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Quasi-distributed Temperature Sensor Combining Fibre Bragg Gratings And Temporal Reflectometry Technique Interrogation

机译:结合光纤光栅和时间反射技术的准分布式温度传感器

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摘要

Quasi-distributed sensors based on Fibre Bragg Gratings (FBG) usually deal with the concatenation of FBGs of different Bragg wavelengths analyzed through wavelength-sensitive devices. In these sensors, a given wavelengths range is dedicated to one particular FBG. The number of sensing points is directly limited by the source and detector spectral ranges, and by the wavelength spacing between two gratings. This spacing is linked to the maximum possible excursion of the physical parameter to be measured-before superimposition of the reflection spectra of the FBGs. In this paper, an original interrogating device is presented, that allows a very large number of concatenated gratings to be addressed. In this scheme, identical FBGs (same Bragg wavelength and same low reflectivity) are interrogated by the Optical Time Domain Reflectometry technique, for which a commercial device has been extended to a wavelength-tunable system, within an automated experimental set-up. Detection and localization of an important amount of sensing points along a unique optical fibre is demonstrated. Repeatability measurements did exhibit the very good accuracy of the presented sensor.
机译:基于光纤布拉格光栅(FBG)的准分布式传感器通常处理通过波长敏感设备分析的不同布拉格波长的FBG的串联。在这些传感器中,给定的波长范围专用于一个特定的FBG。感测点的数量直接受到光源和检测器光谱范围以及两个光栅之间的波长间隔的限制。该距离与要叠加的FBG反射光谱之前要测量的物理参数的最大可能偏差有关。在本文中,提出了一种原始的询问设备,该设备允许处理大量串联的光栅。在该方案中,通过光时域反射仪技术来查询相同的FBG(相同的布拉格波长和相同的低反射率),为此,在自动化的实验装置中,商用设备已扩展到波长可调系统。演示了沿着独特的光纤对大量传感点的检测和定位。重复性测量确实显示了所提供传感器的非常好的准确性。

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