This paper presents a comparison between three different topologies of electrically small inductances used in resonant wireless power transmission applications: the coil, the spiral and the ring. Firstly, the product of the coupling coefficient and the quality factor is validated as a good figure of merit for the comparison of different topologies. A theoretical analysis then shows that the coupling coefficient for the coil and the spiral is independent of the number of turns while the quality factor of the inductance is proportional to the number of turns. Simulation and experimental results are then presented to validate the theoretical results. They demonstrate that if the Q-factor of the capacitor is small compared to the inductance, th...
International audienceThis paper presents the conception and the analysis of a new, simple, compact ...
Recent research in wireless power transfer (WPT) using resonant inductive coupling has demonstrated ...
Recent research in wireless power transfer (WPT) using resonant inductive coupling has demonstrated...
The paper is devoted to the comparison of different types and different values of coils for inductiv...
The proper selection of winding parameters for resonant circuits in inductive power transmission sys...
This paper aims to study the performance of all basic inductive resonant wireless power transfer (WP...
Considering the massive development that took place in the past two decades, wireless power transfer...
In this paper, parameter analysis of the inductive coils is evaluated for low power Wireless Power T...
This paper aims to study the performance of all basic inductive resonant wireless power transfer (WP...
This paper proposes an inductive coupled wireless power transfer system that analyses the relationsh...
Wireless power transfer is a very promising technology in industrial applications. This paper analyz...
This paper investigates the performance of circuit topology used in wireless power applications to o...
This paper investigates the performance of circuit topology used in wireless power applications to o...
This paper investigates the performance of circuit topology used in wireless power applications opt...
This paper investigates the performance of circuit topology used in wireless power applications opt...
International audienceThis paper presents the conception and the analysis of a new, simple, compact ...
Recent research in wireless power transfer (WPT) using resonant inductive coupling has demonstrated ...
Recent research in wireless power transfer (WPT) using resonant inductive coupling has demonstrated...
The paper is devoted to the comparison of different types and different values of coils for inductiv...
The proper selection of winding parameters for resonant circuits in inductive power transmission sys...
This paper aims to study the performance of all basic inductive resonant wireless power transfer (WP...
Considering the massive development that took place in the past two decades, wireless power transfer...
In this paper, parameter analysis of the inductive coils is evaluated for low power Wireless Power T...
This paper aims to study the performance of all basic inductive resonant wireless power transfer (WP...
This paper proposes an inductive coupled wireless power transfer system that analyses the relationsh...
Wireless power transfer is a very promising technology in industrial applications. This paper analyz...
This paper investigates the performance of circuit topology used in wireless power applications to o...
This paper investigates the performance of circuit topology used in wireless power applications to o...
This paper investigates the performance of circuit topology used in wireless power applications opt...
This paper investigates the performance of circuit topology used in wireless power applications opt...
International audienceThis paper presents the conception and the analysis of a new, simple, compact ...
Recent research in wireless power transfer (WPT) using resonant inductive coupling has demonstrated ...
Recent research in wireless power transfer (WPT) using resonant inductive coupling has demonstrated...