Distributed optical fibre sensing, employing either Rayleigh, Raman, or Brillouin scattering, is the only physical-contact sensor technology capable of accurately estimating physical fields with spatial continuity along the fibre. This unique feature and the other features of standard optical fibre sensors (e.g., minimal invasiveness and lightweight, remote powering/interrogating capabilities) have for many years promoted the technology to be a promising candidate for geo-hydrological monitoring. Relentless research efforts are being undertaken to bring the technology to complete maturity through laboratory, physical models, and in-situ tests. The application of distributed optical fibre sensors to geo-hydrological monitoring is here review...
Optical fibre-based monitoring has settled in the field of geohazards monitoring. Interferometric op...
A distributed optical fibre sensing system named Brillouin Optical Time Domain Analysis (BOTDA) is u...
A distributed optical fibre sensing system named Brillouin Optical Time Domain Analysis (BOTDA) is u...
Distributed optical fibre sensing, employing either Rayleigh, Raman, or Brillouin scattering, is the...
We report the experimental application of distributed optical fiber sensors, based on stimulated Bri...
We report the experimental application of distributed optical fiber sensors, based on stimulated Bri...
Distributed optical fiber sensors, based on Brillouin scattering, are exploited to directly measure ...
For almost two decades, distributed optical fibre sensors are well-known for an alternative to conve...
Health monitoring of civil infrastructure systems has recently emerged as a powerful tool for condit...
Optical fibre-based sensors have found a variety of applications throughout engineering and science ...
Although optical fiber sensors have been developed for 30 years, there is a gap between lab experime...
A novel technique for the determination of a creeping landslide boundary is demonstrated. It is base...
A distributed optical fibre sensing system is used to measure landslide-induced strains on an optica...
Although optical fiber sensors have been developed for 30 years, there is a gap between lab experime...
Optical fibre-based monitoring has settled in the field of geohazards monitoring. Interferometric op...
A distributed optical fibre sensing system named Brillouin Optical Time Domain Analysis (BOTDA) is u...
A distributed optical fibre sensing system named Brillouin Optical Time Domain Analysis (BOTDA) is u...
Distributed optical fibre sensing, employing either Rayleigh, Raman, or Brillouin scattering, is the...
We report the experimental application of distributed optical fiber sensors, based on stimulated Bri...
We report the experimental application of distributed optical fiber sensors, based on stimulated Bri...
Distributed optical fiber sensors, based on Brillouin scattering, are exploited to directly measure ...
For almost two decades, distributed optical fibre sensors are well-known for an alternative to conve...
Health monitoring of civil infrastructure systems has recently emerged as a powerful tool for condit...
Optical fibre-based sensors have found a variety of applications throughout engineering and science ...
Although optical fiber sensors have been developed for 30 years, there is a gap between lab experime...
A novel technique for the determination of a creeping landslide boundary is demonstrated. It is base...
A distributed optical fibre sensing system is used to measure landslide-induced strains on an optica...
Although optical fiber sensors have been developed for 30 years, there is a gap between lab experime...
Optical fibre-based monitoring has settled in the field of geohazards monitoring. Interferometric op...
A distributed optical fibre sensing system named Brillouin Optical Time Domain Analysis (BOTDA) is u...
A distributed optical fibre sensing system named Brillouin Optical Time Domain Analysis (BOTDA) is u...