A novel design of active coils is proposed to reduce the magnetic field generated by the currents flowing into the coils of a wireless power transfer (WPT) system for recharging the batteries of an electric vehicle (EV). The main idea is to split the traditional active loop, in two separate shielding coils. They have semi-annular shape and are placed on the ground pad around the WPT primary coil. The geometry and excitation of the active coils are varied to minimize the magnetic field beside the active coils without degrading the WPT electrical performance
For wireless charging of electric vehicle (EV) batteries, high-frequency magnetic fields are generat...
This paper briefly overviews the design considerations, related equations and conditions for the mag...
Wireless power transmission (WPT) was discovered in the 1890s by Nikola Tesla and it was based on th...
A novel design of active coil shielding is proposed to reduce the magnetic field generated by the cu...
The shielding technique by active coils is proposed to mitigate the magnetic field produced by a dyn...
An active coil system is proposed to shield the magnetic field produced by a dynamic wireless power ...
This study deals with the optimization of a shielding structure composed by multiple active coils fo...
The shielding technique by active coils is proposed to mitigate the magnetic field produced by a wir...
The shielding technique by active coils is proposed to mitigate the magnetic field produced by a wir...
This paper deals with the shielding of the magnetic field generated by two planar coils of a wireles...
In this paper, we introduce the basic principles of wireless power transfer using magnetic field res...
In this paper, we quantitatively investigated the undesirable effects of the automotive body on the ...
An innovative shielding configuration of active coils is proposed to mitigate the magnetic field aro...
The wireless power transfer (WPT) system for electric vehicle (EV) typically has a pair of two magne...
The paper provides a parametric investigation on the magnetic field produced by a wireless power tra...
For wireless charging of electric vehicle (EV) batteries, high-frequency magnetic fields are generat...
This paper briefly overviews the design considerations, related equations and conditions for the mag...
Wireless power transmission (WPT) was discovered in the 1890s by Nikola Tesla and it was based on th...
A novel design of active coil shielding is proposed to reduce the magnetic field generated by the cu...
The shielding technique by active coils is proposed to mitigate the magnetic field produced by a dyn...
An active coil system is proposed to shield the magnetic field produced by a dynamic wireless power ...
This study deals with the optimization of a shielding structure composed by multiple active coils fo...
The shielding technique by active coils is proposed to mitigate the magnetic field produced by a wir...
The shielding technique by active coils is proposed to mitigate the magnetic field produced by a wir...
This paper deals with the shielding of the magnetic field generated by two planar coils of a wireles...
In this paper, we introduce the basic principles of wireless power transfer using magnetic field res...
In this paper, we quantitatively investigated the undesirable effects of the automotive body on the ...
An innovative shielding configuration of active coils is proposed to mitigate the magnetic field aro...
The wireless power transfer (WPT) system for electric vehicle (EV) typically has a pair of two magne...
The paper provides a parametric investigation on the magnetic field produced by a wireless power tra...
For wireless charging of electric vehicle (EV) batteries, high-frequency magnetic fields are generat...
This paper briefly overviews the design considerations, related equations and conditions for the mag...
Wireless power transmission (WPT) was discovered in the 1890s by Nikola Tesla and it was based on th...