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2020 | OriginalPaper | Buchkapitel

5. Concluding Remarks and Future Prospects

verfasst von : Ferran Martín, Cristian Herrojo, Javier Mata-Contreras, Ferran Paredes

Erschienen in: Time-Domain Signature Barcodes for Chipless-RFID and Sensing Applications

Verlag: Springer International Publishing

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Abstract

The main contribution of this book concerns the unconventional time-domain approach for the implementation of chipless-RFID systems and related sensors. In such systems, the tags are electromagnetic encoders consisting of chains of metallic inclusions (resonant elements or strips) printed or etched on a dielectric substrate (rigid or flexible, including plastic and paper). The reader is an element able to detect the presence of functional inclusions in the chain, when the tag is displaced at short distance over the sensitive part of the reader. Thus, in this system, tag reading proceeds by proximity (through near-field coupling) between the tag and the reader, in a time-division multiplexing scheme, where the ID code is inferred bit by bit sequentially [1]. Such ID code is given by the envelope function generated by tag motion in a resonator-loaded transmission line (the sensitive part of the reader) fed by a harmonic (interrogation) signal.

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Literatur
1.
Zurück zum Zitat Herrojo C, Paredes F, Mata-Contreras J, Ramon E, Núñez A, Martín F (2019) Time-domain signature barcodes: near-field chipless-RFID systems with high data capacity. IEEE Microw Mag 20(12): 87–101 Herrojo C, Paredes F, Mata-Contreras J, Ramon E, Núñez A, Martín F (2019) Time-domain signature barcodes: near-field chipless-RFID systems with high data capacity. IEEE Microw Mag 20(12): 87–101
2.
Zurück zum Zitat Herrojo C, Mata-Contreras J, Paredes F, Núñez A, Ramon E, Martín F (2018) Very low-cost 80-bit chipless-RFID tags inkjet printed on ordinary paper. Technol 6(2): 52CrossRef Herrojo C, Mata-Contreras J, Paredes F, Núñez A, Ramon E, Martín F (2018) Very low-cost 80-bit chipless-RFID tags inkjet printed on ordinary paper. Technol 6(2): 52CrossRef
3.
Zurück zum Zitat Herrojo C, Mata-Contreras J, Paredes F, Martín F (2017) “Near-field chipless RFID encoders with sequential bit reading and high data capacity”, In: IEEE MTT-S International Microwave Symposium (IMS’17), Honolulu, Hawaii, June 2017 Herrojo C, Mata-Contreras J, Paredes F, Martín F (2017) “Near-field chipless RFID encoders with sequential bit reading and high data capacity”, In: IEEE MTT-S International Microwave Symposium (IMS’17), Honolulu, Hawaii, June 2017
4.
Zurück zum Zitat Herrojo C, Mata-Contreras J, Paredes F, Ferran Martín (2017) Near-field chipless RFID system with high data capacity for security and authentication applications. IEEE Trans Microw Theory Techn 65(12): 5298–5308CrossRef Herrojo C, Mata-Contreras J, Paredes F, Ferran Martín (2017) Near-field chipless RFID system with high data capacity for security and authentication applications. IEEE Trans Microw Theory Techn 65(12): 5298–5308CrossRef
5.
Zurück zum Zitat Herrojo C, Paredes F, Martín F (2019) Double-stub loaded microstrip line reader for very high data density microwave encoders. IEEE Trans Microw Theory Techn 67(9): 3527–3536CrossRef Herrojo C, Paredes F, Martín F (2019) Double-stub loaded microstrip line reader for very high data density microwave encoders. IEEE Trans Microw Theory Techn 67(9): 3527–3536CrossRef
6.
Zurück zum Zitat Herrojo C, Mata-Contreras J, Paredes F, Núñez A, Ramon E, Martín F (2018) Near-field chipless-RFID system with erasable/programmable 40-bit tags inkjet printed on paper substrates. IEEE Microw Wireless Compon Lett 28: 272–274CrossRef Herrojo C, Mata-Contreras J, Paredes F, Núñez A, Ramon E, Martín F (2018) Near-field chipless-RFID system with erasable/programmable 40-bit tags inkjet printed on paper substrates. IEEE Microw Wireless Compon Lett 28: 272–274CrossRef
7.
Zurück zum Zitat Herrojo C, Mata-Contreras J, Paredes F, Núñez A, Ramón E, Martín F (2018) Near-field chipless-RFID tags with sequential bit reading implemented in plastic substrates. J Magn Magn Mater 459:322–327CrossRef Herrojo C, Mata-Contreras J, Paredes F, Núñez A, Ramón E, Martín F (2018) Near-field chipless-RFID tags with sequential bit reading implemented in plastic substrates. J Magn Magn Mater 459:322–327CrossRef
8.
Zurück zum Zitat Paredes F, Herrojo C, Martín F (2019) An approach for synchronous reading of near-field chipless-RFID tags. In: 10th IEEE International Conference on RFID Technology and Applications (IEEE RFID-TA 2019), Pisa, Italy, Sep 2019, pp 25–27 Paredes F, Herrojo C, Martín F (2019) An approach for synchronous reading of near-field chipless-RFID tags. In: 10th IEEE International Conference on RFID Technology and Applications (IEEE RFID-TA 2019), Pisa, Italy, Sep 2019, pp 25–27
9.
Zurück zum Zitat Paredes F, Herrojo C, Mata-Contreras J, Martín F (2018) Near-field chipless-RFID sensing and identification system with switching reading. Sens. 18:1148CrossRef Paredes F, Herrojo C, Mata-Contreras J, Martín F (2018) Near-field chipless-RFID sensing and identification system with switching reading. Sens. 18:1148CrossRef
10.
Zurück zum Zitat Herrojo C, Mata-Contreras J, Paredes F, Martín F (2017) Microwave encoders for chipless RFID and angular velocity sensors based on S-shaped split ring resonators (S-SRRs). IEEE Sens J 17: 4805–4813CrossRef Herrojo C, Mata-Contreras J, Paredes F, Martín F (2017) Microwave encoders for chipless RFID and angular velocity sensors based on S-shaped split ring resonators (S-SRRs). IEEE Sens J 17: 4805–4813CrossRef
11.
Zurück zum Zitat Herrojo C, Muela F, Mata-Contreras J, Paredes F, Martín F (2019) High-density microwave encoders for motion control and near-field chipless-RFID. IEEE Sens J 19: 3673–3682CrossRef Herrojo C, Muela F, Mata-Contreras J, Paredes F, Martín F (2019) High-density microwave encoders for motion control and near-field chipless-RFID. IEEE Sens J 19: 3673–3682CrossRef
12.
Zurück zum Zitat Mata-Contreras J, Herrojo C, Martín F (2017) Application of split ring resonator (SRR) loaded transmission lines to the design of angular displacement and velocity sensors for space applications. IEEE Trans Microw Theory Techn 65(11): 4450–4460CrossRef Mata-Contreras J, Herrojo C, Martín F (2017) Application of split ring resonator (SRR) loaded transmission lines to the design of angular displacement and velocity sensors for space applications. IEEE Trans Microw Theory Techn 65(11): 4450–4460CrossRef
13.
Zurück zum Zitat Mata-Contreras J, Herrojo C, Martín F (2018) Detecting the rotation direction in contactless angular velocity sensors implemented with rotors loaded with multiple chains of split ring resonators (SRRs). IEEE Sens J 18: 7055–7065 Mata-Contreras J, Herrojo C, Martín F (2018) Detecting the rotation direction in contactless angular velocity sensors implemented with rotors loaded with multiple chains of split ring resonators (SRRs). IEEE Sens J 18: 7055–7065
14.
Zurück zum Zitat Herrojo C, Paredes F, Mata-Contreras J, Martín F (2019) All-dielectric electromagnetic encoders based on permittivity contrast for displacement/velocity sensors and chipless-RFID tags. In: IEEE-MTT-S International Microwave Symposium (IMS’19), Boston (MA), USA, June 2019 Herrojo C, Paredes F, Mata-Contreras J, Martín F (2019) All-dielectric electromagnetic encoders based on permittivity contrast for displacement/velocity sensors and chipless-RFID tags. In: IEEE-MTT-S International Microwave Symposium (IMS’19), Boston (MA), USA, June 2019
16.
Zurück zum Zitat Herrojo C, Paredes F, Escudé R, Ramon E, Martín F (2019) Near-field chipless-RFID system based on tags implemented with organic inks. In: Asia Pacific Microwave Conference (APMC’19), Singapore, Dec 2019 Herrojo C, Paredes F, Escudé R, Ramon E, Martín F (2019) Near-field chipless-RFID system based on tags implemented with organic inks. In: Asia Pacific Microwave Conference (APMC’19), Singapore, Dec 2019
Metadaten
Titel
Concluding Remarks and Future Prospects
verfasst von
Ferran Martín
Cristian Herrojo
Javier Mata-Contreras
Ferran Paredes
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-39726-5_5

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