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Demodulating interferometric and FBG sensors in the spectral domain

机译:在频谱域中对干涉式和FBG传感器进行解调

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Long-gauge SOFO~® sensors have been in use for the last 10 years for the monitoring of civil, geotechnical, oil & Fiber optic sensing systems are increasingly recognized as a very attractive choice for structural health monitoring. Moving form demonstration project to industrial applications requires an integrated approach where the most appropriate technologies are combined to meet the user's requirements. In this context it is often necessary and desirable to combine different sensing technologies in the same project. A bridge-monitoring project might for example require long-gauge interferometric sensors to monitor the concrete deck, interferometric inclinometers for the piles and fiber Bragg grating sensors for the monitoring of the strains in the steel beams and for measuring temperatures. Although fiber optic sensors relying on different technologies can easily be combined at the packaging and cable levels, they often require dedicated instruments to be demodulated. A unified demodulation system would therefore be very attractive. This paper describes a technique relying on the analysis of reflected spectra and allowing the demodulation of interferometric (Michelson or Faby-Perot) sensors and fiber Bragg grating sensors with a single measurement system. It also compares the obtained performance in terms of resolution and dynamic range with the available dedicated systems.
机译:在过去的十年中,长距离的SOFO〜®传感器已用于监视土木,岩土,石油和光纤传感系统,人们日益认为它是用于结构健康监测的非常有吸引力的选择。从示范项目到工业应用的发展需要一种集成的方法,其中结合了最合适的技术来满足用户的需求。在这种情况下,经常有必要并希望在同一项目中结合不同的传感技术。例如,桥梁监测项目可能需要长距离干涉式传感器来监视混凝土甲板,干涉式测斜仪(用于桩)和光纤布拉格光栅传感器(用于监视钢梁中的应变并测量温度)。尽管依赖于不同技术的光纤传感器可以在包装和电缆级别轻松组合,但它们通常需要对专用仪器进行解调。因此,统一的解调系统将非常有吸引力。本文介绍了一种技术,该技术依赖于对反射光谱的分析,并允许通过单个测量系统对干涉式(Michelson或Faby-Perot)传感器和光纤布拉格光栅传感器进行解调。它还将获得的性能在分辨率和动态范围方面与可用的专用系统进行了比较。

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