In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature

In this letter, a pair of regenerated gratings with Bragg wavelengths of 1547 and 1304 nm in a single piece of single-mode fiber has been fabricated for simultaneous monitoring of temperature and strain in ultrahigh temperature environment. A 3\times 3 matrix is used to characterize the cross sensit...

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Main Authors: Yang, H.Z., Qiao, X.G., Wang, Y.P., Ali, M.M., Lai, M.H., Lim, Kok Sing, Ahmad, Harith
Format: Article
Published: Institute of Electrical and Electronics Engineers (IEEE) 2015
Subjects:
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author Yang, H.Z.
Qiao, X.G.
Wang, Y.P.
Ali, M.M.
Lai, M.H.
Lim, Kok Sing
Ahmad, Harith
author_facet Yang, H.Z.
Qiao, X.G.
Wang, Y.P.
Ali, M.M.
Lai, M.H.
Lim, Kok Sing
Ahmad, Harith
author_sort Yang, H.Z.
collection UM
description In this letter, a pair of regenerated gratings with Bragg wavelengths of 1547 and 1304 nm in a single piece of single-mode fiber has been fabricated for simultaneous monitoring of temperature and strain in ultrahigh temperature environment. A 3\times 3 matrix is used to characterize the cross sensitivity of the proposed sensor in which the strain sensitivity varies with temperature change. The proposed structure exhibits the deviation of 28.3 \mu \varepsilon and 4.1 °C at the ranges of 0-1000 \mu \varepsilon and 25 °C-900 °C, respectively.
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institution Universiti Malaya
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publisher Institute of Electrical and Electronics Engineers (IEEE)
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spelling um.eprints-194122018-10-11T02:49:20Z http://eprints.um.edu.my/19412/ In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature Yang, H.Z. Qiao, X.G. Wang, Y.P. Ali, M.M. Lai, M.H. Lim, Kok Sing Ahmad, Harith Q Science (General) QC Physics In this letter, a pair of regenerated gratings with Bragg wavelengths of 1547 and 1304 nm in a single piece of single-mode fiber has been fabricated for simultaneous monitoring of temperature and strain in ultrahigh temperature environment. A 3\times 3 matrix is used to characterize the cross sensitivity of the proposed sensor in which the strain sensitivity varies with temperature change. The proposed structure exhibits the deviation of 28.3 \mu \varepsilon and 4.1 °C at the ranges of 0-1000 \mu \varepsilon and 25 °C-900 °C, respectively. Institute of Electrical and Electronics Engineers (IEEE) 2015 Article PeerReviewed Yang, H.Z. and Qiao, X.G. and Wang, Y.P. and Ali, M.M. and Lai, M.H. and Lim, Kok Sing and Ahmad, Harith (2015) In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature. IEEE Photonics Technology Letters, 27 (1). pp. 58-61. ISSN 1041-1135, DOI https://doi.org/10.1109/LPT.2014.2361768 <https://doi.org/10.1109/LPT.2014.2361768>. http://dx.doi.org/10.1109/LPT.2014.2361768 doi:10.1109/LPT.2014.2361768
spellingShingle Q Science (General)
QC Physics
Yang, H.Z.
Qiao, X.G.
Wang, Y.P.
Ali, M.M.
Lai, M.H.
Lim, Kok Sing
Ahmad, Harith
In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature
title In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature
title_full In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature
title_fullStr In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature
title_full_unstemmed In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature
title_short In-Fiber Gratings for Simultaneous Monitoring Temperature and Strain in Ultrahigh Temperature
title_sort in fiber gratings for simultaneous monitoring temperature and strain in ultrahigh temperature
topic Q Science (General)
QC Physics
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