» Articles » PMID: 28667338

Accurate Strain Sensing Based on Super-mode Interference in Strongly Coupled Multi-core Optical Fibres

Overview
Journal Sci Rep
Specialty Science
Date 2017 Jul 2
PMID 28667338
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

We report on the use of a multi-core fibre (MCF) comprising strongly-coupled cores for accurate strain sensing. Our MCF is designed to mode match a standard single mode optical fibre. This allows us to fabricate simple MCF interferometers whose interrogation is carried out with light sources, detectors and fibre components readily available from the optical communications tool box. Our MCF interferometers were used for sensing strain. The sensor calibration was carried out in a high-fidelity aerospace test laboratory. In addition, a packaged MCF interferometer was transferred into field trials to validate its performance under deployment conditions, specifically the sensors were installed in a historical iron bridge. Our results suggest that the MCF strain sensors here proposed are likely to reach the readiness level to compete with other mature sensor technologies, hence to find commercial application. An important advantage of our MCF interferometers is their capability to operate at very high temperatures.

Citing Articles

High-Performance Optical Fiber Displacement Sensor with Extended Linear Range and Sensitivity.

Zubia G, Zubia J, Amorebieta J, Aldabaldetreku G, Zubia A, Durana G Sensors (Basel). 2025; 25(2).

PMID: 39860789 PMC: 11768896. DOI: 10.3390/s25020418.


Mechanically Robust Biopolymer Optical Fibers with Enhanced Performance in the Near-Infrared Region.

Patrakka J, Hynninen V, Lahtinen M, Hokkanen A, Orelma H, Sun Z ACS Appl Mater Interfaces. 2024; 16(32):42704-42716.

PMID: 39083595 PMC: 11332404. DOI: 10.1021/acsami.4c08879.


Accurate measurement of the bond stress between rebar and concrete in reinforced concrete using FBG sensing technology.

Ahmed M, Matsumoto Y, Yoon R, Takahashi S, Sanada Y Sci Rep. 2024; 14(1):2119.

PMID: 38267520 PMC: 10808180. DOI: 10.1038/s41598-024-52555-w.


Advances in Multicore Fiber Interferometric Sensors.

Yao Y, Zhao Z, Tang M Sensors (Basel). 2023; 23(7).

PMID: 37050498 PMC: 10099196. DOI: 10.3390/s23073436.


Twin-core fiber sensor integrated in laser cavity.

Amorebieta J, Pereira J, Durana G, Franciscangelis C, Ortega-Gomez A, Zubia J Sci Rep. 2022; 12(1):11797.

PMID: 35821399 PMC: 9276659. DOI: 10.1038/s41598-022-16103-8.


References
1.
Newkirk A, Antonio-Lopez E, Salceda-Delgado G, Amezcua-Correa R, Schulzgen A . Optimization of multicore fiber for high-temperature sensing. Opt Lett. 2014; 39(16):4812-5. DOI: 10.1364/OL.39.004812. View

2.
Xia C, Bai N, Ozdur I, Zhou X, Li G . Supermodes for optical transmission. Opt Express. 2011; 19(17):16653-64. DOI: 10.1364/OE.19.016653. View

3.
Naeem K, Kwon I, Chung Y . Multibeam Interferometer Using a Photonic Crystal Fiber with Two Asymmetric Cores for Torsion, Strain and Temperature Sensing. Sensors (Basel). 2017; 17(1). PMC: 5298705. DOI: 10.3390/s17010132. View

4.
Villatoro J, Minkovich V, Zubia J . Photonic crystal fiber interferometric vector bending sensor. Opt Lett. 2015; 40(13):3113-6. DOI: 10.1364/OL.40.003113. View

5.
Mihailov S . Fiber Bragg grating sensors for harsh environments. Sensors (Basel). 2012; 12(2):1898-918. PMC: 3304146. DOI: 10.3390/s120201898. View