2005
DOI: 10.1088/0957-0233/16/4/002
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A reconstruction technique for long-range stimulated Brillouin scattering distributed fibre-optic sensors: experimental results

Abstract: The experimental validation of a numerical technique for temperature/strain profile reconstruction based on Brillouin optical-fibre time-domain analysis (BOTDA) sensors is presented. In this approach, we search directly for the Brillouin frequency shift profile along the fibre that matches the measured data. The algorithm is based on a harmonic expansion of the unknown profile, whose coefficients are determined by means of a multidimensional minimization. Experimental measurements have been carried out in orde… Show more

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Cited by 68 publications
(100 citation statements)
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“…In BOTDA sensors, a single-mode optical fiber is used as a distributed amplifier, where a pump wave transfers part of its energy to a counter-propagating probe signal through the interaction with acoustic phonons [1][2][3]. The probepump interaction actually creates a periodic perturbation of the refractive index of the fiber, thus reflecting part of the pump signal by Bragg diffraction and reinforcing the acoustic wave.…”
Section: Theorymentioning
confidence: 99%
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“…In BOTDA sensors, a single-mode optical fiber is used as a distributed amplifier, where a pump wave transfers part of its energy to a counter-propagating probe signal through the interaction with acoustic phonons [1][2][3]. The probepump interaction actually creates a periodic perturbation of the refractive index of the fiber, thus reflecting part of the pump signal by Bragg diffraction and reinforcing the acoustic wave.…”
Section: Theorymentioning
confidence: 99%
“…In BOTDA sensors, the spatial resolution is obtained by using a pulsed pump signal (launched at the fiber input, z = 0) and the local BFS is measured by sweeping the frequency offset within a range of some hundreds of MHz around the BFS. Thus, in order to reconstruct the Brillouin gain spectrum along the fiber, variations on the CW probe signal intensity ( I CW ) are measured at the fiber input (z = 0) as a function of time, t, and for different frequency offset, ν [3]:…”
Section: Theorymentioning
confidence: 99%
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