In this work we concentrate on the two possible regimes at which wireless power transfer can be attained. One regime allows to maximize either the power on the load or the efficiency, at a given fixed frequency, by changing the load value. Another regime keeps a fixed value for the load and, for a relatively wide variations of the coupling coefficient, attains fixed efficiency and power transfer by selecting an appropriate working frequency. These two operating regimes are rigorously introduced, relative solutions are analytically expressed and illustrated via numerical simulations
Electric Vehicles (EV) are every day more and more important and diffuse in all day life. The major ...
Recently, wireless power transfer (WPT) systems have been used as battery chargers for electric vehi...
none5noThe paper discusses two wireless power transfer systems for the charge of electric vehicles d...
A Moving Field Inductive Power Transfer (MFIPT) system for dynamic wireless inductive power supply o...
This paper derives an expression of efficiency of wireless power transfer on a situation that there ...
Topology selection of the wireless power transfer system is an important design step, since each top...
In these days, electric vehicles are enthusiastically researched as a countermeasure to air pollutio...
Wireless power transfer is currently a popular topic of research. Because there are no mechanical co...
This paper derives an expression of efficiency of wireless power transfer on a situation that there ...
This paper proposes a new and general method to optimize a working frequency and a load resistance i...
The On-line Electric Vehicle (OLEV) is an electric transport system in which the vehicle’s power is ...
Wireless power transfer is becoming a main concern to everyone staring with the producer to whatever...
In this paper three different operative regimes for a resonant inductive Wireless Power Transfer lin...
Recently, demand for electric vehicles has been increasing as a countermeasure against global warmin...
This article classifies, describes, and critically compares different compensation schemes, converte...
Electric Vehicles (EV) are every day more and more important and diffuse in all day life. The major ...
Recently, wireless power transfer (WPT) systems have been used as battery chargers for electric vehi...
none5noThe paper discusses two wireless power transfer systems for the charge of electric vehicles d...
A Moving Field Inductive Power Transfer (MFIPT) system for dynamic wireless inductive power supply o...
This paper derives an expression of efficiency of wireless power transfer on a situation that there ...
Topology selection of the wireless power transfer system is an important design step, since each top...
In these days, electric vehicles are enthusiastically researched as a countermeasure to air pollutio...
Wireless power transfer is currently a popular topic of research. Because there are no mechanical co...
This paper derives an expression of efficiency of wireless power transfer on a situation that there ...
This paper proposes a new and general method to optimize a working frequency and a load resistance i...
The On-line Electric Vehicle (OLEV) is an electric transport system in which the vehicle’s power is ...
Wireless power transfer is becoming a main concern to everyone staring with the producer to whatever...
In this paper three different operative regimes for a resonant inductive Wireless Power Transfer lin...
Recently, demand for electric vehicles has been increasing as a countermeasure against global warmin...
This article classifies, describes, and critically compares different compensation schemes, converte...
Electric Vehicles (EV) are every day more and more important and diffuse in all day life. The major ...
Recently, wireless power transfer (WPT) systems have been used as battery chargers for electric vehi...
none5noThe paper discusses two wireless power transfer systems for the charge of electric vehicles d...