The paper focuses on a near-field wireless power transmission link consisting of two magnetically coupled inductances. The case of a resonant coupling realized by adding appropriate compensating capacitances is solved. By using a network formalism, the link is modeled as a two-port network and rigorously analyzed in the case where both the input impedance and the load are specified. In particular, it is demonstrated that there is just one optimum design of the network that allows maximizing both the efficiency and the active power on the load. Closed-form design formulas for the optimum design are presented and validated by circuital simulations
The paper deals with the design of a wireless power transfer link realized by coupled inductors. It ...
none6noWe deal with the design of a wireless power transfer link realized by coupled inductors. It i...
Medium-range wireless power transfer (WPT) can be realized in several different ways, e.g. by using ...
This paper focuses on a near-field wireless power transmission link consisting of two magnetically c...
This paper focuses on a near-field wireless power transmission link consisting of two magnetically c...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
A novel approach for the rigorous design of magnetic resonant wireless power transfer links is intro...
A novel approach for the rigorous design of magnetic resonant wireless power transfer links is intro...
A novel approach for the rigorous design of magnetic resonant wireless power transfer links is intro...
Magnetic resonant wireless power transfer has been typically realized by using systems of coupled re...
Magnetic resonant wireless power transfer has been typically realized by using systems of coupled re...
Magnetic resonant wireless power transfer has been typically realized by using systems of coupled re...
The paper deals with the design of a wireless power transfer link realized by coupled inductors. It ...
none6noWe deal with the design of a wireless power transfer link realized by coupled inductors. It i...
Medium-range wireless power transfer (WPT) can be realized in several different ways, e.g. by using ...
This paper focuses on a near-field wireless power transmission link consisting of two magnetically c...
This paper focuses on a near-field wireless power transmission link consisting of two magnetically c...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
The optimal design problem for a wireless power transfer link based on a resonant inductive coupling...
A novel approach for the rigorous design of magnetic resonant wireless power transfer links is intro...
A novel approach for the rigorous design of magnetic resonant wireless power transfer links is intro...
A novel approach for the rigorous design of magnetic resonant wireless power transfer links is intro...
Magnetic resonant wireless power transfer has been typically realized by using systems of coupled re...
Magnetic resonant wireless power transfer has been typically realized by using systems of coupled re...
Magnetic resonant wireless power transfer has been typically realized by using systems of coupled re...
The paper deals with the design of a wireless power transfer link realized by coupled inductors. It ...
none6noWe deal with the design of a wireless power transfer link realized by coupled inductors. It i...
Medium-range wireless power transfer (WPT) can be realized in several different ways, e.g. by using ...