Title :
A novel high step-up DC-DC converter with zero DC bias current coupled-inductor for microgrid system
Author :
Chia-Hua Yeh ; Yi-Ping Hsieh ; Jiann-Fuh Chen
Author_Institution :
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Abstract :
A novel high step-up DC-DC converter for distributed generation (DG) system is proposed in this paper. The concept is composed of three capacitors, three diodes, one inputinductor and one coupled-inductor. By utilizing the leakage inductor energy to charge capacitor, and convert energy by the coupled-inductor, high step-up voltage gain and high efficiency can be achieved with an appropriate duty ratio. The voltage stresses on the main switch and output diode are reduced by a passive clamp circuit. Therefore, low resistance RDS(ON) for the main switch can be adopted to reduce conduction loss. In addition, the reverse-recovery problem of the diode is alleviated, and thus, the efficiency can be further improved. The operating principle and steady-state analysis of the voltage gain are also discussed in detail. Finally, a 24-V input voltage, 400-V output voltage, and 200-W output power prototype circuit of the proposed converter is implemented in the laboratory to verify the performance.
Keywords :
DC-DC power convertors; distributed power generation; power inductors; charge capacitor; conduction loss; distributed generation system; high step up DC DC converter; leakage inductor energy; main switch; microgrid system; output diode; passive clamp circuit; power 200 W; reverse recovery problem; steady state analysis; voltage 24 V; voltage 400 V; voltage gain; voltage stresses; zero DC bias current coupled inductor; Equations; Indexes; Inductors; Mathematical model; Switches; DG system; High step-up; coupled-inductor; microgrid;
Conference_Titel :
Future Energy Electronics Conference (IFEEC), 2013 1st International
Conference_Location :
Tainan
Print_ISBN :
978-1-4799-0071-8
DOI :
10.1109/IFEEC.2013.6687536