研究目的
Investigating the simultaneous implementation of distributed acoustic sensing (DAS) and distributed temperature sensing (DTS) through space-division multiplexing based on multicore fiber.
研究成果
The results constitute the first experimental demonstration of simultaneous DAS and DTS measurement through space-division multiplexing based on MCF. The proposed SDM hybrid sensing system shows great potential for long-range real-time pipeline monitoring in oil and gas industry.
研究不足
The improvement of SNR is achieved at the expense of degrading the spatial resolution of the system due to wavelet transform denoising. Higher sampling rate could mitigate the degradation of spatial resolution.
1:Experimental Design and Method Selection:
The hybrid fiber sensor is realized through space-division multiplexed reflectometers in a multicore fiber, where Raman optical time-domain reflectometry (ROTDR) for DTS is implemented simultaneously with phase-sensitive optical time-domain reflectometry (Φ-OTDR) for DAS through space-division multiplexing.
2:Sample Selection and Data Sources:
A multicore fiber containing seven cores was used in the experiment.
3:List of Experimental Equipment and Materials:
The setup includes a laser diode, semiconductor optical amplifier, pulse generator, erbium-doped fiber amplifier, optical band-pass filter, fan-in coupler, photodetector, and oscilloscope.
4:Experimental Procedures and Operational Workflow:
The CW output light from the laser is modulated by a semiconductor optical amplifier, amplified by an erbium-doped fiber amplifier, and then divided into two paths for Φ-OTDR and ROTDR measurements.
5:Data Analysis Methods:
Wavelet transform denoising method is employed to reduce the noise of temporal ROTDR traces.
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Laser diode
Generates continuous wave output light for the experiment.
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Semiconductor optical amplifier
Modulates the CW output light from the laser.
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Pulse generator
Drives the semiconductor optical amplifier with electrical pulses.
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Erbium-doped fiber amplifier
Amplifies the modulated pulse.
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Optical band-pass filter
Filters out the amplified spontaneous emission noise from the amplified pulse.
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Fan-in coupler
Injects the pump pulse into the multicore fiber.
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Photodetector
Detects the backscattered light for Φ-OTDR measurements.
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Oscilloscope
Acquires data from the detectors.
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