DocumentCode :
110051
Title :
Relative Intensity Noise Transfer Reduction in Raman-Assisted BOTDA Systems
Author :
Angulo-Vinuesa, Xabier ; Bacquet, D. ; Martin-Lopez, Sonia ; Corredera, Pedro ; Szriftgiser, P. ; Gonzalez-Herraez, Miguel
Author_Institution :
Focus S.L., Madrid, Spain
Volume :
26
Issue :
3
fYear :
2014
fDate :
Feb.1, 2014
Firstpage :
271
Lastpage :
274
Abstract :
Raman-assistance (RA) has been identified as a promising technique to extend the measurement range of Brillouin optical time-domain analysis (BOTDA)-based distributed sensors. Unfortunately, Raman amplification introduces a great amount of relative intensity noise (RIN) to the detected low-frequency probe wave. This RIN transfer problem has been widely identified as a major limitation in RA-BOTDA. In vector BOTDA (VBOTDA), the detected signal is transferred to a high-frequency carrier where the Raman RIN transfer turns out to be much less harmful. In addition, a VBOTDA can also provide information about the phase-shift induced by the local stimulated Brillouin scattering gain curve, paving the way for dynamic measurements. In this letter, we demonstrate, for the first time to our knowledge, the RA in a VBOTDA obtaining gain and phase measurements. Our results show a significant reduction of the RIN transfer effect in RA-VBOTDA compared with standard RA-BOTDA, making this type of scheme particularly interesting for long-range and dynamic distributed sensing.
Keywords :
Brillouin spectra; amplification; distributed sensors; fibre optic sensors; gain measurement; phase measurement; time-domain analysis; BOTDA-based distributed sensors; Brillouin optical time-domain analysis; RA-BOTDA; RIN transfer problem; Raman amplification; Raman-Assisted BOTDA Systems; Raman-assistance technique; VBOTDA; dynamic distributed sensing; gain measurement; local stimulated Brillouin scattering gain curve; long-range distributed sensing; low-frequency probe wave; phase measurement; relative intensity noise transfer reduction; vector BOTDA; Frequency modulation; Gain; Noise; Optical sensors; Probes; Scattering; Brillouin scattering; distributed Raman amplification; distributed optic fiber sensor; phase detection;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2013.2292556
Filename :
6674998
Link To Document :
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