Title :
Novel notch modulation algorithm for enhancing the chipless RFID tags coding capacity
Author :
El-Awamry, Ahmed ; Khaliel, Maher ; Fawky, Abdelfattah ; El-Hadidy, Mohamed ; Kaiser, Thomas
Author_Institution :
Inst. of Digital Signal Process., Duisburg-Essen Univ., Essen, Germany
Abstract :
The main objective of this contribution is to introduce a novel technique for increasing the coding capacity of the Frequency Coded (FC) chipless RFID system. The proposed scheme encodes 4 bits per single resonator exploiting the notch bandwidth and its corresponding frequency position. Hence, 72-bits could be achieved from 2 to 5 GHz preserving the operating frequency bandwidth. Furthermore, a Smart Singular Value Decomposition (SSVD) technique is utilized to estimate the notch bandwidth and ensure low probability of error. Consequently, high encoding efficiency and accurate detection could be achieved with simplified reader design. Likewise, a novel 4 × 5 cm2 tag is designed to fit the requirements of the devised coding technique. Different tag configurations are manufactured and validated with measurements using Software Defined Radio (SDR) platform. The introduced coding methodology is conclusively validated using Electromagnetic (EM) simulations and real world testbed measurements.
Keywords :
radiofrequency identification; singular value decomposition; software radio; FC chipless RFID system; SDR platform; SSVD technique; chipless RFID tags coding capacity; devised coding technique; electromagnetic simulations; encoding efficiency; frequency coded chipless RFID system; frequency position; notch bandwidth; novel notch modulation algorithm; operating frequency bandwidth; real world testbed measurements; smart singular value decomposition; software defined radio; Algorithm design and analysis; Bandwidth; Encoding; RFID tags; Resonant frequency; Semiconductor device measurement; Chipless RFID; Encoding Capacity; Notch Bandwidth Modulation; Probability of Error; SDR; SVD;
Conference_Titel :
RFID (RFID), 2015 IEEE International Conference on
Conference_Location :
San Diego, CA
DOI :
10.1109/RFID.2015.7113069