首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Fabrication of dual-parameter fiber-optic sensor by cascading FBG with FPI for simultaneous measurement of temperature and gas pressure
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Fabrication of dual-parameter fiber-optic sensor by cascading FBG with FPI for simultaneous measurement of temperature and gas pressure

机译:用FPI级联用FPG进行双参数光纤传感器,同时测量温度和气体压力

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摘要

A dual-parameter fiber-optic sensor based on fiber Bragg grating (FBG) cascaded with Fabry-Perot interferometer (FPI) structure is described and demonstrated to measure temperature and gas pressure simultaneously. The proposed sensing structure consists of an extrinsic FPI in the form of hemispherical ultraviolet (UV) curing glue capped on a FBG end face. The spectral interference peak produced by the UV glue FPI is sensitive to ambient temperature and gas pressure variations, whereas the reflection spectrum of FBG only depends on temperature and insensitive to pressure change, therefore, the temperature and gas pressure can be simultaneously measured by this cascaded sensor. Experimental results show that the sensor has higher temperature and gas pressure sensitivities of 223.4 pm/degrees C and 24.99 nm/MPa in a range from 30 degrees C to 110 degrees C and from 0.1 MPa to 0.7 MPa. Utilizing the temperature-dependent sensitivity of FBG, a constructed sensitivity matrix is used to distinguish measurement of temperature and gas pressure, and the measurement resolutions are determined to be 0.086 degrees C and 0.730 KPa. This sensing architecture is not only an effective method for single-point multi-parameter measurement, but also has merits of high sensitivity, compactness, ease of fabrication and low cost, which make it valuable for biosensors and medical applications.
机译:基于光纤布拉格光栅(FBG)的双参数光纤传感器级联,并描述并说明了同时测量温度和气体压力的纤维布拉格光栅(FPI)。所提出的感测结构由半球形紫外(UV)固化胶的形式的外在FPI组成,所述固定在FBG端面上的固化胶。由UV胶FPI产生的光谱干扰峰对环境温度和气体压力变化敏感,而FBG的反射光谱仅取决于温度并对压力变化不敏感,因此,可以通过该级联测量温度和气体压力传感器。实验结果表明,该传感器具有较高的温度和气体压力敏感性为223.4μm/℃和24.99nm / MPa,其范围为30℃至110℃,从0.1MPa到0.7MPa。利用FBG的温度依赖性灵敏度,使用构造的灵敏度矩阵来区分温度和气体压力的测量,并且测量分辨率确定为0.086℃和0.730kPa。这种传感架构不仅是单点多参数测量的有效方法,而且还具有高灵敏度,紧凑性,易于制造和低成本的优点,这使得生物传​​感器和医疗应用有价值。

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