Wireless power transfer (WPT) based on magnetic resonant coupling is a promising technology in many industrial applications. Efficiency of the WPT system usually depends on the tilt angle of the transmitter or the receiver coil. This work analyzes the effect of the tilt angle on the efficiency of the WPT system with horizontal misalignment. The mutual inductance between two coils located at arbitrary positions with tilt angles is calculated using a numerical analysis based on the Neumann formula. The efficiency of the WPT system with a tilted coil is extracted using an equivalent circuit model with extracted mutual inductance. By analyzing the results, we propose an optimal tilt angle to maximize the efficiency of the WPT system. The best a...
2-coil non-radiative wireless power transfer (WPT) is studied to find the coil diameter ratio to eff...
For magnetic-coupled resonator wireless power transmission (WPT) systems, higher power transfer effi...
In this paper, parameter analysis of the inductive coils is evaluated for low power Wireless Power T...
Magnetically coupled resonant (MCR) wireless power transfer (WPT) is a promising technology, which h...
When the transmitting and receiving coils are equivalent with or not significantly smaller than thei...
In wireless power transfer (WPT) systems using magnetic coupling resonance, when there is a registra...
In wireless power transfer (WPT) systems, the energy transmission channel is established by the coup...
The efficiency of near field magnetic resonant wireless power transfer (WPT) systems depends on the ...
Wireless power transfer (WPT) using magnetic resonant coupling technology, came into focus promptly ...
In Wireless Power Transfer (WPT) systems the proportion of energy received by the load is critical a...
The improvement of misalignment tolerance is a key challenge for the optimization of wireless power ...
Wireless power transfer (WPT) system based on magnetic resonant coupling can realize the mid-range w...
Abstract This paper presents a multifunctional coil technique to enhance the transfer efficiency of ...
Wireless power transfer (WPT) using inductive and resonant coupling has been widely explored in rece...
The proper selection of winding parameters for resonant circuits in inductive power transmission sys...
2-coil non-radiative wireless power transfer (WPT) is studied to find the coil diameter ratio to eff...
For magnetic-coupled resonator wireless power transmission (WPT) systems, higher power transfer effi...
In this paper, parameter analysis of the inductive coils is evaluated for low power Wireless Power T...
Magnetically coupled resonant (MCR) wireless power transfer (WPT) is a promising technology, which h...
When the transmitting and receiving coils are equivalent with or not significantly smaller than thei...
In wireless power transfer (WPT) systems using magnetic coupling resonance, when there is a registra...
In wireless power transfer (WPT) systems, the energy transmission channel is established by the coup...
The efficiency of near field magnetic resonant wireless power transfer (WPT) systems depends on the ...
Wireless power transfer (WPT) using magnetic resonant coupling technology, came into focus promptly ...
In Wireless Power Transfer (WPT) systems the proportion of energy received by the load is critical a...
The improvement of misalignment tolerance is a key challenge for the optimization of wireless power ...
Wireless power transfer (WPT) system based on magnetic resonant coupling can realize the mid-range w...
Abstract This paper presents a multifunctional coil technique to enhance the transfer efficiency of ...
Wireless power transfer (WPT) using inductive and resonant coupling has been widely explored in rece...
The proper selection of winding parameters for resonant circuits in inductive power transmission sys...
2-coil non-radiative wireless power transfer (WPT) is studied to find the coil diameter ratio to eff...
For magnetic-coupled resonator wireless power transmission (WPT) systems, higher power transfer effi...
In this paper, parameter analysis of the inductive coils is evaluated for low power Wireless Power T...