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Maximum Boost Control of Diode-assisted Buckboost Voltage Source Inverter with Minimum

by nexgentech | Oct 31, 2017 | ieee project

Maximum Boost Control of Diode-assisted Buckboost Voltage Source Inverter with Minimum   Abstract Diode-assisted buck-boost voltage source inverter (VSI) achieves high voltage gain by introducing a switch-capacitor based high step-up dc-dc circuit between the dc...

A Highly Reliable and High Efficiency Quasi Single-Stage Buck-Boost Inverter

by nexgentech | Oct 31, 2017 | ieee project

A Highly Reliable and High Efficiency Quasi Single-Stage Buck-Boost Inverter Abstract To regulate an output ac voltage in inverter systems having wide input dc voltage variation, a buck-boost power conditioning system is preferred. This paper proposes a novel high...

Interleaved Resonant Boost Inverter Featuring SiC Module for High Performance Induction Heating

by nexgentech | Oct 31, 2017 | ieee project

Interleaved Resonant Boost Inverter Featuring SiC Module for High Performance Induction Heating Induction heating has become the technology of choice in many industrial, domestic and medical applications due to its high efficiency and performance. This paper proposes...

A Novel Soft-Switching Interleaved Coupled-Inductor Boost Converter with Only Single Auxiliary Circuit

by nexgentech | Oct 31, 2017 | ieee project

A Novel Soft-Switching Interleaved Coupled-Inductor Boost Converter with Only Single Auxiliary Circuit Abstract A novel soft-switching interleaved coupled- inductor boost converter is proposed in this paper. Only a single active soft-switching module is needed to...

Discontinuous Current Mode Operation of Two-Phase Interleaved Boost Dc-dc Converter with Coupled-inductor

by nexgentech | Oct 31, 2017 | ieee project

Discontinuous Current Mode Operation of Two-Phase Interleaved Boost Dc-dc Converter with Coupled-inductor Abstract A two-phase interleaved boost dc-dc converter with an inversely coupled inductor in a discontinuous current mode (DCM) is analyzed by the equivalent...

A Novel Interleaved Non-Isolated Ultra High Step-Up DC-DC Converter with ZVS Performance

by nexgentech | Oct 31, 2017 | ieee project

A Novel Interleaved Non-Isolated Ultra High Step-Up DC-DC Converter with ZVS Performance Abstract This paper presents an interleaved nonisolated  DC-DC converter with high voltage gain and zero voltage switching (ZVS) performance. Both coupled inductor and voltage...

Zero-Voltage Transition Interleaved Boost Converter with an Auxiliary Coupled Inductor

by nexgentech | Oct 31, 2017 | ieee project

Zero-Voltage Transition Interleaved Boost Converter with an Auxiliary Coupled Inductor   This paper proposes a soft-switched interleaved boost converter with minimal conduction loss increment and removed reverse-recovery problem. The soft-switching operation is...

A High Efficiency Step-Up Current-Fed Push-Pull Quasi-Resonant Converter with Fewer Components for Fuel Cell Application

by nexgentech | Oct 31, 2017 | ieee project

A High Efficiency Step-Up Current-Fed Push-Pull Quasi-Resonant Converter with Fewer Components for Fuel Cell Application Abstract In this paper, a new high efficiency step-up current-fed push-pull quasi-resonant converter is proposed, which is suitable for low-voltage...

Zero-Ripple Input Current High Step-Up Boost-SEPIC DC-DC Converter with Reduced Switch Voltage Stress

by nexgentech | Oct 31, 2017 | ieee project

Zero-Ripple Input Current High Step-Up Boost-SEPIC DC-DC Converter with  Reduced Switch Voltage Stress   Abstract-   This paper proposes a zero-ripple input current high step-up boost-SEPIC DC-DC converter with reduced switch voltage stress to overcome some...

A High-Voltage-Gain DC-DC Converter Based on Modified son Charge Pump Voltage Multiplier

by nexgentech | Oct 31, 2017 | ieee project

A High-Voltage-Gain DC-DC Converter Based on Modified son Charge Pump Voltage Multiplier  Abstract A high-voltage-gain dc-dc converter is  introduced in this paper. The proposed converter resembles a two-phase interleaved boost converter on its input side while having...
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