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 >A fiber laser sensor for liquid level and temperature based on two taper structures and fiber Bragg grating
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A fiber laser sensor for liquid level and temperature based on two taper structures and fiber Bragg grating

机译:基于两个锥度结构和光纤布拉格光栅的液位和温度光纤激光传感器

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摘要

A fiber laser sensor for simultaneous measurement of liquid level and temperature is proposed and demonstrated experimentally. The sensor is based on two taper structures and a fiber Bragg grating (FBG). The two taper structures form a novel fiber interferometer, which is fabricated by cascading two tapers in a section of single-mode fiber (SMF). The FBG and the interferometer serve as the filters of the laser cavity. Corresponding to the two filters, the laser outputs are stable dual-wavelength outputs, which have different characteristics to the liquid level and the temperature. The wavelength produced by the FBG is not sensitive to the liquid level. The temperature sensitivity of the wavelength produced by the FBG is 0.0123 nm/degrees C. The wavelength produced by the interferometer is sensitive to the liquid level and the sensitivity is up to 0.2294 nm/mm. The temperature sensitivity of the wavelength produced by the interferometer is 0.0648 nm/degrees C. According to the different spectral responses of the liquid level and the temperature, simultaneous measurement can be realized. Furthermore, the proposed sensor has the advantages of less detection limit (DL), higher resolution and higher sensitivity compared to other optical fiber sensors. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了一种同时测量液位和温度的光纤激光传感器,并进行了实验验证。该传感器基于两个锥形结构和一个光纤布拉格光栅(FBG)。这两个锥度结构形成了一种新颖的光纤干涉仪,该干涉仪是通过在单模光纤(SMF)的一部分中级联两个锥度来制造的。 FBG和干涉仪用作激光腔的滤波器。与两个滤波器相对应,激光输出是稳定的双波长输出,其对液位和温度具有不同的特性。 FBG产生的波长对液位不敏感。 FBG产生的波长的温度灵敏度为0.0123 nm /℃。干涉仪产生的波长对液位敏感,灵敏度最高为0.2294 nm / mm。干涉仪产生的波长的温度敏感性为0.0648 nm /℃。根据液位和温度的不同光谱响应,可以实现同时测量。此外,与其他光纤传感器相比,所提出的传感器具有更少的检测极限(DL),更高的分辨率和更高的灵敏度的优点。 (C)2014 Elsevier B.V.保留所有权利。

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