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Updated: Jan 11, 2026

Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping
Published on: November 7, 2016
High-precision fiber optic temperature monitoring system based on FBG-GaAs dual-mode collaborative measurement
Abstract:
This paper presents a high-precision fiber optic temperature monitoring system based on FBG-GaAs dual-mode collaborative measurement. The system innovatively implements a dual-mode collaborative mechanism utilizing a GaAs crystal FP cavity integrated with FBG. The FBG provides coarse measurement with a sensitivity of 0.011 nm/∘C, enabling rapid temperature positioning across a wide range from -20 ∘C to 150 ∘C. Simultaneously, the GaAs component delivers fine measurement with a sensitivity of 0.12 nm/∘C for high-resolution compensation. This approach resolves the spectral overlap issue that traditional FP interferometers face in wide temperature ranges. Experimental results demonstrate that the system achieves a maximum sampling rate of 6000 Hz with a temperature demodulation error of ±0.41 ∘C, showing superior advantages in wide temperature adaptability compared to similar sensors.
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