Please use this identifier to cite or link to this item:
https://hdl.handle.net/20.500.14279/11846
Title: | Polymer optical fiber Bragg Gratings in CYTOP Fibers for angle measurement with dynamic compensation | Authors: | Leal-Junior, Arnaldo Theodosiou, Antreas Díaz, Camilo Marques, Carlos Pontes, Maria José Kalli, Kyriacos Frizera-Neto, Anselmo |
Major Field of Science: | Engineering and Technology | Field Category: | Materials Engineering | Keywords: | Polymer optical fiber;Fiber Bragg gratings;CYTOP;Curvature sensor;Hysteresis | Issue Date: | 17-Jun-2018 | Source: | Polymers, 2018, vol. 10, no. 6 | Volume: | 10 | Issue: | 6 | Journal: | Polymers | Abstract: | This paper demonstrates the use of polymer optical fiber Bragg gratings (POFBGs) for angle measurements over a range of different oscillatory frequencies. The POFBGs are inscribed in low-loss, cyclic transparent amorphous fluoropolymers (CYTOP) and are imprinted using the direct-write, plane-by-plane femtosecond laser inscription method. As the polymer has a viscoelastic response and given that the Young’s modulus depends on the oscillatory frequency, a compensation technique for sensor frequency cross-sensitivity and hysteresis is proposed and verified. Results show that the proposed compensation technique is able to provide a root mean squared error (RMSE) reduction of 44%, and a RMSE as low as 2.20° was obtained when compared with a reference potentiometer. The hysteresis reduction provided by the proposed technique is 55%, with hysteresis <0.01. The results presented in this paper can pave the way for movement analysis with POFBG providing higher sensitivity and low hysteresis over a large range of motion frequencies. | ISSN: | 20734360 | DOI: | 10.3390/polym10060674 | Rights: | © by the authors. | Type: | Article | Affiliation : | Federal University of Espirito Santo Cyprus University of Technology Campus Universitário de Santiago |
Publication Type: | Peer Reviewed |
Appears in Collections: | Άρθρα/Articles |
Files in This Item:
File | Description | Size | Format | |
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polymers-10-00674-v2.pdf | Fulltext | 5.7 MB | Adobe PDF | View/Open |
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