance; Inductors; Magnetomechanical effects; Stress; Switches; Topology; DC??DC converter; dual coupled inductors; high gain; input-parallel output-series;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2014.2315613