The efficiency of a wireless power transfer (WPT) system in the radiative near-field is inevitably affected by the variability in the design parameters of the deployed antennas and by uncertainties in their mutual position. Therefore, we propose a stochastic analysis that combines the generalized polynomial chaos (gPC) theory with an efficient model for the interaction between devices in the radiative near-field. This framework enables us to investigate the impact of random effects on the power transfer efficiency (PTE) of a WPT system. More specifically, the WPT system under study consists of a transmitting horn antenna and a receiving textile antenna operating in the Industrial, Scientific and Medical (ISM) band at 2.45 GHz. First, we mod...
User effects on portable antennas can decrease the global terminal performance, such as reducing the...
The polynomial chaos expansion is combined with a dedicated cylindrical cavity model to quantify the...
We leverage a generalized polynomial chaos (GPoC) expansion to model the effect of correlated random...
The efficiency of a wireless power transfer (WPT) system in the radiative near-field is inevitably a...
A novel framework to accurately quantify the effect of stochastic variations of design parameters on...
The paper addresses the uncertainty quantification of physical and geometrical material parameters i...
One of the many adverse effects modifying the performance of textile antennas in real operating cond...
The generalized polynomial chaos theory is combined with a dedicated cavity model for curved textile...
International audience<p>A methodology for modeling the Far Field (FF) radiated by antennas subject ...
This article presents a method to characterize stochastic observables defined by induced surface cur...
We establish a statistical framework for investigating the influence of correlated random displaceme...
International audienceThe power transfer efficiency in Wireless Power Transfer (WPT) systems depends...
International audience─ In this paper, different non-intrusive stochastic approaches are compared in...
User effects on portable antennas can decrease the global terminal performance, such as reducing the...
The polynomial chaos expansion is combined with a dedicated cylindrical cavity model to quantify the...
We leverage a generalized polynomial chaos (GPoC) expansion to model the effect of correlated random...
The efficiency of a wireless power transfer (WPT) system in the radiative near-field is inevitably a...
A novel framework to accurately quantify the effect of stochastic variations of design parameters on...
The paper addresses the uncertainty quantification of physical and geometrical material parameters i...
One of the many adverse effects modifying the performance of textile antennas in real operating cond...
The generalized polynomial chaos theory is combined with a dedicated cavity model for curved textile...
International audience<p>A methodology for modeling the Far Field (FF) radiated by antennas subject ...
This article presents a method to characterize stochastic observables defined by induced surface cur...
We establish a statistical framework for investigating the influence of correlated random displaceme...
International audienceThe power transfer efficiency in Wireless Power Transfer (WPT) systems depends...
International audience─ In this paper, different non-intrusive stochastic approaches are compared in...
User effects on portable antennas can decrease the global terminal performance, such as reducing the...
The polynomial chaos expansion is combined with a dedicated cylindrical cavity model to quantify the...
We leverage a generalized polynomial chaos (GPoC) expansion to model the effect of correlated random...