We propose and experimentally demonstrate a stable homodyne phase demodulation technique in a Ï\u86-OTDR using a double-pulse probe and a simple direct detection receiver. The technique uses selective phase modulation of one of a pair of pulses to generate a carrier for dynamic phase changes and involves an enhanced phase demodulation scheme suitable for distributed sensing by being robust against light intensity fluctuations, independent of the modulation depth, and convenient for analogue signal processing. The capability of the technique to quantify distributed dynamic phase change due to a generic external impact is experimentally demonstrated by measuring the phase change induced by a nonlinear actuator generating a 2 kHz perturbation ...
Based on a novel method for overcoming DC drift in RF subcarrier phase detection scheme for fibre op...
The emergence of tunable diode lasers from the communications industry creates a need in diagnostic ...
Phase diversity (PD) receivers are an elegant option to handle the phase noise at homodyne detection...
We propose and experimentally demonstrate a stable homodyne phase demodulation technique in a Ï-OTDR...
Distributed Acoustic Sensing (DAS) is a technology with interesting features for real-time safety an...
A method of homodyne demodulation using a phase generated carrier is described and experimentally de...
We demonstrate a Distributed Acoustic Sensor (DAS) based on Ultra-Weak Fiber Bragg Gratings (UWFBGs)...
A distributed optical fibre sensor is introduced which is capable of quantifying multiple dynamic st...
A passive homodyne phase demodulation technique based on a linear-fitting trigonometric-identity-tra...
acoustic sensor, with the ability to detect and retrieve actual temporal waveforms of multiple vibra...
We report a novel experimental setup to perform distributed characterization in intensity and phase ...
A novel high sampling rate multi-pulse phase-sensitive OTDR (Φ-OTDR) employing frequency division mu...
acoustic sensor, with the ability to detect and retrieve actual temporal waveforms of multiple vibra...
Recently, the combination of pattern recognition technology and distributed fiber sensing systems ha...
We present two variations of a novel interferometry technique capable of simultaneously measuring mu...
Based on a novel method for overcoming DC drift in RF subcarrier phase detection scheme for fibre op...
The emergence of tunable diode lasers from the communications industry creates a need in diagnostic ...
Phase diversity (PD) receivers are an elegant option to handle the phase noise at homodyne detection...
We propose and experimentally demonstrate a stable homodyne phase demodulation technique in a Ï-OTDR...
Distributed Acoustic Sensing (DAS) is a technology with interesting features for real-time safety an...
A method of homodyne demodulation using a phase generated carrier is described and experimentally de...
We demonstrate a Distributed Acoustic Sensor (DAS) based on Ultra-Weak Fiber Bragg Gratings (UWFBGs)...
A distributed optical fibre sensor is introduced which is capable of quantifying multiple dynamic st...
A passive homodyne phase demodulation technique based on a linear-fitting trigonometric-identity-tra...
acoustic sensor, with the ability to detect and retrieve actual temporal waveforms of multiple vibra...
We report a novel experimental setup to perform distributed characterization in intensity and phase ...
A novel high sampling rate multi-pulse phase-sensitive OTDR (Φ-OTDR) employing frequency division mu...
acoustic sensor, with the ability to detect and retrieve actual temporal waveforms of multiple vibra...
Recently, the combination of pattern recognition technology and distributed fiber sensing systems ha...
We present two variations of a novel interferometry technique capable of simultaneously measuring mu...
Based on a novel method for overcoming DC drift in RF subcarrier phase detection scheme for fibre op...
The emergence of tunable diode lasers from the communications industry creates a need in diagnostic ...
Phase diversity (PD) receivers are an elegant option to handle the phase noise at homodyne detection...