Coil design is one of the critical part to get high power transfer efficiency for wireless power transfer (WPT) system. There exists coil figure of merit (FOM), which is used to evaluate coil design in the aspect of WPT system efficiency. WPT coil FOM is function of coil quality factor (Q-factor) and coupling coefficient, k and higher Q and k guarantees higher coil-to-coil efficiency. Coil DC loss, skin effect, proximity effect, and displacement current between turns are key factors to determine Q-factor and its effects changes depending on wire-type, winding method, and target frequency. In this paper, we focus on transmitter coil design to maximize Q-factor in both 100 MHz and 6.78 MHz. Coil Q-factor equations are provided to explain and ...
Wireless power transfer (WPT) technology is widely used in the current world today. Mobile phones, e...
This study aims to increase the coupling coefficient of the coils and power transfer efficiency (PTE...
The improvement of misalignment tolerance is a key challenge for the optimization of wireless power ...
2-coil non-radiative wireless power transfer (WPT) is studied to find the coil diameter ratio to eff...
The reduction of coil design cost is essential to integrating wireless power transfer (WPT) systems ...
A Wireless Power Transfer system for charging electric vehicles must have high efficiency to compete...
A Wireless Power Transfer system for charging electric vehicles must have high efficiency to compete...
Increasing the resonant frequency of a wireless power transfer (WPT) system effectively improves the...
Increasing the resonant frequency of a wireless power transfer (WPT) system effectively improves the...
The proper selection of winding parameters for resonant circuits in inductive power transmission sys...
Wireless power transmission (WPT) was discovered in the 1890s by Nikola Tesla and it was based on th...
This paper analyses the relationship between the coil design parameters and the system performance, ...
Wireless power transmission (WPT) is a hot topic today. However, researches on magnetic coupling res...
In a wireless power transfer (WPT) system, misalignment on the transceiver side has a major impact o...
In a wireless power transfer (WPT) system, misalignment on the transceiver side has a major impact o...
Wireless power transfer (WPT) technology is widely used in the current world today. Mobile phones, e...
This study aims to increase the coupling coefficient of the coils and power transfer efficiency (PTE...
The improvement of misalignment tolerance is a key challenge for the optimization of wireless power ...
2-coil non-radiative wireless power transfer (WPT) is studied to find the coil diameter ratio to eff...
The reduction of coil design cost is essential to integrating wireless power transfer (WPT) systems ...
A Wireless Power Transfer system for charging electric vehicles must have high efficiency to compete...
A Wireless Power Transfer system for charging electric vehicles must have high efficiency to compete...
Increasing the resonant frequency of a wireless power transfer (WPT) system effectively improves the...
Increasing the resonant frequency of a wireless power transfer (WPT) system effectively improves the...
The proper selection of winding parameters for resonant circuits in inductive power transmission sys...
Wireless power transmission (WPT) was discovered in the 1890s by Nikola Tesla and it was based on th...
This paper analyses the relationship between the coil design parameters and the system performance, ...
Wireless power transmission (WPT) is a hot topic today. However, researches on magnetic coupling res...
In a wireless power transfer (WPT) system, misalignment on the transceiver side has a major impact o...
In a wireless power transfer (WPT) system, misalignment on the transceiver side has a major impact o...
Wireless power transfer (WPT) technology is widely used in the current world today. Mobile phones, e...
This study aims to increase the coupling coefficient of the coils and power transfer efficiency (PTE...
The improvement of misalignment tolerance is a key challenge for the optimization of wireless power ...