This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency Identification (RFID) tags for wearable applications in a smart city/smart building environment. The proposed tag designs aim to reduce the overall footprint, enabling textile integration whilst maintaining the read range. The proposed RFID filament is less than 3.5 mm in width and 100 mm in length. The tag is based on an electrically small (0.0033λ 2 ) high-impedance planar dipole antenna with a tuning loop, maintaining a reflection coefficient less than −21 dB at 915 MHz, when matched to a commercial RFID chip mounted alongside the antenna. The antenna strip and the RFID chip are then encapsulated and integrated in a standard woven textile...
In this study, antennas for passive UHF RFID tags were created from a carbon-based stretchable condu...
In this paper, we present textile antennas fabricated for wearable RFID applications by cutting from...
Data supports the paper: Wagih, M.; Wei, Y.; Komolafe, A.; Torah, R.; Beeby, S. Reliable UHF Long-Ra...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper addresses the design and fabrication of an embroidered textile RFID tag antenna. The main...
A novel wearable radio frequency identification (RFID) tag with sensing, processing, and decision-ta...
A novel wearable radio frequency identification (RFID) tag with sensing, processing, and decision-ta...
This paper discusses the fabrication and wireless performance evaluation of textile-integrated passi...
Passive radio frequency identification-based technology is a convincing approach to the achievement ...
© 2022 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
© 2022 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
A flexible and totally wearable textile antenna is proposed by embroidering the conductive threads i...
In this study, antennas for passive UHF RFID tags were created from a carbon-based stretchable condu...
In this paper, we present textile antennas fabricated for wearable RFID applications by cutting from...
Data supports the paper: Wagih, M.; Wei, Y.; Komolafe, A.; Torah, R.; Beeby, S. Reliable UHF Long-Ra...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper details the design, fabrication and testing of flexible textile-concealed Radio Frequency...
This paper addresses the design and fabrication of an embroidered textile RFID tag antenna. The main...
A novel wearable radio frequency identification (RFID) tag with sensing, processing, and decision-ta...
A novel wearable radio frequency identification (RFID) tag with sensing, processing, and decision-ta...
This paper discusses the fabrication and wireless performance evaluation of textile-integrated passi...
Passive radio frequency identification-based technology is a convincing approach to the achievement ...
© 2022 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
© 2022 Elsevier. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://...
A flexible and totally wearable textile antenna is proposed by embroidering the conductive threads i...
In this study, antennas for passive UHF RFID tags were created from a carbon-based stretchable condu...
In this paper, we present textile antennas fabricated for wearable RFID applications by cutting from...
Data supports the paper: Wagih, M.; Wei, Y.; Komolafe, A.; Torah, R.; Beeby, S. Reliable UHF Long-Ra...