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KADĚRA, P. JIMÉNEZ-SÁEZ, A. SCHMITT, L. SCHÜßLER, M. HOFMANN, M. LÁČÍK, J. JAKOBY, R.
Original Title
Frequency Coded Retroreflective Landmark for 230 GHz Indoor Self-Localization Systems
Type
conference paper
Language
English
Original Abstract
This paper presents a planar Luneburg lens frequency-coded retroreflector based on a high-resistive silicon (HR-Si) photonic-crystal (PhC) high-Q tag with two resonators working at 237 GHz and 243 GHz. A characterization of the retroreflector, including the readout of the resonance frequency of the resonators, is performed at 30 cm over 130-degree angular range in azimuthal plane. The measured gain of the lens antenna is 15.9 dBi at a frequency of 240 GHz and the radar-cross section (RCS) of the frequency-coded tag landmark achieves -30 dBm2 at 237 GHz.
Keywords
retroreflector; Luneburg lens; antenna; photonic-crystal; high-Q resonator; high-resistive silicon, RFID, localization
Authors
KADĚRA, P.; JIMÉNEZ-SÁEZ, A.; SCHMITT, L.; SCHÜßLER, M.; HOFMANN, M.; LÁČÍK, J.; JAKOBY, R.
Released
22. 3. 2021
Publisher
IEEE
Location
Düsseldorf, Germany
ISBN
978-88-31299-02-2
Book
2021 15th European Conference on Antennas and Propagation (EuCAP)
Pages from
1
Pages to
5
Pages count
URL
https://ieeexplore.ieee.org/document/9410973
BibTex
@inproceedings{BUT169577, author="Petr {Kaděra} and Alejandro {Jiménez-Sáez} and Lisa {Schmitt} and Martin {Schüßler} and Martin {Hofmann} and Jaroslav {Láčík} and Rolf {Jakoby}", title="Frequency Coded Retroreflective Landmark for 230 GHz Indoor Self-Localization Systems", booktitle="2021 15th European Conference on Antennas and Propagation (EuCAP)", year="2021", pages="1--5", publisher="IEEE", address="Düsseldorf, Germany", doi="10.23919/EuCAP51087.2021.9410973", isbn="978-88-31299-02-2", url="https://ieeexplore.ieee.org/document/9410973" }