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Fiber-optic liquid level monitoring system using microstructured polymer fiber Bragg grating array sensors: performance analysis

机译:使用微结构聚合物光纤布拉格光栅阵列传感器的光纤液位监测系统:性能分析

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A highly sensitive liquid level monitoring system based on microstructured polymer optical fiber Bragg grating (mPOFBG) array sensors is reported for the first time. The configuration is based on five mPOFBGs inscribed in the same fiber in the 850 tun spectral region, showing the potential to interrogate liquid level by measuring the strain induced in each mPOFBG embedded in a silicone rubber (SR) diaphragm, which deforms due to hydrostatic pressure variations. The sensor exhibits a highly linear response over the sensing range, a good repeatability, and a high resolution. The sensitivity of the sensor is found to be 98 pm/cm of water, enhanced by more than a factor of 9 when compared to an equivalent sensor based on a silica fiber around 1550 ran. The temperature sensitivity is studied and a multi-sensor arrangement proposed, which has the potential to provide level readings independent of temperature and the liquid density.
机译:首次报道了基于微结构聚合物光纤布拉格光栅(mPOFBG)阵列传感器的高灵敏度液位监测系统。该配置基于在850 tun光谱区域中刻在同一根光纤中的五个mPOFBG,通过测量嵌入在硅橡胶(SR)膜片中的每个mPOFBG中引起的应变来显示询问液位的潜力,该应变会因静水压力而变形变化。该传感器在感测范围内表现出高度线性响应,良好的可重复性和高分辨率。发现该传感器的灵敏度为98 pm / cm的水,与基于硅纤维的等效传感器(约1550 ran)相比,其灵敏度提高了9倍以上。研究了温度敏感性并提出了一种多传感器装置,该装置具有提供独立于温度和液体密度的液位读数的潜力。

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