RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising candidate for ambient energy scavenging sources. In this research, a high-efficiency quad-band rectenna is designed for ambient RF wireless energy scavenging over the frequency range from 0.8 to 2.5 GHz. Firstly, the detailed characteristics (i.e., available frequency bands and associated power density levels) of the ambient RF power are studied and analyzed. The data (i.e., RF survey results) are then applied to aid the design of a new quad-band RF harvester. A newly designed impedance matching network (IMN) with an additional L-network in a third-branch of dual-port rectifier circuit is familiarized to increase the performance and RF-to-DC co...
A highly efficient and compact quad-band energy harvester (QBEH) circuit based on the extended compo...
This paper presents a quad-band, 3D mountable rectenna module for ambient energy harvesting. With th...
International audienceThe aim of this paper is to show the possibility to harvest Radio Frequency (R...
RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising ca...
RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising ca...
For low input radio frequency (RF) power from −35 to 5 dBm, a novel quad-band RF energy harvester (R...
For low input radio frequency (RF) power from −35 to 5 dBm, a novel quad-band RF energy harvester (R...
For low input radio frequency (RF) power from −35 to 5 dBm, a novel quad-band RF energy harvester (R...
This article proposes a quad-band multiport harvester that can scavenge ambient radio frequency (RF)...
In this paper, a long-range dual-band rectenna for harvesting ambient radio frequency (RF) energy fr...
In this paper, a long-range dual-band rectenna for harvesting ambient radio frequency (RF) energy fr...
International audienceEnergy harvesting technologies are required for autonomous applications, like ...
International audienceIn this paper, a 1.8 GHz to 2.6 GHz wideband rectenna is designed for Radio Fr...
International audienceIn this paper, a 1.8 GHz to 2.6 GHz wideband rectenna is designed for Radio Fr...
International audienceIn this paper, a 1.8 GHz to 2.6 GHz wideband rectenna is designed for Radio Fr...
A highly efficient and compact quad-band energy harvester (QBEH) circuit based on the extended compo...
This paper presents a quad-band, 3D mountable rectenna module for ambient energy harvesting. With th...
International audienceThe aim of this paper is to show the possibility to harvest Radio Frequency (R...
RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising ca...
RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising ca...
For low input radio frequency (RF) power from −35 to 5 dBm, a novel quad-band RF energy harvester (R...
For low input radio frequency (RF) power from −35 to 5 dBm, a novel quad-band RF energy harvester (R...
For low input radio frequency (RF) power from −35 to 5 dBm, a novel quad-band RF energy harvester (R...
This article proposes a quad-band multiport harvester that can scavenge ambient radio frequency (RF)...
In this paper, a long-range dual-band rectenna for harvesting ambient radio frequency (RF) energy fr...
In this paper, a long-range dual-band rectenna for harvesting ambient radio frequency (RF) energy fr...
International audienceEnergy harvesting technologies are required for autonomous applications, like ...
International audienceIn this paper, a 1.8 GHz to 2.6 GHz wideband rectenna is designed for Radio Fr...
International audienceIn this paper, a 1.8 GHz to 2.6 GHz wideband rectenna is designed for Radio Fr...
International audienceIn this paper, a 1.8 GHz to 2.6 GHz wideband rectenna is designed for Radio Fr...
A highly efficient and compact quad-band energy harvester (QBEH) circuit based on the extended compo...
This paper presents a quad-band, 3D mountable rectenna module for ambient energy harvesting. With th...
International audienceThe aim of this paper is to show the possibility to harvest Radio Frequency (R...