Zaidi Farhan, Nannipieri Tiziano, Soto Marcelo A, Signorini Alessandro, Bolognini Gabriele, Di Pasquale Fabrizio
Scuola Superiore Sant'Anna, Institute of Communication, Information and Perception Technologies, Pisa, Italy.
Appl Opt. 2012 Oct 20;51(30):7268-75. doi: 10.1364/AO.51.007268.
We propose and experimentally demonstrate the feasibility of an integrated hybrid optical fiber sensing interrogation technique that efficiently combines distributed Raman-based temperature sensing with fiber Bragg grating (FBG)-based dynamic strain measurements. The proposed sensing system is highly integrated, making use of a common optical source/receiver block and exploiting the advantages of both (distributed and point) sensing technologies simultaneously. A multimode fiber is used for distributed temperature sensing, and a pair of FBGs in each discrete sensing point, partially overlapped in the spectral domain, allows for temperature-independent discrete strain measurements. Experimental results report a dynamic strain resolution of 7.8 nε/√Hz within a full range of 1700 με and a distributed temperature resolution of 1°C at 20 km distance with 2.7 m spatial resolution.
我们提出并通过实验证明了一种集成混合光纤传感询问技术的可行性,该技术将基于分布式拉曼的温度传感与基于光纤布拉格光栅(FBG)的动态应变测量有效结合。所提出的传感系统高度集成,利用了一个共同的光源/接收器模块,并同时利用了两种(分布式和点式)传感技术的优势。多模光纤用于分布式温度传感,每个离散传感点处的一对FBG在光谱域中部分重叠,可实现与温度无关的离散应变测量。实验结果表明,在1700 με的全范围内,动态应变分辨率为7.8 nε/√Hz,在20 km距离处,空间分辨率为2.7 m时,分布式温度分辨率为1°C。