A New Nested Concentric Stepped Impedance Resonator Structure for the Implementation of High Capacity Chipless RFID Tags

Author(s):  
Aya M. Helmy ◽  
Heba A. El-Khobby ◽  
Amr H. Hussein
Author(s):  
Shahid Habib ◽  
Amjad Ali ◽  
Ghaffer Iqbal Kiani ◽  
Wagma Ayub ◽  
Syed Muzahir Abbas ◽  
...  

Abstract This paper presents a polarization-independent 11-bit chipless RFID tag based on frequency-selective surface which has been designed for encoding and relative humidity (RH) sensing applications. The 10 exterior U-shaped resonators are used for item encoding whereas Kapton has been incorporated with the interior resonator for RH sensing. This radio-frequency identification (RFID) tag operates in S- and C-frequency bands. The proposed design offers enhanced fractional bandwidth up to 88% with the density of 4.46 bits/cm2. Both single- and dual-layer tags have been investigated. The simulated results are in good agreement with measured results and a comparison with existing literature is presented to show the performance. Simple geometry, high code density, large frequency signature bandwidth, high magnitude bit, high radar cross-section, and angular stability for more than 75° are the unique outcomes of the proposed design. In addition, RH sensing has been achieved by integrating the Kapton on the same RFID tag.


Author(s):  
Michele Borgese ◽  
Simone Genovesi ◽  
Giuliano Manara ◽  
Filippo Costa

2016 ◽  
Vol 15 ◽  
pp. 2000-2003 ◽  
Author(s):  
Milan Polivka ◽  
Jaroslav Havlicek ◽  
Milan Svanda ◽  
Jan Machac
Keyword(s):  

2021 ◽  
Author(s):  
Maher Khaliel ◽  
Jianan Wen ◽  
Andreas Prokscha ◽  
Ahmed El-Awamry ◽  
Abdelfattah Fawky ◽  
...  

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