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Liquid sensors using refractive intensity at the end-face of a glass fiber connected to fiber-Bragg grating

机译:液体传感器利用连接到光纤布拉格光栅的玻璃纤维端面的折射强度

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摘要

All-fiber-optic liquid sensors were developed to detect liquid solutions and monitor the submersion. Their operating principle is based on Fresnel's laws of reflection at the end-face of silica fibers. Two types of sensing probes were fabricated using single-mode and multi-mode fibers. Their spectral responses were measured with respect to the intensity modulation caused by a change in the refractive index of the surrounding media. By comparing the optical output power of the sensor on exposing the probe to air and water, its potential as a sensitive submersion sensor was proved. The difference in the output power levels between exposure to air and water was 10 dB. Further, a fiber-Bragg grating (FBG) spliced to the sensor head was used for remote monitoring of whether the optical fiber or sensor head were damaged or not. The possibility of self-diagnosis of the sensor was demonstrated.
机译:开发了全光纤液体传感器以检测液体溶液并监控浸没。它们的工作原理基于二氧化硅纤维端面的菲涅尔反射定律。使用单模和多模光纤制造了两种类型的传感探头。针对由周围介质的折射率变化引起的强度调制,测量了它们的光谱响应。通过比较将探头暴露于空气和水中时传感器的光输出功率,证明了其作为灵敏的浸没传感器的潜力。暴露于空气和水之间的输出功率水平之差为10 dB。此外,连接到传感器头的光纤布拉格光栅(FBG)用于远程监视光纤或传感器头是否损坏。证明了传感器自我诊断的可能性。

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