The robustness of wearable antennas to the human body proximity can be improved by properly placing the radiating element over a ground plane, or by shaping the ground plane, on the basis of the antenna electric and magnetic energy density distributions, aiming to confine the electric energy density in specific regions far from the antenna border. The effectiveness of the above design criterion has been assessed through both numerical analysis and experimental measurements, by optimizing the position of the radiating element of a wearable grounded ultrahigh frequency radio frequency identification tag operating at the ETSI band (865-868 MHz), with respect to its ground plane. A flexible tag characterization and performance evaluation platfo...
Recent progresses in the design of wearable RFID-tag antennas stimulate the idea of passive body-cen...
The robustness of grounded wearable antennas for UHF-RFID (Radio Frequency Identification) transpond...
A novel printed antenna is designed for wearable and RFID applications in the UHF band. The antenna ...
The robustness of wearable antennas to the human body proximity can be improved by properly placing ...
The robustness of wearable UHF-band planar inverted-F antennas (PIFAs), with respect to body-antenna...
The robustness of wearable Ultra-High Frequency (UHF)-band planar inverted-F Antennas (PIFAs) with r...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
The robustness of wearable UHF-band grounded antennas with respect to body-coupling effects is addre...
An experimental approach is proposed to validate the theoretical energy-based considerations for wea...
Main challenges while designing wearable antennas are related to the fact that the antenna platform,...
An antenna design criterion based on the simulated distribution of electric and magnetic energy dens...
The robustness of wearable UHF-band planar inverted-F antennas (PIFAs), with respect to body-antenna...
Several wearable antennas suitable for implementation of UHF-RFID tags have been presented in the op...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
A number of wearable antennas suitable for implementation of UHF-RFID tags have been presented in th...
Recent progresses in the design of wearable RFID-tag antennas stimulate the idea of passive body-cen...
The robustness of grounded wearable antennas for UHF-RFID (Radio Frequency Identification) transpond...
A novel printed antenna is designed for wearable and RFID applications in the UHF band. The antenna ...
The robustness of wearable antennas to the human body proximity can be improved by properly placing ...
The robustness of wearable UHF-band planar inverted-F antennas (PIFAs), with respect to body-antenna...
The robustness of wearable Ultra-High Frequency (UHF)-band planar inverted-F Antennas (PIFAs) with r...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
The robustness of wearable UHF-band grounded antennas with respect to body-coupling effects is addre...
An experimental approach is proposed to validate the theoretical energy-based considerations for wea...
Main challenges while designing wearable antennas are related to the fact that the antenna platform,...
An antenna design criterion based on the simulated distribution of electric and magnetic energy dens...
The robustness of wearable UHF-band planar inverted-F antennas (PIFAs), with respect to body-antenna...
Several wearable antennas suitable for implementation of UHF-RFID tags have been presented in the op...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
A number of wearable antennas suitable for implementation of UHF-RFID tags have been presented in th...
Recent progresses in the design of wearable RFID-tag antennas stimulate the idea of passive body-cen...
The robustness of grounded wearable antennas for UHF-RFID (Radio Frequency Identification) transpond...
A novel printed antenna is designed for wearable and RFID applications in the UHF band. The antenna ...