This paper presents a new topology for a high efficiency dc/dc resonant power converter that utilizes a resistance compression network to provide simultaneous zero voltage switching and near zero current switching across a wide range of input voltage, output voltage and power levels. The resistance compression network (RCN) maintains desired current waveforms over a wide range of voltage operating conditions. The use of on/off control in conjunction with narrowband frequency control enables high efficiency to be maintained across a wide range of power levels. The converter implementation provides galvanic isolation and enables large (greater than 1∶10) voltage conversion ratios, making the system suitable for large step-up conversion in app...
This paper presents the direct current (dc)-to-dc energy conversion with novel loaded-resonant conve...
The resonant DC-DC converter is known as advantageous over conventional DC-DC converter in terms of ...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
This paper presents a new topology for a high-efficiency dc/dc resonant power converter that utilize...
Abstract — This paper presents a new topology for a high efficiency dc/dc resonant power converter t...
This paper aims at developing a flyback based high step up dc-dc converter with high efficiency whic...
This paper introduces a new resonant converter architecture that utilizes multiple inverters and a l...
This paper introduces a new resonant converter architecture that utilizes multiple inverters and a l...
Grid-level power converters based on conventional architectures do not achieve very high efficiencie...
In this paper, we introduce a step-down resonant dc-dc converter architecture based on the newly-p...
This paper describes a step-up DC-DCconverter, which main task is to increase the voltage from alow ...
Resonant DC/DC converters are the class of converters, which have L-C resonant tank serving as a maj...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
This paper proposes a two-stage isolated dc-dc converter for electric vehicle charging applications,...
This paper presents the implementation and evaluation of an isolated resonant converter and also com...
This paper presents the direct current (dc)-to-dc energy conversion with novel loaded-resonant conve...
The resonant DC-DC converter is known as advantageous over conventional DC-DC converter in terms of ...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
This paper presents a new topology for a high-efficiency dc/dc resonant power converter that utilize...
Abstract — This paper presents a new topology for a high efficiency dc/dc resonant power converter t...
This paper aims at developing a flyback based high step up dc-dc converter with high efficiency whic...
This paper introduces a new resonant converter architecture that utilizes multiple inverters and a l...
This paper introduces a new resonant converter architecture that utilizes multiple inverters and a l...
Grid-level power converters based on conventional architectures do not achieve very high efficiencie...
In this paper, we introduce a step-down resonant dc-dc converter architecture based on the newly-p...
This paper describes a step-up DC-DCconverter, which main task is to increase the voltage from alow ...
Resonant DC/DC converters are the class of converters, which have L-C resonant tank serving as a maj...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
This paper proposes a two-stage isolated dc-dc converter for electric vehicle charging applications,...
This paper presents the implementation and evaluation of an isolated resonant converter and also com...
This paper presents the direct current (dc)-to-dc energy conversion with novel loaded-resonant conve...
The resonant DC-DC converter is known as advantageous over conventional DC-DC converter in terms of ...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...