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Distributed Humidity Sensing in PMMA Optical Fibers at 500 nm and 650 nm Wavelengths

机译:PMMA光纤在500 nm和650 nm波长处的分布式湿度感测

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Distributed measurement of humidity is a sought-after capability for various fields of application, especially in the civil engineering and structural health monitoring sectors. This article presents a method for distributed humidity sensing along polymethyl methacrylate (PMMA) polymer optical fibers (POFs) by analyzing wavelength-dependent Rayleigh backscattering and attenuation characteristics at 500 nm and 650 nm wavelengths. Spatially resolved humidity sensing is obtained from backscatter traces of a dual-wavelength optical time domain reflectometer (OTDR). Backscatter dependence, attenuation dependence as well as the fiber length change are characterized as functions of relative humidity. Cross-sensitivity effects are discussed and quantified. The evaluation of the humidity-dependent backscatter effects at the two wavelength measurements allows for distributed and unambiguous measurement of relative humidity. The technique can be readily employed with low-cost standard polymer optical fibers and commercial OTDR devices.
机译:湿度的分布式测量在各种应用领域中都很受欢迎,尤其是在土木工程和结构健康监测领域。本文介绍了一种通过分析在500 nm和650 nm波长下与波长相关的瑞利反向散射和衰减特性来沿聚甲基丙烯酸甲酯(PMMA)聚合物光纤(POF)进行分布式湿度传感的方法。从双波长光学时域反射仪(OTDR)的反向散射轨迹获得空间分辨的湿度感测。反向散射的依赖性,衰减的依赖性以及纤维长度的变化是相对湿度的函数。对交叉敏感性效应进行了讨论和量化。在两个波长测量中对湿度相关的反向散射效应的评估允许对相对湿度进行分布式和明确的测量。该技术可轻松用于低成本标准聚合物光纤和商用OTDR设备。

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