Design and analysis of a truncated elliptical-shaped chipless RFID tag

Title Design and analysis of a truncated elliptical-shaped chipless RFID tag
Author Khan, A. T., Abdullah, Y., Farhat, S., Nawaz, Wasim, Rauf, U.
Publication Date: 2021
Publication Place - TÜBİTAK
Subject Chipless tag, Data encoding circuits, Electromagnetics, Radar cross section, Radio frequency identification
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 1300-0632
Record ID b999e5e3-ce84-4678-a65c-48d1db1dab11
Date 2021
Sample Text This article presents a novel polarization-insensitive chipless radio frequency identification tag having an encoding capacity of 11 bits. The proposed resonator design comprises discontinuous arc slots forming truncated elliptically shape offering 1:1 slot to bit correspondence with suppressed unwanted harmonic resonances. Electromagnetic performance analysis of the proposed tag design is done over an ungrounded Rogers RT duroid® 5880 laminate. The overall tag design covers a footprint of 15 × 15 × 0.508 mm 3 offering convincingly appreciable bit density of 4.88 bits/cm 2. The realized tags are analyzed for real-world electromagnetic performance resulting in an agreement between measured and computed results. The proposed work finds its applications in the food and beverage industry.
DOI 10.3906/ELK-2008-68
Cilt 29
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Design and analysis of a truncated elliptical-shaped chipless RFID tag

Author Khan, A. T., Abdullah, Y., Farhat, S., Nawaz, Wasim, Rauf, U.
Publication Date 2021
Publication Place - TÜBİTAK
Subject Chipless tag, Data encoding circuits, Electromagnetics, Radar cross section, Radio frequency identification
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 1300-0632
Record ID b999e5e3-ce84-4678-a65c-48d1db1dab11
Date 2021
Sample Text This article presents a novel polarization-insensitive chipless radio frequency identification tag having an encoding capacity of 11 bits. The proposed resonator design comprises discontinuous arc slots forming truncated elliptically shape offering 1:1 slot to bit correspondence with suppressed unwanted harmonic resonances. Electromagnetic performance analysis of the proposed tag design is done over an ungrounded Rogers RT duroid® 5880 laminate. The overall tag design covers a footprint of 15 × 15 × 0.508 mm 3 offering convincingly appreciable bit density of 4.88 bits/cm 2. The realized tags are analyzed for real-world electromagnetic performance resulting in an agreement between measured and computed results. The proposed work finds its applications in the food and beverage industry.
DOI 10.3906/ELK-2008-68
Cilt 29
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