The robustness of wearable UHF-band grounded antennas with respect to body-coupling effects is addressed through numerical investigations. Main goal is gaining physical insights on the relationship between the grounded antenna performance and the distribution of the electric and magnetic energy densities in the antenna near-field region close to the ground plane border. Two UHF Planar Inverted-F Antennas suggested in the open scientific literature for the implementation of Radio Frequency Identification (RFID) transponders and off-body communication systems, have here been considered as examples for the investigation. A criterion for choosing a proper shape of the antenna ground plane is specified, which can increase the antenna robustness ...
An experimental approach is proposed to validate the theoretical energy-based considerations for wea...
A novel printed antenna is designed for wearable and RFID applications in the UHF band. The antenna ...
The effect of the human body on wearable off-body communication antennas is studied in the frequency...
The robustness of wearable UHF-band grounded antennas with respect to body-coupling effects is addre...
The robustness of wearable UHF-band planar inverted-F antennas (PIFAs), with respect to body-antenna...
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...
Several wearable antennas suitable for implementation of UHF-RFID tags have been presented in the op...
The robustness of grounded wearable antennas for UHF-RFID (Radio Frequency Identification) transpond...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
The robustness of wearable antennas to the human body proximity can be improved by properly placing ...
A number of wearable antennas suitable for implementation of UHF-RFID tags have been presented in th...
Main challenges while designing wearable antennas are related to the fact that the antenna platform,...
Slotted PIFA on the textile substrate suitable for body-centric applications in the UHF band is prop...
An experimental approach is proposed to validate the theoretical energy-based considerations for wea...
A novel printed antenna is designed for wearable and RFID applications in the UHF band. The antenna ...
The effect of the human body on wearable off-body communication antennas is studied in the frequency...
The robustness of wearable UHF-band grounded antennas with respect to body-coupling effects is addre...
The robustness of wearable UHF-band planar inverted-F antennas (PIFAs), with respect to body-antenna...
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...
Several wearable antennas suitable for implementation of UHF-RFID tags have been presented in the op...
The robustness of grounded wearable antennas for UHF-RFID (Radio Frequency Identification) transpond...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
The robustness of wearable UHF-band ungrounded antennas with respect to body-coupling effects is add...
The robustness of wearable antennas to the human body proximity can be improved by properly placing ...
A number of wearable antennas suitable for implementation of UHF-RFID tags have been presented in th...
Main challenges while designing wearable antennas are related to the fact that the antenna platform,...
Slotted PIFA on the textile substrate suitable for body-centric applications in the UHF band is prop...
An experimental approach is proposed to validate the theoretical energy-based considerations for wea...
A novel printed antenna is designed for wearable and RFID applications in the UHF band. The antenna ...
The effect of the human body on wearable off-body communication antennas is studied in the frequency...