Hybrid maximum power extraction methods for photovoltaic systems: A comprehensive review
H Liu, MYA Khan, X Yuan - Energies, 2023 - mdpi.com
To efficiently and accurately track the Global Maximum Power Point (GMPP) of the PV
system under Varying Environmental Conditions (VECs), numerous hybrid Maximum Power …
system under Varying Environmental Conditions (VECs), numerous hybrid Maximum Power …
A hybrid photovoltaic-fuel cell for grid integration with jaya-based maximum power point tracking: experimental performance evaluation
S Padmanaban, N Priyadarshi, MS Bhaskar… - IEEE …, 2019 - ieeexplore.ieee.org
This paper deals the grid integration of photovoltaic (PV), fuel cell, and ultra-capacitor with
maximum power point tracking (MPPT). The voltage oriented control for the grid-integrated …
maximum power point tracking (MPPT). The voltage oriented control for the grid-integrated …
New family of non‐isolated step‐up/down and step‐up switched‐capacitor‐based DC–DC converters
Here, a new family of non‐isolated step‐up/down and step‐up switched‐capacitor (SC)‐
based DC–DC converters are proposed possessing many advantages as lower voltage …
based DC–DC converters are proposed possessing many advantages as lower voltage …
A hybridization of cuk and boost converter using single switch with higher voltage gain compatibility
In the current era, the desire for high boost DC-to-DC converter development has increased.
Notably, there has been voltage gain improvement without adding extra power switches …
Notably, there has been voltage gain improvement without adding extra power switches …
New transformer‐less DC–DC converter topologies with reduced voltage stress on capacitors and increased voltage conversion ratio
This article proposes new transformer‐less step‐up/down and step‐up DC–DC topologies
providing numerous merits such as less voltage stress on capacitors, lower duty‐cycle, and …
providing numerous merits such as less voltage stress on capacitors, lower duty‐cycle, and …
Equivalent circuit modeling and experimental analysis of low frequency metamaterial for efficient wireless power transfer
This study proposes a low-frequency metamaterial (MM) coupled with an equivalent circuit
model to emulate the behavior of an MM-based Wireless Power Transfer (WPT) system. For …
model to emulate the behavior of an MM-based Wireless Power Transfer (WPT) system. For …
A new transformer‐less step‐up DC–DC converter with high voltage gain and reduced voltage stress on switched‐capacitors and power switches for renewable …
In many modern applications such as renewable energy sources (RESs), DC–DC step‐up
converters can be used to regulate the input variable and/or low voltage to achieve the …
converters can be used to regulate the input variable and/or low voltage to achieve the …
Design and analysis of a high-gain step-up/down modular DC–DC converter with continuous input current and decreased voltage stress on power switches and …
Due to concerns, such as global warming and depletion of fossil fuels, countries are forced
to integrate energy storage devices (ESSs) and renewable energy sources (RESs), such as …
to integrate energy storage devices (ESSs) and renewable energy sources (RESs), such as …
Double stage double output dc–dc converters for high voltage loads in fuel cell vehicles
MS Bhaskar, S Padmanaban, JB Holm-Nielsen - Energies, 2019 - mdpi.com
This article aims to enhance the output voltage magnitude of fuel cells (FCs), since the
actual generation is low. The traditional technique is too complicated and has a cascaded or …
actual generation is low. The traditional technique is too complicated and has a cascaded or …
A novel high step-up DC–DC converter with improved P&O MPPT for photovoltaic applications
MYA Khan, H Liu, SM Hashemzadeh… - … Power Components and …, 2021 - Taylor & Francis
In this research work, a Maximum Power Point Tracking (MPPT) algorithm is proposed that
improves the tracking accuracy and efficiency of the conventional Perturb and Observe …
improves the tracking accuracy and efficiency of the conventional Perturb and Observe …