In this work we present near-field wireless sensing of single and multiple open-ended micro coils using an electrically small loop antenna. Wirelessly characterized parameters of open-ended micro coils include its resonance frequency, quality factor and inductance. Moreover a wireless frequency-dependent analytical model was developed. Micro coil inductance was extracted from the wirelessly measured signal using a constraint-based least-squares approach. Wireless measurements and analytical fit of micro coils are in strong agreement which validates the analytical model. Finite element method (FEM) simulations of the coupled system were done in COMSOL Multiphysics
Considering the massive development that took place in the past two decades, wireless power transfer...
International audienceThis paper presents an improvement of small RFID tags detection in HF near fie...
This paper provides the accurate characterization of a wireless power transfer system consisting of ...
This paper reports wireless sensing of open loop micro inductors parameters i.e. distributed capacit...
Bioelectronics, which record the electrical activity of organisms, have become one of the major rese...
International audienceElectrodynamic wireless power transfer systems consist in sending power to an ...
This thesis presents a new multicoil reader to interrogate and locate an embeddable wireless sensor ...
This work presents modeling, fabrication and characterization of planar microcoils for wireless powe...
This paper presents theoretical modeling and circuit analysis of magneto-inductive communication cha...
In this paper the magnetic near field from a wireless power transfer (WPT) system that employs an ar...
This thesis deals with the optimization of resonators for wireless power transfer by resonant magnet...
Wireless power delivery to implantable biomedical devices by means of inductive coupling has been pr...
This thesis presents the novel mode-based analysis method for estimating some important characterist...
International audienceEarlier work on radiofrequency (RF) metasurfaces for preclinical MRI has targe...
Transmission between small antenna coils at 10.8 MHz is investigated in free space and near a flat, ...
Considering the massive development that took place in the past two decades, wireless power transfer...
International audienceThis paper presents an improvement of small RFID tags detection in HF near fie...
This paper provides the accurate characterization of a wireless power transfer system consisting of ...
This paper reports wireless sensing of open loop micro inductors parameters i.e. distributed capacit...
Bioelectronics, which record the electrical activity of organisms, have become one of the major rese...
International audienceElectrodynamic wireless power transfer systems consist in sending power to an ...
This thesis presents a new multicoil reader to interrogate and locate an embeddable wireless sensor ...
This work presents modeling, fabrication and characterization of planar microcoils for wireless powe...
This paper presents theoretical modeling and circuit analysis of magneto-inductive communication cha...
In this paper the magnetic near field from a wireless power transfer (WPT) system that employs an ar...
This thesis deals with the optimization of resonators for wireless power transfer by resonant magnet...
Wireless power delivery to implantable biomedical devices by means of inductive coupling has been pr...
This thesis presents the novel mode-based analysis method for estimating some important characterist...
International audienceEarlier work on radiofrequency (RF) metasurfaces for preclinical MRI has targe...
Transmission between small antenna coils at 10.8 MHz is investigated in free space and near a flat, ...
Considering the massive development that took place in the past two decades, wireless power transfer...
International audienceThis paper presents an improvement of small RFID tags detection in HF near fie...
This paper provides the accurate characterization of a wireless power transfer system consisting of ...