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Journal article

Discrimination of Temperature and Strain in Brillouin Optical Time Domain Analysis Using a Multicore Optical Fiber

Abstract:
Brillouin optical time domain analysis is the sensing of temperature and strain changes along an optical fiber by measuring the frequency shift changes of Brillouin backscattering. Because frequency shift changes are a linear combination of temperature and strain changes, their discrimination is a challenge. Here, a multicore optical fiber that has two cores is fabricated. The differences between the cores’ temperature and strain coefficients are such that temperature (strain) changes can be discriminated with error amplification factors of 4.57 °C/MHz (69.11 μ ϵ /MHz), which is 2.63 (3.67) times lower than previously demonstrated. As proof of principle, using the multicore optical fiber and a commercial Brillouin optical time domain analyzer, the temperature (strain) changes of a thermally expanding metal cylinder are discriminated with an error of 0.24% (3.7%)
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.3390/s18041176

Authors

More by this author
Institution:
University of Oxford
Role:
Author
ORCID:
0000-0001-6678-4993


Publisher:
MDPI
Journal:
Sensors More from this journal
Volume:
18
Issue:
4
Pages:
1176-1176
Publication date:
2018-04-12
DOI:
EISSN:
1424-8220
ISSN:
1424-8220


Language:
English
Keywords:
Pubs id:
2412847
Local pid:
pubs:2412847
Source identifiers:
W2797812226
Deposit date:
2026-07-25
ARK identifier:
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