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Publications

Publications by Orlando Frazão

2008

Interrogation of a fibre Fabry-Perot interferometer using a pi-shifted Bragg grating

Authors
Silva, SFO; Frazao, O; Ferreira, LA; Araujo, FM; Santos, JL;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
A robust all-fibre interferometric interrogation technique based on the wavelength modulation of a pi-shifted fibre Bragg grating is proposed. The concept is demonstrated for strain measurement using a Bragg-grating-based Fabry-Perot interferometer. The strain-phase relationship is shown to be linear with a sensitivity slope of (2.19 +/- 0.02)degrees/mu epsilon. A strain resolution of approximate to 2.4 mu e is demonstrated.

2007

Temperature field acquisition during gas metal arc welding using thermocouples, thermography and fibre Bragg grating sensors

Authors
Moreira, PMGP; Frazao, O; Tavares, SMO; de Figueiredo, MAV; Restivo, MT; Santos, JL; de Castro, PMST;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
The paper presents the application of temperature acquisition systems integrating thermocouples, a thermographic camera and fibre Bragg grating (FBG) sensors in gas metal arc welding (GMAW) process, MIG ( metal inert gas) welding type. Efficient procedures to use FBG sensors and thermocouples were developed. The paper presents and compares measurements made in welded plates of aluminium alloy 6082-T6. Tests were performed in both plate surfaces and good agreement between the three techniques was found.

2007

Bending sensitivity dependent on the phase shift imprinted in long-period fibre gratings

Authors
Falate, R; Frazao, O; Rego, G; Ivanov, OV; Kalinowski, HJ; Fabris, JL; Santos, JL;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
This work shows the changes of bending curvature sensitivity when the same long- period fibre grating has different phase shifts. From the knowledge that the coupling constant is reduced as curvature increases, we theoretically and experimentally assess the possibility that the bend sensitivity follows the grating spectrum evolution during the point- to-point fabrication technique. We also show that control of bend sensitivity can be applied to the simultaneous measurement of bend and temperature.

2004

Superimposed Bragg gratings in high-birefringence fibre optics: three-parameter simultaneous measurements

Authors
Abe, I; Kalinowski, HJ; Frazao, O; Santos, JL; Nogueira, RN; Pinto, JL;

Publication
MEASUREMENT SCIENCE & TECHNOLOGY

Abstract
We used a pair of Bragg gratings written in high birefringence fibre optics to measure, simultaneously, longitudinal and transverse strain and temperature. The Bragg gratings are superimposed in the same position of the fibre optic, so as to behave as a punctual sensor. The sensitivity of the spectral response of the device to longitudinal strain, transverse strain and temperature are all characterized, and the results of its application as a three-parameter sensor are also presented.

2011

Fiber Bragg Grating Structures with Fused Tapers

Authors
Silva, SFO; Ferreira, LA; Araujo, FM; Santos, JL; Frazao, O;

Publication
FIBER AND INTEGRATED OPTICS

Abstract
Fiber structures based on the combination of abrupt tapers and fiber Bragg gratings are studied. Two situations are exploredin one, the taper is fabricated in the fiber region with a fiber Bragg grating; in the other, the taper is first fabricated followed by the fiber Bragg grating. It is shown that the first device presents the properties of a Fabry-Perot cavity and the other of a phase-shifted Bragg grating, where the phase shift is associated to the tapered fiber region. The sensing characteristics of these structures are studied, and it is shown that the temperature sensitivities are similar but with observable different responses to strain.

2012

A reflective optical fiber refractometer based on multimode interference

Authors
Silva, S; Frazao, O; Santos, JL; Malcata, FX;

Publication
SENSORS AND ACTUATORS B-CHEMICAL

Abstract
A reflective multimode interference based-fiber optic sensor is described, aimed at measuring refractive index variations by means of intensity variation based on the fiber tip-interaction concept. The sensing head is a section of a multimode fiber, spliced to a single-mode fiber at the input end; its characteristics are studied when two multimode fibers, with distinct core diameters (viz. 50 and 105 mu m), are considered. The multimode fiber end face is placed in contact with the liquid sample, so as to provide a refractive index measurement via variation in amplitude of the interference spectral peaks - which is essentially insensitive to temperature changes. Therefore, the proposed configuration permits measurement of refractive index variations free from system temperature cross-sensitivity effects. Resolutions of 2.2 x 10(-4) RIU and 3.8 x 10(-4) RIU, for multimode fiber tips with core diameters of 50 mu m and 105 mu m, respectively, could be achieved.

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