Journal of the European Optical Society-Rapid Publications, Volume. 18, Issue 1, 2022007(2022)
Optical characterization of strain sensing cables for Brillouin optical time domain analysis
[1] R. Di Sante. Fibre optic sensors for structural health monitoring of aircraft composite structures: recent advances and applications.
[2] F. Falcetelli, N. Yue, R. Di Sante, D. Zarouchas. Probability of detection, localization, and sizing: The evolution of reliability metrics in Structural Health Monitoring.
[3] R. Di Sante, L. Donati, E. Troiani, P. Proli. Evaluation of bending strain measurements in a composite sailboat bowsprit with embedded fibre Bragg gratings.
[4] F. Falcetelli, R. Di Sante, E. Troiani. Strategies for embedding optical fiber sensors in additive manufacturing structures.
[5] D. Marini, M. Iuliano, F. Bastianini, G. Bolognini. BOTDA sensing employing a modified brillouin fiber laser probe source.
[6] M.A. Soto, P.K. Sahu, S. Faralli, G. Sacchi, G. Bolognini, F. Di Pasquale, B. Nebendahl, C. Rueck. High performance and highly reliable Raman-based distributed temperature sensors based on correlation-coded OTDR and multimode graded-index fibers.
[7] F. Falcetelli, L. Rossi, R. Di Sante, G. Bolognini. Strain transfer in surface-bonded optical fiber sensors.
[8] D. Marini, L. Rossi, F. Bastianini, G. Bolognini. Study of enhanced performance fiber Brillouin ring laser with wavelength-locking for sensing applications(2018).
[9] L. Rossi, D. Marini, F. Bastianini, G. Bolognini. Analysis of enhanced-performance fibre Brillouin ring laser for Brillouin sensing applications.
[10] G. Bolognini, S. Faralli, A. Chiuchiarelli, F. Falconi, F. Di Pasquale. High-power and low-RIN lasers for advanced first- and higher order Raman copumping.
[11] M.A. Soto, M. Taki, G. Bolognini, F. Di Pasquale. Optimization of a DPP-BOTDA sensor with 25 cm spatial resolution over 60 km standard single-mode fiber using Simplex codes and optical pre-amplification.
[12] A.H. Hartog.
[13] D. Marini, L. Rossi, F. Bastianini, G. Bolognini. Enhanced-performance fibre Brillouin ring laser for Brillouin sensing applications.
[14] F. Bastianini, R. Di Sante, F. Falcetelli, D. Marini, G. Bolognini. Optical fiber sensing cables for Brillouin-based distributed measurements.
[15] E.D. Moore, R.R. McLeod. Correction of sampling errors due to laser tuning rate fluctuations in swept-wavelength interferometry.
[16] D.K. Gifford, S.T. Kreger, A.K. Sang, M.E. Froggatt, R.G. Duncan, M.S. Wolfe, B.J. Soller. Swept-wavelength interferometric interrogation of fiber Rayleigh scatter for distributed sensing applications.
[17] B.J. Soller, M.S. Wolfe, M.E. Froggat. Polarization resolved measurement of Rayleigh backscatter in fiber-optic components.
[18] Y.J. Rao. Fiber Bragg grating sensors: principles and applications.
[19] LUNA Technologies . Optical backscatter reflectometer user guide(2009).
[20] LUNA Technologies . ODiSI-B sensor strain gage factor uncertainty, Revision 2(2016).
[21] D. Li, H. Li, L. Ren, G. Song. Strain transferring analysis of fiber Bragg grating sensors.
Get Citation
Copy Citation Text
Francesco Falcetelli, Filippo Bastianini, Pawel Bocheński, Leonardo Rossi, Raffaella Di Sante, Gabriele Bolognini. Optical characterization of strain sensing cables for Brillouin optical time domain analysis[J]. Journal of the European Optical Society-Rapid Publications, 2022, 18(1): 2022007
Category: Research Articles
Received: Jan. 31, 2022
Accepted: Jul. 28, 2022
Published Online: Oct. 18, 2022
The Author Email: Bolognini Gabriele (bolognini@bo.imm.cnr.it)