Pulse Shaping: The Missing Piece of Backscatter Radio and RFID

被引:34
作者
Kimionis, John [1 ]
Tentzeris, Manos M. [1 ]
机构
[1] Georgia Inst Technol, Sch Elect & Comp Engn, Atlanta, GA 30332 USA
基金
美国国家科学基金会;
关键词
Backscatter radio; modulation; pulse shaping; radio frequency (RF) front-end; RF identification (RFID); software-defined radio (SDR); spectral efficiency; TAG;
D O I
10.1109/TMTT.2016.2623703
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The increasing use of backscatter radio for pervasive Internet-of-Things systems as a low-power and low-cost communication scheme will result in dense deployments of tags that need to operate under bandwidth (BW) constraints. Typical backscatter tags and computational radio frequency (RF) identification systems are unnecessarily limited to modulating data with "ON-OFF" switching front-ends, which leads to extensive spectrum occupancy, due to the rectangular pulses. This paper sets the foundations to overcome these limitations and proposes designs of RF front-ends that are capable of varying the tag reflection coefficient in a continuous way over time. Arbitrary waveforms can be generated to perform pulse shaping on the backscattered signals, which require significantly reduced BW. The principles presented in this paper will enable sophisticated tags to perform complex modulation schemes under BW constraints, while maintaining a very low RF front-end complexity, using a single nonlinear component such as a p-i-n diode or field-effect transistor. Migrating the idea of pulse shaping from complex power-demanding active radios to such minimal RF front-ends will complete backscatter radio as a communication scheme for simple RF tags and sensors in large-scale deployments. Each tag becomes a miniature software-defined radio that implements diverse communication schemes with increased spectral efficiency.
引用
收藏
页码:4774 / 4788
页数:15
相关论文
共 50 条
[21]   A Hybrid Approach for UWB Pulse Shaping [J].
Menon, Meenu B. ;
Gopakumar, A. ;
Iqbal, Nisheena V. .
2015 2ND INTERNATIONAL CONFERENCE ON ELECTRONICS AND COMMUNICATION SYSTEMS (ICECS), 2015, :373-377
[22]   Pulse shaping functions for UWB systems [J].
Liu, X. ;
Premkurnar, A. B. ;
Madhukumar, A. S. .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2008, 7 (05) :1512-1516
[23]   Fabrication of a deformable mirror for pulse shaping [J].
Gomez-Arista, Ivan ;
Qureshi, Naser ;
Garduno-Mejia, Jesus .
22ND CONGRESS OF THE INTERNATIONAL COMMISSION FOR OPTICS: LIGHT FOR THE DEVELOPMENT OF THE WORLD, 2011, 8011
[24]   Adaptive ultrashort pulse compression and shaping [J].
Meshulach, D ;
Yelin, D ;
Silberberg, Y .
OPTICS COMMUNICATIONS, 1997, 138 (4-6) :345-348
[25]   A Passive Computational UHF RFID Platform Using Vector Backscatter Modulation [J].
Muralter, Florian ;
Arjona, Laura ;
Landaluce, Hugo ;
Perallos, Asier .
IEEE SENSORS JOURNAL, 2022, 22 (06) :6145-6149
[26]   Backscatter analysis in UWB chipless RFID based on UWB-IR [J].
Mekki, Kawther ;
Necibi, Omrane ;
Dinis, Hugo ;
Mendes, Paulo ;
Gharsallah, Ali .
2021 IEEE TEXAS SYMPOSIUM ON WIRELESS AND MICROWAVE CIRCUITS AND SYSTEMS (WMCS), 2021,
[27]   Pulse shaping, modulation and spectrum shaping for UWB wireless communications and the effects on interference for single and multiband transmission of UWB signals [J].
Sablatash, Michael .
2006 CANADIAN CONFERENCE ON ELECTRICAL AND COMPUTER ENGINEERING, VOLS 1-5, 2006, :2207-2212
[28]   Sine-Cosine Modulation for SSB Backscatter Radio Applications [J].
Nagaraj, Santosh ;
Chivakula, Prasad .
IEEE JOURNAL OF RADIO FREQUENCY IDENTIFICATION, 2022, 6 :197-201
[29]   Analysis of time-multiplexed optical line-by-line pulse shaping: application for radio-frequency and microwave photonics [J].
Huang, Chen-Bin ;
Weiner, Andrew M. .
OPTICS EXPRESS, 2010, 18 (09) :9366-9377
[30]   Pulse shaping for background free broadband CARS [J].
Lee, Young Jong ;
Cicerone, Marcus T. .
MULTIPHOTON MICROSCOPY IN THE BIOMEDICAL SCIENCES IX, 2009, 7183