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An Efficient Recycling of Leakage Energies in Interleaved DC-DC Converter


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1 Department of Instrumentation & Control Engg, Tamilnadu College of Engineering, Coimbatore-21, India
     

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In order to improve the efficiency of DC–DC converter common active clamp boost circuit is used. This can be achieved by interleaving the coupled-inductor boost converters. The Clamp boost converter is used to clamp the voltage stresses of all the switches in the interleaved converters, caused by the leakage inductances present in the practical coupled inductors, to a low voltage level by use of PID controller. The leakage energies of the interleaved converters are collected in a clamp capacitor and recycled to the output by the clamp boost converter controlled by the PID controller. The proposed converter achieves high efficiency because of the recycling of the leakage energies, reduction of the switch voltage stress, and reduction of the output diode’s reverse recovery problem. Detailed analysis and design of the proposed converter are carried out. The effectiveness of the control strategies have been verified by simulation results.


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  • An Efficient Recycling of Leakage Energies in Interleaved DC-DC Converter

Abstract Views: 369  |  PDF Views: 4

Authors

M. Aravindprasad
Department of Instrumentation & Control Engg, Tamilnadu College of Engineering, Coimbatore-21, India
P. Maniekendan
Department of Instrumentation & Control Engg, Tamilnadu College of Engineering, Coimbatore-21, India
S. Vinothkumar
Department of Instrumentation & Control Engg, Tamilnadu College of Engineering, Coimbatore-21, India
S. Vishnukumar
Department of Instrumentation & Control Engg, Tamilnadu College of Engineering, Coimbatore-21, India

Abstract


In order to improve the efficiency of DC–DC converter common active clamp boost circuit is used. This can be achieved by interleaving the coupled-inductor boost converters. The Clamp boost converter is used to clamp the voltage stresses of all the switches in the interleaved converters, caused by the leakage inductances present in the practical coupled inductors, to a low voltage level by use of PID controller. The leakage energies of the interleaved converters are collected in a clamp capacitor and recycled to the output by the clamp boost converter controlled by the PID controller. The proposed converter achieves high efficiency because of the recycling of the leakage energies, reduction of the switch voltage stress, and reduction of the output diode’s reverse recovery problem. Detailed analysis and design of the proposed converter are carried out. The effectiveness of the control strategies have been verified by simulation results.