We introduce an integrated design methodology for the optimisation of RF-to-DC conversion efficiency of multi-band rectennas (rectifying antennas), with the aim of harvesting the RF energy available in humanised environments. Existing RF sources can either operate at known frequencies, power budgets, and locations, or can be ubiquitously available at different frequency bands, and with unknown directions of incidence and polarisations. In all cases the RF link power budget may be extremely low. In order to harvest a significant quantity of energy it is thus mandatory to place a very special care in the design of each part of the receiving/storing system. For this purpose the receiving antenna must be optimised together with the rectifying c...
Radio-frequency (RF) energy harvesting (RFEH) and radiative wireless power transfer (WPT) have attra...
This work addresses two key topics in the field of energy harvesting and wireless power transfer. Th...
International audienceAmbient electromagnetic and RF energy is an ubiquitous energy resource that is...
We introduce an integrated design methodology for the optimisation of RF-to-DC conversion efficiency...
We introduce an integrated design methodology for the optimisation of RF-to-DC conversion efficiency...
We introduce a compact, lightweight and highly efficient multi-resonator rectenna (rectifying antenn...
In this paper an integrated design methodology to predict the real RF to DC conversion capability of...
The paper introduces a rigorous methodology for predicting RF-to-DC conversion in power harvesters. ...
The combination of EM theory, full-wave numerical analysis, and nonlinear circuit techniques into an...
A CAD solution is proposed combining EM theory, full-wave numerical analysis, and nonlinear circui...
In this paper we introduce a multi-source RF harvesting system designed by a combination of CAD tool...
In this chapter the exploitation of novel fabrics, in place of standard substrates and metallization...
The concept of wireless power transmission (WPT) has been introduced for nearly a century. Some of t...
Radio-frequency (RF) energy harvesting (RFEH) and radiative wireless power transfer (WPT) have attra...
This work addresses two key topics in the field of energy harvesting and wireless power transfer. Th...
International audienceAmbient electromagnetic and RF energy is an ubiquitous energy resource that is...
We introduce an integrated design methodology for the optimisation of RF-to-DC conversion efficiency...
We introduce an integrated design methodology for the optimisation of RF-to-DC conversion efficiency...
We introduce a compact, lightweight and highly efficient multi-resonator rectenna (rectifying antenn...
In this paper an integrated design methodology to predict the real RF to DC conversion capability of...
The paper introduces a rigorous methodology for predicting RF-to-DC conversion in power harvesters. ...
The combination of EM theory, full-wave numerical analysis, and nonlinear circuit techniques into an...
A CAD solution is proposed combining EM theory, full-wave numerical analysis, and nonlinear circui...
In this paper we introduce a multi-source RF harvesting system designed by a combination of CAD tool...
In this chapter the exploitation of novel fabrics, in place of standard substrates and metallization...
The concept of wireless power transmission (WPT) has been introduced for nearly a century. Some of t...
Radio-frequency (RF) energy harvesting (RFEH) and radiative wireless power transfer (WPT) have attra...
This work addresses two key topics in the field of energy harvesting and wireless power transfer. Th...
International audienceAmbient electromagnetic and RF energy is an ubiquitous energy resource that is...