Nonisolated high step-up dc–dc converters: Comparative review and metrics applicability
H Tarzamni, HS Gohari, M Sabahi… - IEEE Transactions on …, 2023 - ieeexplore.ieee.org
Due to the extensive role of nonisolated high step-up dc–dc converters (NHSDC) s in
industrial applications and academic research works, many of these pulsewidth modulation …
industrial applications and academic research works, many of these pulsewidth modulation …
Non-Isolated n-Stage High Step-up DC-DC Converter for Low Voltage DC Source Integration
The dc-dc converters with high step-up DC-voltage gain play a vital role in integrating low
voltage DC sources. Though several converter topologies are reported in the recent past …
voltage DC sources. Though several converter topologies are reported in the recent past …
An optimal structure for high step-up nonisolated DC–DC converters with soft-switching capability and zero input current ripple
In this article, an optimal structure for a high step-up nonisolated dc–dc converter is
proposed. In this topology, the required high voltage gain can be obtained with a low …
proposed. In this topology, the required high voltage gain can be obtained with a low …
High step‐up DC–DC converter with coupled inductor suitable for renewable applications
In this study, a new non‐isolated high step‐up DC–DC converter is presented with high‐
voltage gain which is suitable for renewable applications. The proposed converter uses …
voltage gain which is suitable for renewable applications. The proposed converter uses …
Ultrahigh voltage gain DC–DC boost converter with ZVS switching realization and coupled inductor extendable voltage multiplier cell techniques
P Mohseni, S Mohammadsalehian… - IEEE Transactions …, 2021 - ieeexplore.ieee.org
In this article, a novel ultrahigh voltage gain dc–dc boost converter with expandable diode-
capacitor voltage multiplier (VM) cells is presented. The diode-capacitor VM cells and …
capacitor voltage multiplier (VM) cells is presented. The diode-capacitor VM cells and …
A new soft switching DC–DC converter with high voltage gain capability
P Mohseni, SH Hosseini… - IEEE Transactions on …, 2019 - ieeexplore.ieee.org
In this article, a new high step-up dc-dc converter with zero voltage switching (ZVS)
capability is presented for renewable energy applications. In order to achieve high voltage …
capability is presented for renewable energy applications. In order to achieve high voltage …
Coupled inductor‐based DC–DC converter with high voltage conversion ratio and smooth input current
VJ Samuel, G Keerthi, P Mahalingam - IET Power Electronics, 2020 - Wiley Online Library
In this study, a coupled inductor (CI)‐based high step‐up DC–DC converter is presented.
The proposed topology is developed from a primitive quadratic boost converter (QBC) …
The proposed topology is developed from a primitive quadratic boost converter (QBC) …
A single-switch high step-up DC–DC converter based on three-winding coupled inductor and pump capacitor unit
J Ding, S Zhao, S Gao, H Yin - IEEE Transactions on Power …, 2021 - ieeexplore.ieee.org
In this article, a novel single-switch, high step-up dc–dc converter based on three-winding
coupled inductor and voltage multiplier circuit (VMC) is proposed. And on this basis, pump …
coupled inductor and voltage multiplier circuit (VMC) is proposed. And on this basis, pump …
High step‐up DC‐DC converter with reduced voltage stress on devices
The aim of this study is to propose a new nonisolated direct current (DC)–DC converter
topology with high voltage gain and low voltage stress across the power devices. The …
topology with high voltage gain and low voltage stress across the power devices. The …
Controllability Analysis and Controller Design of Higher Order Novel Switched Inductor–Capacitor DC–DC Converters
S Gopinathan, VS Rao… - IEEE Transactions on …, 2023 - ieeexplore.ieee.org
Performance analysis and controller design of novel switched inductor–capacitor high-gain
dc–dc converters that are formed by a switch–diode–inductor–capacitor network (SDLCN) …
dc–dc converters that are formed by a switch–diode–inductor–capacitor network (SDLCN) …