The wireless power transfer (WPT) system for electric vehicle (EV) typically has a pair of two magnetically coupled coils with the relatively large air gap between them. The time-varying currents flowing through the coils produce the intense magnetic near field around the coils which is inevitable to transfer the high power wirelessly. In this paper, we investigate the design of the coils with magnetic shielding with the air gap of 200 mm via the finite element analysis tool to minimize the magnetic near field from the WPT system for EV. The simulation results show that the minimization of the magnetic near field from the coils can be achieved by making the average winding diameters and the diameter of the ferrite shields to be √2 and 3 tim...
This paper describes a method to suppress the leakage magnetic field from a wireless power transfer ...
The electromagnetic field (EMF) in a wireless power transfer (WPT) system needs to couple inductivel...
Purpose: The paper presents the Finite Element (FE) evaluation of the magnetic field emitted by a Wi...
In this paper, we quantitatively investigated the undesirable effects of the automotive body on the ...
This paper deals with the shielding of the magnetic field generated by two planar coils of a wireles...
International audienceRecently, the number of electric vehicles (EVs) is increasing due to the decli...
In this paper, we proposed an optimized shield design for electromagnetic field (EMF) reduction from...
For wireless charging of electric vehicle (EV) batteries, high-frequency magnetic fields are generat...
This study deals with the optimization of a shielding structure composed by multiple active coils fo...
In this paper, the shielded coil structure using the ferrites and the metallic shielding is proposed...
A novel design of active coil shielding is proposed to reduce the magnetic field generated by the cu...
To meet the regulations established to limit human exposure to time-varying electromagnetic fields (...
This paper deals with the numerical evaluation of the magnetic field emitted by a wireless power sys...
Purpose: The paper presents the Finite Element (FE) evaluation of the magnetic field emitted by a Wi...
An active coil system is proposed to shield the magnetic field produced by a dynamic wireless power ...
This paper describes a method to suppress the leakage magnetic field from a wireless power transfer ...
The electromagnetic field (EMF) in a wireless power transfer (WPT) system needs to couple inductivel...
Purpose: The paper presents the Finite Element (FE) evaluation of the magnetic field emitted by a Wi...
In this paper, we quantitatively investigated the undesirable effects of the automotive body on the ...
This paper deals with the shielding of the magnetic field generated by two planar coils of a wireles...
International audienceRecently, the number of electric vehicles (EVs) is increasing due to the decli...
In this paper, we proposed an optimized shield design for electromagnetic field (EMF) reduction from...
For wireless charging of electric vehicle (EV) batteries, high-frequency magnetic fields are generat...
This study deals with the optimization of a shielding structure composed by multiple active coils fo...
In this paper, the shielded coil structure using the ferrites and the metallic shielding is proposed...
A novel design of active coil shielding is proposed to reduce the magnetic field generated by the cu...
To meet the regulations established to limit human exposure to time-varying electromagnetic fields (...
This paper deals with the numerical evaluation of the magnetic field emitted by a wireless power sys...
Purpose: The paper presents the Finite Element (FE) evaluation of the magnetic field emitted by a Wi...
An active coil system is proposed to shield the magnetic field produced by a dynamic wireless power ...
This paper describes a method to suppress the leakage magnetic field from a wireless power transfer ...
The electromagnetic field (EMF) in a wireless power transfer (WPT) system needs to couple inductivel...
Purpose: The paper presents the Finite Element (FE) evaluation of the magnetic field emitted by a Wi...