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Interferometric and fibre Bragg grating sensor interrogation using an arrayed waveguide grating

机译:使用阵列波导光栅的干涉和光纤布拉格光栅传感器询问

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摘要

We investigate the use of an arrayed waveguide grating (AWG) to interrogate both fibre Bragg grating (FBG) and interferometric sensors. A broadband light source is used to illuminate both the FBG and interferometric sensors. Reflected spectral information is directed to an AWG with integral photodetectors providing 40 electrical outputs. To interrogate interferometric sensors we investigated the dual wavelength technique to measure the distance of a Fabry-Perot cavity, which produced a maximum unambiguous range of 1440μm with an active sensor. Three methods are described to interrogate FBG sensors. The first technique makes use of the reflected light intensity in an AWG channel passband from a narrow bandwidth grating, giving a usable range of 500με and a dynamic strain resolution of 96nε/√Hz at 30Hz. The second approach utilises wide gratings larger than the channel spacing of the AWG; by monitoring the intensity present in corresponding AWG channels an improved range of 1890με was achieved. The third method improves the dynamic range by utilising a heterodyne approach based on interferometric wavelength shift detection providing a dynamic strain resolution of 17nε/√Hz at 30Hz.
机译:我们调查了使用阵列波导光栅(AWG)询问光纤布拉格光栅(FBG)和干涉传感器。宽带光源用于照亮FBG和干涉传感器。反射的光谱信息被导向带有集成光电探测器的AWG,该探测器提供40个电输出。为了询问干涉式传感器,我们研究了双波长技术以测量Fabry-Perot腔的距离,该腔在有源传感器的作用下产生的最大明确范围为1440μm。描述了三种询问FBG传感器的方法。第一项技术利用了窄带宽光栅在AWG通道通带中的反射光强度,提供了500με的可用范围和30Hz时的动态应变分辨率96nε/√Hz。第二种方法利用宽于AWG通道间距的宽光栅;通过监测相应AWG通道中存在的强度,可实现1890με的改进范围。第三种方法通过利用基于干涉式波长偏移检测的外差方法提高动态范围,在30Hz时提供17nε/√Hz的动态应变分辨率。

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