In this work two Neural Network (NN) based solutions are proposed to recover the distributed temperature profile of a sensing fiber, measured using a commercial Brillouin Optical Time-Domain Analysis (BOTDA) interrogator. A detailed analysis in terms of temperature accuracy and processing speed is carried out for both the proposed methods, comparing the results with the ones obtained from the application of classical fitting techniques, namely cross-correlation (CORR), Lorentzian fitting (LF) and Pseudo-Voigt fitting (PV), through both simulations and real measurements carried out in laboratory environment. The results show that the first NN implementation, which aims to maximize the accuracy of the temperature profile and the processing sp...
This paper presents a distributed fiber optic Brillouin scattering investigation, which involves mea...
The performance of post-processing techniques carried out on the Brillouin gain spectrum to estimate...
Errors in the extracted key parameters directly influence the errors in the temperature and strain m...
In this work two Neural Network (NN) based solutions are proposed to recover the distributed tempera...
The use of an artificial neural network (ANN) for extraction of a temperature profile from a local B...
A system based on the use of artificial neural networks allowing discrimination of strain and temper...
Automatic discrimination between strain and temperature in a Brillouin optical time domain analyzer ...
Big structures monitoring is a relevant issue due to their size and trouble to find damages. The goa...
The experimental validation of a numerical technique for temperature/strain profile reconstruction b...
The Brillouin optical time domain reflectometry (BOTDR) system measures the distributed strain and t...
Brillouin frequency shift (BFS) of distributed optical fiber sensor is extracted from the Brillouin ...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...
Brillouin optical correlation-domain reflectometry (BOCDR) is a fiber-optic distributed sensing tech...
Department of Electronic and Information EngineeringDepartment of Electrical EngineeringRefereed con...
In this work we demonstrate an extremely simple BOTDA scheme capable of delivering distributed Brill...
This paper presents a distributed fiber optic Brillouin scattering investigation, which involves mea...
The performance of post-processing techniques carried out on the Brillouin gain spectrum to estimate...
Errors in the extracted key parameters directly influence the errors in the temperature and strain m...
In this work two Neural Network (NN) based solutions are proposed to recover the distributed tempera...
The use of an artificial neural network (ANN) for extraction of a temperature profile from a local B...
A system based on the use of artificial neural networks allowing discrimination of strain and temper...
Automatic discrimination between strain and temperature in a Brillouin optical time domain analyzer ...
Big structures monitoring is a relevant issue due to their size and trouble to find damages. The goa...
The experimental validation of a numerical technique for temperature/strain profile reconstruction b...
The Brillouin optical time domain reflectometry (BOTDR) system measures the distributed strain and t...
Brillouin frequency shift (BFS) of distributed optical fiber sensor is extracted from the Brillouin ...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...
Brillouin optical correlation-domain reflectometry (BOCDR) is a fiber-optic distributed sensing tech...
Department of Electronic and Information EngineeringDepartment of Electrical EngineeringRefereed con...
In this work we demonstrate an extremely simple BOTDA scheme capable of delivering distributed Brill...
This paper presents a distributed fiber optic Brillouin scattering investigation, which involves mea...
The performance of post-processing techniques carried out on the Brillouin gain spectrum to estimate...
Errors in the extracted key parameters directly influence the errors in the temperature and strain m...