Modeling and Simulation of New Encoding Schemes for High‐Speed UHF RFID Communication

In this paper, we present novel high‐speed transmission schemes for high‐speed ultra‐high frequency (UHF) radio‐frequency identification communication. For high‐speed communication, tags communicate with a reader using a high‐speed Miller (HS‐Miller) encoding and multiple antennas, and a reader comm...

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Published inETRI journal Vol. 37; no. 2; pp. 241 - 250
Main Authors Mo, Sang‐Hyun, Bae, Ji‐Hoon, Park, Chan‐Won, Bang, Hyo‐Chan, Park, Hyung Chul
Format Journal Article
LanguageEnglish
Published Electronics and Telecommunications Research Institute (ETRI) 01.04.2015
한국전자통신연구원
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ISSN1225-6463
2233-7326
DOI10.4218/etrij.15.2314.0111

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Abstract In this paper, we present novel high‐speed transmission schemes for high‐speed ultra‐high frequency (UHF) radio‐frequency identification communication. For high‐speed communication, tags communicate with a reader using a high‐speed Miller (HS‐Miller) encoding and multiple antennas, and a reader communicates with tags using extended pulse‐interval encoding (E‐PIE). E‐PIE can provide up to a two‐fold faster data rate than conventional pulse‐interval encoding. Using HS‐Miller encoding and orthogonal multiplexing techniques, tags can achieve a two‐ to three‐fold faster data rate than Miller encoding without degrading the demodulation performance at a reader. To verify the proposed transmission scheme, the MATLAB/Simulink model for high‐speed backscatter based on an HS‐Miller modulated subcarrier has been designed and simulated. The simulation results show that the proposed transmission scheme can achieve more than a 3 dB higher BER performance in comparison to a Miller modulated subcarrier.
AbstractList In this paper, we present novel high‐speed transmission schemes for high‐speed ultra‐high frequency (UHF) radio‐frequency identification communication. For high‐speed communication, tags communicate with a reader using a high‐speed Miller (HS‐Miller) encoding and multiple antennas, and a reader communicates with tags using extended pulse‐interval encoding (E‐PIE). E‐PIE can provide up to a two‐fold faster data rate than conventional pulse‐interval encoding. Using HS‐Miller encoding and orthogonal multiplexing techniques, tags can achieve a two‐ to three‐fold faster data rate than Miller encoding without degrading the demodulation performance at a reader. To verify the proposed transmission scheme, the MATLAB/Simulink model for high‐speed backscatter based on an HS‐Miller modulated subcarrier has been designed and simulated. The simulation results show that the proposed transmission scheme can achieve more than a 3 dB higher BER performance in comparison to a Miller modulated subcarrier.
In this paper, we present novel high-speed transmission schemes for high-speed ultra-high frequency (UHF) radio-frequency identification communication. For high-speed communication, tags communicate with a reader using a high-speed Miller (HS-Miller) encoding and multiple antennas, and a reader communicates with tags using extended pulse-interval encoding (E-PIE). E-PIE can provide up to a two-fold faster data rate than conventional pulse-interval encoding. Using HS-Miller encoding and orthogonal multiplexing techniques, tags can achieve a two- to three-fold faster data rate than Miller encoding without degrading the demodulation performance at a reader. To verify the proposed transmission scheme, the MATLAB/Simulink model for high-speed backscatter based on an HS-Miller modulated subcarrier has been designed and simulated. The simulation results show that the proposed transmission scheme can achieve more than a 3 dB higher BER performance in comparison to a Miller modulated subcarrier. KCI Citation Count: 0
Author Park, Hyung Chul
Bae, Ji‐Hoon
Bang, Hyo‐Chan
Park, Chan‐Won
Mo, Sang‐Hyun
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Cites_doi 10.1109/TMTT.2009.2017291
10.1109/JSSC.2006.886523
10.4218/etrij.13.0212.0415
10.1109/RFID.2012.6193049
10.1109/MWSYM.2007.380554
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Notes baejh@etri.re.kr
is with the Department of Electronic and IT Media Engineering, Seoul National University of Science and Technology, Seoul, Rep. of Korea.
This work was supported by ETRI R&D Program [15ZC1200, The Development of passive RFID technology for improvement of reliability and high speed with large scaled memory] funded by the Government of Korea.
bangs@etri.re.kr
Hyung Chul Park (corresponding author
cwp@etri.re.kr
Sang‐Hyun Mo
hcpark@seoultech.ac.kr
and Hyo‐Chan Bang
shmo@etri.re.kr
Ji‐Hoon Bae
are with the IT Convergence Technology Research Laboratory, ETRI, Daejeon, Rep. of Korea.
Chan‐Won Park
G704-001110.2015.37.2.004
https://etrij.etri.re.kr/etrij/journal/article/article.do?volume=37&issue=2&page=241
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Snippet In this paper, we present novel high‐speed transmission schemes for high‐speed ultra‐high frequency (UHF) radio‐frequency identification communication. For...
In this paper, we present novel high-speed transmission schemes for high-speed ultra-high frequency (UHF) radio-frequency identification communication. For...
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SubjectTerms extended pulse‐interval encoding
high‐speed Miller encoding
multi‐antenna
passive tag
RFID
전자/정보통신공학
Title Modeling and Simulation of New Encoding Schemes for High‐Speed UHF RFID Communication
URI https://onlinelibrary.wiley.com/doi/abs/10.4218%2Fetrij.15.2314.0111
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