In this paper, an automated impedance matching circuit is proposed to match the impedance of the transmit and receive resonators for optimum wireless power transfer (WPT). This is achieved using a 2D open-circuited spiral antenna with magnetic resonance coupling in the low-frequency ISM band at 13.56 MHz. The proposed WPT can be adopted for a wide range of commercial applications, from electric vehicles to consumer electronics, such as tablets and smartphones. The results confirm a power transfer efficiency between the transmit and receive resonant circuits of 92%, with this efficiency being sensitive to the degree of coupling between the coupled pair of resonators
Non-radiative wireless power transfer (WPT) system using strong magnetic resonant coupling has been ...
For magnetic-coupled resonator wireless power transmission (WPT) systems, higher power transfer effi...
Wireless power transfer (WPT) is a technology that is considered the focus of scientists' attention ...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
To increase the usage of electric vehicles (EV), a safe and convenient method to charge the vehicles...
Wireless power transfer (WPT) using magnetic resonant coupling technology, came into focus promptly ...
Magnetic resonance coupling circuit is used in the inductive resonance based wireless power transfer...
A modified 4-coil magnetic resonance wireless power transfer (MRWPT) system is proposed. Four coils ...
For magnetic resonant coupled wireless power transfer (WPT), the axial movement of near-field couple...
The inductive resonance based wireless power transmission system is carried out with magnetic resona...
Non-radiative wireless power transfer (WPT) system using strong magnetic resonant coupling has been ...
For magnetic-coupled resonator wireless power transmission (WPT) systems, higher power transfer effi...
Wireless power transfer (WPT) is a technology that is considered the focus of scientists' attention ...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
In this paper, an automated impedance matching circuit is proposed to match the impedance of the tra...
To increase the usage of electric vehicles (EV), a safe and convenient method to charge the vehicles...
Wireless power transfer (WPT) using magnetic resonant coupling technology, came into focus promptly ...
Magnetic resonance coupling circuit is used in the inductive resonance based wireless power transfer...
A modified 4-coil magnetic resonance wireless power transfer (MRWPT) system is proposed. Four coils ...
For magnetic resonant coupled wireless power transfer (WPT), the axial movement of near-field couple...
The inductive resonance based wireless power transmission system is carried out with magnetic resona...
Non-radiative wireless power transfer (WPT) system using strong magnetic resonant coupling has been ...
For magnetic-coupled resonator wireless power transmission (WPT) systems, higher power transfer effi...
Wireless power transfer (WPT) is a technology that is considered the focus of scientists' attention ...