© The Institution of Engineering and Technology 2019. This study proposes and analyses the integration of soft-switching technique with a single switch, non-isolated, coupled inductor DC–DC converter to achieve high efficiency and high step-up conversion ratio. The topology optimally integrates the coupled inductor and soft-switching technique using a parallel LC resonant tank circuit to maintain zero-current switching (ZCS) for on/off switching. The leakage inductance of the coupled inductor alleviates the reverse-recovery issue of diodes, and diodes can operate under ZCS condition. Moreover, the converter operates in a lower frequency range due to high step-up voltage gain. The principle of operation and steady-state analyses of the propo...
This paper introduces a single-switch, high step-up DC–DC converter for photovoltaic applications su...
This paper proposes a high-gain, highly efficient nonisolated bidirectional DC-DC converter with sof...
Abstract — This paper presents implementations of a non-isolated, high voltage gain DC-DC converter....
This study proposes and analyses the integration of soft-switching technique with a single switch, n...
This paper presents a new type of non-isolated single-switch step-up DC/DC converter with continuous...
This paper proposes a high step-up high-efficiency converter, comprised of an active switched couple...
High step-up DC–DC converters are increasingly required in many industrial applications. Conventiona...
In this article, a new nonisolated full soft-switching step-up dc/dc converter is introduced with a ...
This paper presents a dual inductor based current-fed bidirectional non-isolated DC–DC converter for...
An ultra-high gain DC-DC converter with single-switch structure is introduced in this paper. Full so...
In this paper, an optimal structure for a high step-up, non-isolated dc-dc converter is proposed. In...
© 2018 IEEE. High conversion gain of voltage is generally required to interface various renewable en...
This paper proposes a new soft-switched High Step-up DC-DC converter for energy storage systems in D...
In this paper, a new high voltage gain step-up dc-dc converter is proposed for interfacing renewable...
High conversion gain of voltage is generally required to interface various renewable energy sources,...
This paper introduces a single-switch, high step-up DC–DC converter for photovoltaic applications su...
This paper proposes a high-gain, highly efficient nonisolated bidirectional DC-DC converter with sof...
Abstract — This paper presents implementations of a non-isolated, high voltage gain DC-DC converter....
This study proposes and analyses the integration of soft-switching technique with a single switch, n...
This paper presents a new type of non-isolated single-switch step-up DC/DC converter with continuous...
This paper proposes a high step-up high-efficiency converter, comprised of an active switched couple...
High step-up DC–DC converters are increasingly required in many industrial applications. Conventiona...
In this article, a new nonisolated full soft-switching step-up dc/dc converter is introduced with a ...
This paper presents a dual inductor based current-fed bidirectional non-isolated DC–DC converter for...
An ultra-high gain DC-DC converter with single-switch structure is introduced in this paper. Full so...
In this paper, an optimal structure for a high step-up, non-isolated dc-dc converter is proposed. In...
© 2018 IEEE. High conversion gain of voltage is generally required to interface various renewable en...
This paper proposes a new soft-switched High Step-up DC-DC converter for energy storage systems in D...
In this paper, a new high voltage gain step-up dc-dc converter is proposed for interfacing renewable...
High conversion gain of voltage is generally required to interface various renewable energy sources,...
This paper introduces a single-switch, high step-up DC–DC converter for photovoltaic applications su...
This paper proposes a high-gain, highly efficient nonisolated bidirectional DC-DC converter with sof...
Abstract — This paper presents implementations of a non-isolated, high voltage gain DC-DC converter....