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SKALSKÝ, M.
Original Title
FIBER-OPTIC DISPLACEMENT SENSOR BASED ON FABRY-PÉROT INTERFEROMETER
Type
conference paper
Language
English
Original Abstract
This paper describes a simple and inexpensive fiber-optic sensor for dynamic displacement measurement with sub-nanometer resolution. The principle is based on creating a resonator cavity between measured surface and a single-mode fiber, working as a Fabry-Pérot interferometer. The fundamental principles like diffraction, spatial filtration or the role of reflectivity are analyzed theoretically and their effect on the sensitivity is explained. The sensor is then tested experimentally with an uncoated fiber tip and a gold mirror. Based on the spectral analysis, the effect of working distance on interference visibility is explained.
Keywords
Fiber-optic sensors, Fabry-Pérot interferometer, interferometric measurement, vibration sensing, acoustic emission.
Authors
Released
24. 4. 2018
ISBN
978-80-214-5614-3
Book
Proceedings of the 24th Conference STUDENT EEICT 2018
Pages from
378
Pages to
382
Pages count
5
URL
http://www.feec.vutbr.cz/conf/EEICT/archiv/sborniky/EEICT_2019_sbornik.pdf
BibTex
@inproceedings{BUT147162, author="Michal {Skalský}", title="FIBER-OPTIC DISPLACEMENT SENSOR BASED ON FABRY-PÉROT INTERFEROMETER", booktitle="Proceedings of the 24th Conference STUDENT EEICT 2018", year="2018", pages="378--382", isbn="978-80-214-5614-3", url="http://www.feec.vutbr.cz/conf/EEICT/archiv/sborniky/EEICT_2019_sbornik.pdf" }