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Publications

Publications by CAP

2012

Optical Time-Domain Reflectometer Based Multiplexed Sensing Scheme for Environmental Sensing

Authors
Carvalho, JP; Gouveia, C; Santos, JL; Jorge, PAS; Baptista, JM;

Publication
OPTICAL SENSING AND DETECTION II

Abstract
In our study, remote environmental sensing is presented using a standard optical time domain reflectometer (OTDR). The measurement of environmental parameters using optical sensors is an expanding area of research with growing importance. Fiber optic sensors are an interesting solution for that due to their high sensitivity, small size, and capability for on-site, real-time, remote, and distributed sensing capabilities. Our multiplexing sensing scheme approach uses transmissive filters (long period gratings - LPGs) interrogated by the OTDR return pulses. The loss induced at the resonance wavelengths varies with changes in the environment refractive index, temperature or other physical parameters. Experimental results show that the insertion of an erbium amplifier improves the measurement resolution in certain situations. Further analysis show that a remote multiplexed sensing scheme allows us to perform simple and low cost real time measurement of refractive index and temperature over long distances.

2012

DFB Laser based Electrical Dynamic Interrogation For Optical Fiber Sensors

Authors
Carvalho, JP; Frazao, O; Baptista, JM; Santos, JL; Barbero, AP;

Publication
OPTICAL SENSING AND DETECTION II

Abstract
An electrical dynamic interrogation technique previously reported by the authors for long-period grating sensors is now progressed by relying its operation exclusively on the modulation of a DFB Laser. The analysis of the detected first and second harmonic generated by the electrical modulation of the DFB Laser allows generating an optical signal proportional to the LPG spectral shift and resilient to optical power fluctuations along the system. This concept permits attenuating the effect of the 1/f noise of the photodetection, amplification and processing electronics on the sensing head resolution. This technique is employed in a multiplexing sensing scheme that measures refractive index variations.

2012

Long period gratings and rocking filters written with a CO2 laser in highly-birefringent boron-doped photonic crystal fibers for sensing applications

Authors
Carvalho, JP; Anuszkiewicz, A; Statkiewicz Barabach, G; Baptista, JM; Frazao, O; Mergo, P; Santos, JL; Urbanczyk, W;

Publication
OPTICS COMMUNICATIONS

Abstract
In this work, we demonstrate the possibility of fabricating short-length long-period gratings and rocking filters in highly birefringent Photonic Crystal Fiber using a CO2 laser. In our experiments both kinds of gratings were made in the same Boron doped highly birefringent PCF using similar exposure parameters. We also present the sensing capabilities of both fabricated gratings to temperature, strain and hydrostatic pressure by interrogation of the wavelength shifts at different resonances. Crown Copyright

2012

Fiber Optic-Based Refractive Index Sensing at INESC Porto

Authors
Jorge, PAS; Silva, SO; Gouveia, C; Tafulo, P; Coelho, L; Caldas, P; Viegas, D; Rego, G; Baptista, JM; Santos, JL; Frazao, O;

Publication
SENSORS

Abstract
A review of refractive index measurement based on different types of optical fiber sensor configurations and techniques is presented. It addresses the main developments in the area, with particular focus on results obtained at INESC Porto, Portugal. The optical fiber sensing structures studied include those based on Bragg and long period gratings, on micro-interferometers, on plasmonic effects in fibers and on multimode interference in a large spectrum of standard and microstructured optical fibers.

2012

Micro-Displacement Sensor Based on a Hollow-Core Photonic Crystal Fiber

Authors
Rodrigues Pinto, AMR; Baptista, JM; Santos, JL; Lopez Amo, M; Frazao, O;

Publication
SENSORS

Abstract
A sensing head based on a hollow-core photonic crystal fiber for in-reflection measurement of micro-displacements is presented. The sensing structure takes advantage of the multimodal behavior of a short segment of hollow-core photonic crystal fiber in-reflection, being spliced to a single mode fiber at its other end. A modal interferometer is obtained when the sensing head is close to a mirror, through which displacement is measured.

2012

Simultaneous measurement of strain and temperature based on clover microstructured fiber loop mirror

Authors
Perez Herrera, RA; Andre, RM; Silva, SF; Becker, M; Schuster, K; Kobelke, J; Lopez Amo, M; Santos, JL; Frazao, O;

Publication
Proceedings of SPIE - The International Society for Optical Engineering

Abstract
In this work, an all-fiber loop mirror using a clover microstructured fiber for the simultaneous measurement of temperature and strain is presented. The sensing head is formed by a short piece of clover microstructured fiber with 35 mm length. The geometry of the fiber allowed observing different interferences created by the microstructured fiber core section. Different sensitivities to temperature and strain were obtained and, using a matrix method, it is possible to discriminate both physical parameters. Resolutions of ±2°C and ±11 µe, for temperature and strain, respectively, were attained. © 2012 SPIE.

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