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Power modulated temperature sensor with inscribed fibre Bragg gratings

机译:带内接光纤布拉格光栅的功率调制温度传感器

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摘要

The Fibre Bragg Grating (FBG) based temperature optical sensor has been designed and demonstrated. FBGs have been modelled and fabricated so as to convert the Bragg wavelength shift into the intensity domain. The main experimental setup consists of a filtering FBG and two scanning FBGs, respectively, left and right scanning FBG, whereby scanning FBGs are symmetrically located on the slopes of the filtering FBG. Such an approach allows for the modulation of power for the propagating optical signal depending on the ambient temperature at the scanning FBG location. A positive or negative change of power is determined by the spectral response of the FBG. Experimental research of the scanning FBGs' sensitivities emphasized that the key issue is the filtering FBG. A different level of sensitivity could be achieved due to the spectral characteristic of the filtering FBG. Omitting advanced and high-cost devices, the FBG-based temperature sensor is presented. The FBG-based sensor setup could yield resolution of 1 degrees C for the range of temperature 0.5 degrees C to 52.5 degrees C. The experimental study has been performed as a base for an easy-placed sensor system to monitor external parameters in real environment.
机译:设计并演示了基于光纤布拉格光栅(FBG)的温度光学传感器。已经对FBG进行了建模和制造,以便将布拉格波长偏移转换为强度域。主要的实验设置包括一个滤波FBG和两个扫描FBG,分别是左扫描FBG和右扫描FBG,其中扫描FBG对称地位于滤波FBG的斜率上。这种方法允许根据扫描FBG位置处的环境温度来调制用于传播的光信号的功率。功率的正或负变化取决于FBG的光谱响应。扫描FBG灵敏度的实验研究强调,关键问题是过滤FBG。由于滤波FBG的光谱特性,可以实现不同级别的灵敏度。省略了基于FBG的温度传感器,省略了先进且昂贵的设备。基于FBG的传感器设置可在温度范围0.5摄氏度到52.5摄氏度之间产生1摄氏度的分辨率。该实验研究已作为易于放置的传感器系统的基础进行,该传感器系统可在实际环境中监视外部参数。

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