Abstrakti
We present a glove-integrated slotted patch antenna for a wearable Ultra High Frequency Radio Identification Technology (UHF RFID) reader operating at 866
MHz. We tested the prototype antenna made of copper foil adhered on low-permittivity Ethylene Propylene Diene Monomer (EPDM) foam material having the thickness of 4 mm. To characterize the antenna, we tested it wirelessly in
communication with a common dipole type RFID tag to estimate its realized gain, radiation pattern and maximum tag read range it provides. We also analyzed the effects of variable separation between the antenna and the body to confirm stable operation required by the application. The results showed that the antenna feasible for the work glove applications providing the read range
up to 360 cm with the reader’s output power of 28.4 dBm.
MHz. We tested the prototype antenna made of copper foil adhered on low-permittivity Ethylene Propylene Diene Monomer (EPDM) foam material having the thickness of 4 mm. To characterize the antenna, we tested it wirelessly in
communication with a common dipole type RFID tag to estimate its realized gain, radiation pattern and maximum tag read range it provides. We also analyzed the effects of variable separation between the antenna and the body to confirm stable operation required by the application. The results showed that the antenna feasible for the work glove applications providing the read range
up to 360 cm with the reader’s output power of 28.4 dBm.
Alkuperäiskieli | Englanti |
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Otsikko | 2018 IEEE International Conference on RFID Technology & Application (RFID-TA) |
Kustantaja | IEEE |
Sivumäärä | 4 |
ISBN (elektroninen) | 978-1-5386-5057-8 |
DOI - pysyväislinkit | |
Tila | Julkaistu - 26 syysk. 2018 |
OKM-julkaisutyyppi | A4 Artikkeli konferenssijulkaisussa |
Tapahtuma | IEEE International Conference on RFID-Technologies and Applications - Kesto: 1 tammik. 1900 → … |
Conference
Conference | IEEE International Conference on RFID-Technologies and Applications |
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Ajanjakso | 1/01/00 → … |
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