Soft switched DC-DC converter with high voltage gain

A new type of isolated step-up converter with high voltage gain is proposed in this paper. An isolated DC-DC converter with Continuous Current Mode Current source Inverter with a Voltage Multiplier with minimum Capacitance is designed for Current sources like Fuel Cells, emerging non conventional type of sources. A new design method of half-wave Cockcroft-Walton (H-W C-W VM) that lays on the calculation of the optimal number of stages, which is necessary to produce the desired output voltage with the minimum total capacitance value, is dealt in this project. For this purpose, an adequate choice of the capacitance values per stage is considered, leading to the investigation of four different cases. In this converter, the output to input voltage ratio, for a given duty cycle; can be raised by adding voltage multiplier stages of capacitors. This proposed technique compensates for control circuit delay, and hence, turns on power MOSFET at the instant exactly when drain-to-source voltage becomes zero using the parasitic capacitance of the switches and the leakage inductance of the transformer. The operating frequency of the converter is 100 KHz. Thus unlike conventional method, Ferrite Core transformers are used which reduces the number of turns increasing the power density. The circuit for current source inverter with the voltage multiplier is simulated in PSPICE SOFTWARE and the results obtained were verified with the hardware model. For an input voltage of 30V and input current of 5 Amps, the output from the inverter is 40 V and output from the voltage multiplier of three stages is 230 V and 0.6 Amps.

[1]  Yao-Ching Hsieh,et al.  An Interleaved Boost Converter With Zero-Voltage Transition , 2009, IEEE Transactions on Power Electronics.

[2]  Huang-Jen Chiu,et al.  A multiple-input DC/DC converter for renewable energy systems , 2005, 2005 IEEE International Conference on Industrial Technology.

[3]  Hyun-Lark Do A Soft-Switching DC/DC Converter With High Voltage Gain , 2010, IEEE Transactions on Power Electronics.

[4]  Jung-Min Kwon,et al.  High Step-Up Active-Clamp Converter With Input-Current Doubler and Output-Voltage Doubler for Fuel Cell Power Systems , 2009, IEEE Transactions on Power Electronics.

[5]  Jiann-Fuh Chen,et al.  Study and Implementation of a Single-Stage Current-Fed Boost PFC Converter With ZCS for High Voltage Applications , 2008, IEEE Transactions on Power Electronics.

[6]  J.W. Kolar,et al.  Impact of Power Density Maximization on Efficiency of DC–DC Converter Systems , 2009, IEEE Transactions on Power Electronics.

[7]  R. Gules,et al.  Voltage Multiplier Cells Applied to Non-Isolated DC–DC Converters , 2008, IEEE Transactions on Power Electronics.

[8]  Ioannis C Kobougias,et al.  Optimal Design of a Half-Wave Cockcroft–Walton Voltage Multiplier With Minimum Total Capacitance , 2010, IEEE Transactions on Power Electronics.

[9]  I.C. Kobougias,et al.  Optimal design of a Half-Wave Cockroft-Walton Voltage Multiplier with minimum total capacitance , 2008, 2008 IEEE Power Electronics Specialists Conference.

[10]  Z. Chen,et al.  A novel phase-shift full-bridge converter with voltage-doubler and decoupling integrated magnetics in PV system , 2008 .

[11]  Bor-Ren Lin,et al.  Analysis and implementation of full-bridge converter with current doubler rectifier , 2005 .