DocumentCode
3987
Title
Phase-sensitive Optical Time Domain Reflectometer Assisted by First-order Raman Amplification for Distributed Vibration Sensing Over >100 km
Author
Martins, Hugo ; Martin-Lopez, Sonia ; Corredera, Pedro ; Filograno, Massimo L. ; Frazao, Orlando ; Gonzalez-Herraez, Miguel
Author_Institution
Fac. de Cienc., Univ. do Porto, Porto, Portugal
Volume
32
Issue
8
fYear
2014
fDate
15-Apr-14
Firstpage
1510
Lastpage
1518
Abstract
In this study, the authors present an experimental and theoretical description of the use of first order Raman amplification to improve the performance of a Phase-sensitive optical time domain reflectometer (φOTDR) when used for vibration measurements over very long distances. A special emphasis is given to the noise which is carefully characterized and minimized along the setup. A semiconductor optical amplifier and an optical switch are used to greatly decrease the intra-band coherent noise of the setup and balanced detection is used to minimize the effects of RIN transferred from the Raman pumps. The sensor was able to detect vibrations of up to 250 Hz (close to the limits set by the time of flight of light pulses) with a resolution of 10 m in a range of 125 km. To achieve the above performance, no post-processing was required in the φOTDR signal. The evolution of the φOTDR signal along the fiber is also shown to have a good agreement with the theoretical model.
Keywords
Raman spectra; distributed sensors; fibre optic sensors; optical noise; optical pumping; optical switches; optical time-domain reflectometry; reflectometers; semiconductor optical amplifiers; vibration measurement; φOTDR signal; Raman pumps; balanced detection; distributed vibration sensing; first-order Raman amplification; intraband coherent noise; light pulse time of flight; optical switch; phase-sensitive optical time domain reflectometer; semiconductor optical amplifier; vibration measurement; Noise; Optical fiber amplifiers; Optical fiber sensors; Optical pulses; Stimulated emission; Distributed sensor; Raman scattering; optical fiber sensors; phase-sensitive optical time domain reflectometry (OTDR); vibration sensor;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2014.2308354
Filename
6748011
Link To Document