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A novel fiber optic temperature monitoring sensor using hard-polymer-clad fiber and an optical time-domain reflectometer

机译:一种新型的使用硬质聚合物包覆光纤和光时域反射仪的光纤温度监测传感器

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摘要

Hard-polymer-clad fiber is a specific type of optical fiber, in which a hard polymer cladding made of fluoroacrylate acts as a protective coating for an inner silica core. An optical time-domain reflectometer is an optical loss measurement system that provides optical loss and event distance measurement in real time. This study proposes a novel fiber optic temperature monitoring sensor system using an economical optical time-domain reflectometer and hard-polymer-clad fiber. Sensor nodes were economically and quickly made by locally stripping hard-polymer-clad fiber clad through photother-mal and photochemical processes using a continuous/pulse hybrid-mode laser. The core length exposed was easily controlled by adjusting the laser beam diameter, and the exposed core created a backscattering signal in the optical time-domain reflectometer attenuation trace. The backscattering peak was sensitive to the temperature variation. Since the elaborated hard-polymer-clad fiber temperature sensor was insensitive to strain applied to the sensor node and to temperature variation in the normal hard-polymer-clad fiber line, neither strain compensation nor isolation technique is required. These characteristics are important advantages for using as structure-integrated temperature sensors. The performance characteristics of the sensor nodes included an operating range of up to 120 ℃, a resolution of 1.52 ℃, a tensile strain resistance of 13%, and a temperature sensitivity of -0.01 dB/℃.
机译:硬质聚合物包层光纤是一种特殊类型的光纤,其中由氟代丙烯酸酯制成的硬质聚合物包层用作内部二氧化硅芯的保护层。光学时域反射仪是一种光学损耗测量系统,可实时提供光学损耗和事件距离测量。这项研究提出了一种新颖的光纤温度监测传感器系统,该系统使用经济的光学时域反射仪和硬聚合物包覆光纤。通过使用连续/脉冲混合模式激光通过光热和光化学过程局部剥离硬聚合物包覆的光纤,可以经济而快速地制造传感器节点。通过调整激光束直径可以轻松控制裸露的纤芯长度,并且裸露的纤芯在光学时域反射仪衰减轨迹中产生了反向散射信号。反向散射峰对温度变化敏感。由于精心制作的覆有硬质聚合物的光纤温度传感器对施加到传感器节点的应变以及普通覆有硬质聚合物的光纤线路中的温度变化不敏感,因此不需要应变补偿或隔离技术。这些特性对于用作集成结构的温度传感器具有重要的优势。传感器节点的性能特征包括:最高工作温度为120℃,分辨率为1.52℃,抗拉应变率为13%,温度灵敏度为-0.01 dB /℃。

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