A distributed dynamic strain measurement is demonstrated using small gain stimulated Brillouin scattering (SBS) in Brillouin optical time domain reflectometry based on the short-time Fourier transform algorithm. The input power limits, frequency uncertainties for given pulse durations, fiber lengths, and the number of averaging are calculated. The output signal power and the signal-to-noise ratio of the system output are enhanced by SBS. It is found that the signal processing is faster and requires fewer averaging to achieve dynamic sensing performance along the fiber under test. A 60-Hz vibration on a 6-m fiber section at the end of a 935-m fiber is detected with the spatial resolution of 4 m with a sampling rate of 2.5 kS/s
To measure the strain and/or temperature along an optical fiber with one-end access, a Brillouin opt...
A distributed and dynamic strain sensing system based on frequency-scanning phase-sensitive optical ...
The measured distance error caused by double peaks in the BOTDRs (Brillouin optical time domain refl...
A real-time dynamic Brillouin optical time domain reflectometry (BOTDR)-based system is introduced b...
The phase-sensitive optical time-domain reflectometry (φ-OTDR) is a good candidate for distributed d...
Over the past three decades, extensive research activity on Brillouin scattering-based distributed o...
The sensitivity of a sensor to strain or the temperature variations due to distributed Brillouin sca...
Short-Time Fourier Transform-Brillouin Optical Time-Domain Reflectometry (STFT-BOTDR) implements STF...
Dynamic strain measurement in distributed fibre optic sensing (DFOS) is essential for structural hea...
A Brillouin-based distributed optical fiber dynamic strain sensor is described which converts strain...
Distributed fibre optic sensing (DFOS) is essential for structural health monitoring (SHM) of strain...
In this paper, multiple points of strain and temperature measurement in real-time is investigated us...
The impact wave response of soil due to a ball drop is monitored on a 30.5 cm by 30.5 cm square soil...
The Brillouin optical time domain reflectometry (BOTDR) system measures the distributed strain and t...
Short-Time Fourier Transform-Brillouin Optical Time-Domain Reflectometry (STFT-BOTDR) implements STF...
To measure the strain and/or temperature along an optical fiber with one-end access, a Brillouin opt...
A distributed and dynamic strain sensing system based on frequency-scanning phase-sensitive optical ...
The measured distance error caused by double peaks in the BOTDRs (Brillouin optical time domain refl...
A real-time dynamic Brillouin optical time domain reflectometry (BOTDR)-based system is introduced b...
The phase-sensitive optical time-domain reflectometry (φ-OTDR) is a good candidate for distributed d...
Over the past three decades, extensive research activity on Brillouin scattering-based distributed o...
The sensitivity of a sensor to strain or the temperature variations due to distributed Brillouin sca...
Short-Time Fourier Transform-Brillouin Optical Time-Domain Reflectometry (STFT-BOTDR) implements STF...
Dynamic strain measurement in distributed fibre optic sensing (DFOS) is essential for structural hea...
A Brillouin-based distributed optical fiber dynamic strain sensor is described which converts strain...
Distributed fibre optic sensing (DFOS) is essential for structural health monitoring (SHM) of strain...
In this paper, multiple points of strain and temperature measurement in real-time is investigated us...
The impact wave response of soil due to a ball drop is monitored on a 30.5 cm by 30.5 cm square soil...
The Brillouin optical time domain reflectometry (BOTDR) system measures the distributed strain and t...
Short-Time Fourier Transform-Brillouin Optical Time-Domain Reflectometry (STFT-BOTDR) implements STF...
To measure the strain and/or temperature along an optical fiber with one-end access, a Brillouin opt...
A distributed and dynamic strain sensing system based on frequency-scanning phase-sensitive optical ...
The measured distance error caused by double peaks in the BOTDRs (Brillouin optical time domain refl...