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Optical fiber grating-based sensing system for use in pavement health monitoring

机译:用于路面健康监测的基于光纤光栅的传感系统

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In this paper, we describe the development and realization of a sensing system using a high-resolution temperature and strain sensor with fiber Bragg grating (FBG) technology and a simple and low-cost long-period grating (LPG) sensor for the water level measurement in pavement structures. The FBG sensor consists of a reference fiber grating and a grating pair scheme that could offer the potential of simultaneous measurement of strain and temperature for monitoring pavement structures. For FBG sensor, experimental results have shown that measurement errors of 6 micro strains and 0.13 Celsius for strain and temperature could be achieved, respectively. The LPG sensor was extremely sensitive to the refractive index of the medium surrounding the cladding surface of the sensing grating, thus allowing it to be used as an ambient index sensor. A LPG-type water level sensor with a resolution was of ~5 mm was demonstrated to distinguish between in the air and under water. This integrated FBG and LPG sensing system is expected to benefit the health monitoring of multi-layer pavement structures especially for the evaluation and application of new materials, mix design procedures or construction technology.
机译:在本文中,我们描述了使用具有光纤布拉格光栅(FBG)技术的高分辨率温度和应变传感器以及用于水位的简单且低成本的长周期光栅(LPG)传感器的传感系统的开发和实现。路面结构中的测量。 FBG传感器由参考光纤光栅和光栅对方案组成,可以提供同时测量应变和温度以监测路面结构的潜力。对于FBG传感器,实验结果表明,对于应变和温度,分别可以实现6个微应变和0.13摄氏度的测量误差。 LPG传感器对围绕传感光栅包层表面的介质的折射率极为敏感,因此可以用作环境折射率传感器。 LPG型水位传感器的分辨率约为〜5 mm,可区分空气中和水下。这种集成的FBG和LPG传感系统有望有益于多层路面结构的健康监控,尤其是在评估和应用新材料,混合料设计程序或施工技术方面。

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