Javascript must be enabled to continue!
Development of a Solar-Powered Wireless Power Transfer System for Electric Vehicle Charging
View through CrossRef
The rapid growth of electric vehicles has created an increasing demand for efficient and sustainable charging technologies. Conventional plug-in charging methods require physical connectors, which may lead to safety concerns, cable wear, and limited charging convenience. Wireless power transfer technology has emerged as a promising solution for electric vehicle charging by enabling contactless energy transmission between the charging station and the vehicle. At the same time, integrating renewable energy sources such as solar power with wireless charging systems can further enhance sustainability and reduce dependence on conventional electrical grids. This paper presents the design and performance evaluation of a solar powered wireless charging system for electric vehicles. The proposed system utilizes a photovoltaic panel as the primary energy source, which converts solar radiation into electrical energy. The generated electrical power is regulated and supplied to a wireless power transmission unit consisting of a transmitter coil and a receiver coil. Energy is transferred through inductive coupling between the two coils and is then used to charge the electric vehicle battery through a power conditioning circuit. A prototype system was developed using a photovoltaic module, power regulation circuit, wireless transmitter and receiver coils, and a rechargeable battery unit. Experimental investigations were carried out to evaluate the performance of the system under different operating conditions, including variations in solar power availability and coil separation distance. The results show that the proposed system is capable of delivering stable wireless charging with reasonable efficiency for short transmission distances. The efficiency of power transfer decreases with increasing coil distance due to reduced magnetic coupling, while the solar output power varies depending on solar irradiance. The experimental results demonstrate that the integration of solar energy with wireless power transfer can provide an environmentally friendly and convenient charging solution for electric vehicles. The proposed system offers potential applications in smart parking infrastructure, autonomous charging stations, and a sustainable transportation system
Title: Development of a Solar-Powered Wireless Power Transfer System for Electric Vehicle Charging
Description:
The rapid growth of electric vehicles has created an increasing demand for efficient and sustainable charging technologies.
Conventional plug-in charging methods require physical connectors, which may lead to safety concerns, cable wear, and limited charging convenience.
Wireless power transfer technology has emerged as a promising solution for electric vehicle charging by enabling contactless energy transmission between the charging station and the vehicle.
At the same time, integrating renewable energy sources such as solar power with wireless charging systems can further enhance sustainability and reduce dependence on conventional electrical grids.
This paper presents the design and performance evaluation of a solar powered wireless charging system for electric vehicles.
The proposed system utilizes a photovoltaic panel as the primary energy source, which converts solar radiation into electrical energy.
The generated electrical power is regulated and supplied to a wireless power transmission unit consisting of a transmitter coil and a receiver coil.
Energy is transferred through inductive coupling between the two coils and is then used to charge the electric vehicle battery through a power conditioning circuit.
A prototype system was developed using a photovoltaic module, power regulation circuit, wireless transmitter and receiver coils, and a rechargeable battery unit.
Experimental investigations were carried out to evaluate the performance of the system under different operating conditions, including variations in solar power availability and coil separation distance.
The results show that the proposed system is capable of delivering stable wireless charging with reasonable efficiency for short transmission distances.
The efficiency of power transfer decreases with increasing coil distance due to reduced magnetic coupling, while the solar output power varies depending on solar irradiance.
The experimental results demonstrate that the integration of solar energy with wireless power transfer can provide an environmentally friendly and convenient charging solution for electric vehicles.
The proposed system offers potential applications in smart parking infrastructure, autonomous charging stations, and a sustainable transportation system.
Related Results
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 ...
RESOURCE-SAVING CHARGING SYSTEMS OF ELECTRIC VEHICLES WITH ELECTRIC DRIVES IN URBAN POWER NETWORKS
RESOURCE-SAVING CHARGING SYSTEMS OF ELECTRIC VEHICLES WITH ELECTRIC DRIVES IN URBAN POWER NETWORKS
Today, almost the entire world is experiencing the so-called transport revolution associated with the widespread
market introduction and use of both hybrid vehicles and electric ve...
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...
Electric Vehicle Charging Station Site
Electric Vehicle Charging Station Site
Abstract: With the rapid adoption of electric vehicles (EVs) worldwide, the demand for efficient and accessible charging infrastructure has become increasingly significant. Electri...
Study of High Power Dynamic Charging System
Study of High Power Dynamic Charging System
<div class="section abstract"><div class="htmlview paragraph">The use of electric vehicles (EV) is becoming more widespread as a response to global warming. The major i...
Enhancing electromagnetic compatibility and energy efficiency of electric vehicle charging stations
Enhancing electromagnetic compatibility and energy efficiency of electric vehicle charging stations
Problem. The article proposes a single-link structure for an electric vehicle charging station utilizing an active four-square rectifier with power factor correction. A Matlab mode...
Solar-powered bidirectional charging of electric vehicle
Solar-powered bidirectional charging of electric vehicle
Solar-powered bidirectional charging of an electric vehicle has three different modes of operation. The first mode of operation is “solar-powered electric vehicle charging” in whic...
Solar Powered Wireless Electric Vehicle Charging Station
Solar Powered Wireless Electric Vehicle Charging Station
The rapid growth of electric vehicles (EVs) has increased the demand for efficient, safe, and sustainable charging
infrastructure. Conventional EV charging systems rely heavily on ...

