To measure the strain and/or temperature along an optical fiber with one-end access, a Brillouin optical frequency-domain reflectometry (BOFDR) technique is presented in this paper. It is based on detecting the spontaneous Brillouin scattering from a sinusoidally modulated pump light. Compared to the Brillouin optical frequency-domain analysis (BOFDA), this new BOFDR sensor approach presents the advantage that the measurements are free from the distorting components related to acoustic wave modulation, thus simplifying the associated data processing
Brillouin optical correlation-domain technologies are reviewed as “fiber optic nerve systems&r...
Brillouin-scattering Optical Time Domain Reflectometry (BOTDR) is a viable technology for simultaneo...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...
To measure the strain and/or temperature along an optical fiber with one-end access, a Brillouin opt...
We demonstrate a Brillouin optical frequency-domain reflectometry (BOFDR) technique, which can measu...
We demonstrate a Brillouin optical frequency-domain reflectometry (BOFDR) technique, which can measu...
In this paper, multiple points of strain and temperature measurement in real-time is investigated us...
We demonstrate (and are the first to do so) 63 km Brillouin Optical Frequency-Domain Analysis (BOFDA...
International audienceWe investigate a novel distributed Brillouin optical time domainreflectometer ...
AbstractWe report on the development of a distributed fibre optic monitoring system for detection of...
In this paper, we demonstrate sensing range improvement of Brillouin optical time-domain reflectomet...
A distributed dynamic strain measurement is demonstrated using small gain stimulated Brillouin scatt...
The sensitivity of a sensor to strain or the temperature variations due to distributed Brillouin sca...
The Brillouin backscattered wave was examined in a short-length single-mode fiber at different ambie...
565-570A new technique for optical fiber defect detection using Brillouin distributed fiber optic se...
Brillouin optical correlation-domain technologies are reviewed as “fiber optic nerve systems&r...
Brillouin-scattering Optical Time Domain Reflectometry (BOTDR) is a viable technology for simultaneo...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...
To measure the strain and/or temperature along an optical fiber with one-end access, a Brillouin opt...
We demonstrate a Brillouin optical frequency-domain reflectometry (BOFDR) technique, which can measu...
We demonstrate a Brillouin optical frequency-domain reflectometry (BOFDR) technique, which can measu...
In this paper, multiple points of strain and temperature measurement in real-time is investigated us...
We demonstrate (and are the first to do so) 63 km Brillouin Optical Frequency-Domain Analysis (BOFDA...
International audienceWe investigate a novel distributed Brillouin optical time domainreflectometer ...
AbstractWe report on the development of a distributed fibre optic monitoring system for detection of...
In this paper, we demonstrate sensing range improvement of Brillouin optical time-domain reflectomet...
A distributed dynamic strain measurement is demonstrated using small gain stimulated Brillouin scatt...
The sensitivity of a sensor to strain or the temperature variations due to distributed Brillouin sca...
The Brillouin backscattered wave was examined in a short-length single-mode fiber at different ambie...
565-570A new technique for optical fiber defect detection using Brillouin distributed fiber optic se...
Brillouin optical correlation-domain technologies are reviewed as “fiber optic nerve systems&r...
Brillouin-scattering Optical Time Domain Reflectometry (BOTDR) is a viable technology for simultaneo...
Optical fiber sensors based on stimulated Brillouin scattering have now clearly demonstrated their e...