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Efficient large-scale multiplexing of fiber Bragg grating and fiber Fabry-Perot sensors for structural health monitoring applications

机译:光纤布拉格光栅和光纤Fabry-Perot传感器的高效大规模复用,用于结构健康监测应用

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摘要

Fiber Bragg gratings have been demonstrated as a versatile sensor for structural health monitoring. We present an efficient and cost effective multiplexing method for fiber Bragg grating and fiber Fabry-Perot sensors based on a broadband mode-locked fiber laser source and interferometric interrogation. The broadband, pulsed laser source permits time and wavelength division multiplexing to be employed to achieve very high sensor counts. Interferometric interrogation also permits high strain resolutions over large frequency ranges to be achieved. The proposed system has the capability to interrogate several hundred fiber Bragg gratings or fiber Fabry-Perot sensors on a single fiber, whilst achieving sub-microstrain resolution over bandwidths greater than 100 kHz. Strain resolutions of 30n epsilon/Hz(1/2) and 2 n epsilon/Hz(1/2) are demonstrated with the fiber Bragg grating and fiber Fabry-Perot sensor respectively. The fiber Fabry-Perot sensor provides an increase in the strain resolution over the fiber Bragg grating sensor of greater than a factor of 10. The fiber Bragg gratings are low reflectivity and could be fabricated during the fiber draw process providing a cost effective method for array fabrication. This system would find applications in several health monitoring applications where large sensor counts are necessary, in particular acoustic emission.
机译:光纤布拉格光栅已被证明是用于结构健康监测的多功能传感器。我们提出了一种基于宽带锁模光纤激光源和干涉仪询问的光纤布拉格光栅和法布里-珀罗光纤传感器的高效且经济高效的复用方法。宽带脉冲激光源允许使用时分和波分复用来实现很高的传感器数量。干涉式询问还允许在较大的频率范围内实现高应变分辨率。所提出的系统具有在单根光纤上询问数百个光纤布拉格光栅或光纤Fabry-Perot传感器的能力,同时在大于100 kHz的带宽上实现亚微应变分辨率。分别用光纤布拉格光栅和光纤法布里-珀罗传感器证明了30n epsilon / Hz(1/2)和2 n epsilon / Hz(1/2)的应变分辨率。光纤Fabry-Perot传感器比光纤布拉格光栅传感器的应变分辨率提高了10倍以上。光纤布拉格光栅的反射率低,可以在光纤拉伸过程中制造,从而为阵列提供了一种经济高效的方法制造。该系统将在一些需要大量传感器(特别是声发射)的健康监测应用中找到应用。

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