Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

An Efficient Interleaved Three-Level Buck Converter for Fast Charging Applications

View through CrossRef
   Abstract- The growing demand for fast and efficient battery charging in modern electronic devices and electric vehicles has increased the need for advanced power converter topologies. Conventional DC–DC buck converters often suffer from high current ripple, reduced efficiency, and thermal stress under high-power fast charging conditions. To address these challenges, this project proposes an interleaved three-level buck converter for fast charging applications. The proposed topology combines the advantages of interleaving and three-level conversion techniques to enhance overall performance. Interleaving distributes the input current across multiple phases, reducing current ripple, minimizing component stress, and improving thermal performance. Meanwhile, the three-level structure lowers voltage stress across switching devices and increases conversion efficiency. The converter provides stable output voltage regulation while supporting higher charging currents required for fast charging systems. Simulation and analysis demonstrate improved efficiency, reduced ripple, and faster charging capability compared to conventional converter designs. Therefore, the proposed interleaved three-level buck converter is a promising solution for high-efficiency and high-power fast charging applications in electric vehicles and battery-powered devices. Keywords: Interleaved Buck Converter, Three-Level Buck Converter, Fast Charging, DC–DC Converter, Battery Charging, High Efficiency.
Title: An Efficient Interleaved Three-Level Buck Converter for Fast Charging Applications
Description:
   Abstract- The growing demand for fast and efficient battery charging in modern electronic devices and electric vehicles has increased the need for advanced power converter topologies.
Conventional DC–DC buck converters often suffer from high current ripple, reduced efficiency, and thermal stress under high-power fast charging conditions.
To address these challenges, this project proposes an interleaved three-level buck converter for fast charging applications.
The proposed topology combines the advantages of interleaving and three-level conversion techniques to enhance overall performance.
Interleaving distributes the input current across multiple phases, reducing current ripple, minimizing component stress, and improving thermal performance.
Meanwhile, the three-level structure lowers voltage stress across switching devices and increases conversion efficiency.
The converter provides stable output voltage regulation while supporting higher charging currents required for fast charging systems.
Simulation and analysis demonstrate improved efficiency, reduced ripple, and faster charging capability compared to conventional converter designs.
Therefore, the proposed interleaved three-level buck converter is a promising solution for high-efficiency and high-power fast charging applications in electric vehicles and battery-powered devices.
Keywords: Interleaved Buck Converter, Three-Level Buck Converter, Fast Charging, DC–DC Converter, Battery Charging, High Efficiency.

Related Results

Design and Simulation Converter with Buck-boost Converter as The Voltage Stabilizer
Design and Simulation Converter with Buck-boost Converter as The Voltage Stabilizer
Buck-boost Converter is the device with the function to convert DC Voltage input to the setpoint DC Voltage output. Buck-boost converter can be used for regulating unstable voltage...
An Efficient Interleaved Three-Level Buck Converter for Fast Charging Applications
An Efficient Interleaved Three-Level Buck Converter for Fast Charging Applications
Fast charging systems demand power converters that deliver high efficiency, minimal current ripple, rapid dynamic response, and a compact footprint. Traditional buck converters, ho...
Design of Buck Converter Based on Maximum Power Point Tracking for Photovoltaic Applications
Design of Buck Converter Based on Maximum Power Point Tracking for Photovoltaic Applications
e MPPT converter ensures that the PV system operates at the maximum power point, which is the point where the solar panels can generate the most power. This is done by adjusting th...
Automated charging of electric cars for improving user experience and charging infrastructure utilization
Automated charging of electric cars for improving user experience and charging infrastructure utilization
The number of electric cars on the roads is steadily increasing and it is expected that the markets of battery-electric vehicles will experience an accelerated growth during the up...
Modeling EV Charging Station Loads Considering On-Road Wireless Charging Capabilities
Modeling EV Charging Station Loads Considering On-Road Wireless Charging Capabilities
Electric vehicle (EV) customers are expected to charge EV batteries at a rapid EV charging station or via on-road wireless EV charging systems when possible, as per their charging ...
Dynamic Charging Method for Fast Charging of Lithium-Ion Batteries and State of Health Estimation
Dynamic Charging Method for Fast Charging of Lithium-Ion Batteries and State of Health Estimation
Lithium-ion batteries (LIBs) are widely used in electric vehicles (EVs) due to their excellent characteristics, including high energy density, energy efficiency, long cycle life, a...
Revolusi Hijau: Otomatisasi Baterai dalam Energi Surya
Revolusi Hijau: Otomatisasi Baterai dalam Energi Surya
ABSTRACT This research investigates a battery charging system using renewable energy with the help of a buck converter, which functions to step down the voltage from the renewable ...
A Review of the Development of Power Converters and Controls for Fast Charging Electric Vehicles
A Review of the Development of Power Converters and Controls for Fast Charging Electric Vehicles
The review explores the development of advanced power converter topologies and control strategies for high-power fast-charging systems in electric vehicles (EVs). Fast-charging sys...

Back to Top