Abstract—Efficient and compact wireless power transfer (WPT) systems are proposed and designed for recharging small implantable medical devices. They use the magnetic resonance coupling scheme to transfer power over a relatively large distance. The receiver resonator coil and the load loop are designed in correspondence to size restriction of implantable devices. The dimensions of the coils are optimized and effective values of the lumped capacitors are investigated and fine-tuned for efficiency enhancement. Three design configurations of the WPT system, each consisting of two coils at the transmitter and two coils at the receiver, are designed and fabricated. The transfer efficiency is measured over different transmission distances and wit...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We propose the integration of the resonant coil for wireless power transfer (WPT) and the implantabl...
Magnetic resonant wireless power transfer (MRWPT) technology has great potential in delivering power...
Magnetic resonance-based wireless power delivery provides a harmless way for powering implantable bi...
With the developments of mobile and implantable devices, wireless power transfer (WPT) has become in...
In this study, a wireless power transfer system for miniaturized biomedical implants has been optimi...
This paper presents a physically small wireless power transfer (WPT) system that is able to provide ...
This paper proposes the design of an engineered Wireless Power Transfer circuit for a 13.56 MHz mini...
This paper proposes the design of an engineered Wireless Power Transfer circuit for a 13.56 MHz mini...
This paper proposes the design of an engineered Wireless Power Transfer circuit for a 13.56 MHz mini...
Wireless power transfer (WPT) system based on magnetic resonance is presented here. The aim is to tr...
Wireless power transfer via magnetically resonant coupling is a new technology to deliver power over...
This thesis aims to examine the hypothesis that “Power of more than 1 mW can be received by the mi...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We propose the integration of the resonant coil for wireless power transfer (WPT) and the implantabl...
Magnetic resonant wireless power transfer (MRWPT) technology has great potential in delivering power...
Magnetic resonance-based wireless power delivery provides a harmless way for powering implantable bi...
With the developments of mobile and implantable devices, wireless power transfer (WPT) has become in...
In this study, a wireless power transfer system for miniaturized biomedical implants has been optimi...
This paper presents a physically small wireless power transfer (WPT) system that is able to provide ...
This paper proposes the design of an engineered Wireless Power Transfer circuit for a 13.56 MHz mini...
This paper proposes the design of an engineered Wireless Power Transfer circuit for a 13.56 MHz mini...
This paper proposes the design of an engineered Wireless Power Transfer circuit for a 13.56 MHz mini...
Wireless power transfer (WPT) system based on magnetic resonance is presented here. The aim is to tr...
Wireless power transfer via magnetically resonant coupling is a new technology to deliver power over...
This thesis aims to examine the hypothesis that “Power of more than 1 mW can be received by the mi...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We present a new Resonant Wireless Power Transfer system based on a geometrically optimized coil and...
We propose the integration of the resonant coil for wireless power transfer (WPT) and the implantabl...
Magnetic resonant wireless power transfer (MRWPT) technology has great potential in delivering power...