Lu Junyang, Yu Yang, Qin Shangpeng, Li Minwei, Bian Qiang, Lu Yang, Hu Xiaoyang, Yang Junbo, Meng Zhou, Zhang Zhenrong
Opt Express. 2022 Mar 14;30(6):9714-9726. doi: 10.1364/OE.452355.
Based on the polymer encapsulation method, a compact structure and high-sensitivity temperature and pressure dual parametric sensor was developed in this paper by wrapping an optical microfiber coupler (OMC) in polydimethylsiloxane (PDMS). Benefiting from the stable chemical properties and good optical field control ability of PDMS, the sensor showed good stability and repeatability. The dependence of the sensor sensitivity on wavelength, temperature, and pressure was experimentally investigated. The results showed that the temperature and pressure sensitivity could reach -2.283 nm/°C and 3.301 nm/Mpa in the C-band range. To overcome the cross-sensitivity of sensor temperature and pressure, a sensitivity matrix was established to realize dual-parameter simultaneous demodulation. In addition, the pressure repeatability of the sensor was tested. Based on this, the sensitivity matrix was further calibrated to reduce the error and improve the accuracy of demodulation. Finally, we also designed a protective shell for the sensor to meet the requirements of practical marine applications. Compared with other existing types of optical fiber sensors, this sensor has the advantages of simple fabrication, high sensitivity, and environmental adaptability, and has great potential for application in the field of marine environmental monitoring.
基于聚合物封装方法,本文通过将光学微纤维耦合器(OMC)包裹在聚二甲基硅氧烷(PDMS)中,研制出一种结构紧凑、高灵敏度的温度和压力双参数传感器。得益于PDMS稳定的化学性质和良好的光场控制能力,该传感器具有良好的稳定性和重复性。通过实验研究了传感器灵敏度对波长、温度和压力的依赖性。结果表明,在C波段范围内,温度和压力灵敏度分别可达-2.283 nm/°C和3.301 nm/Mpa。为克服传感器温度和压力的交叉敏感性,建立了灵敏度矩阵以实现双参数同时解调。此外,还测试了传感器的压力重复性。在此基础上,对灵敏度矩阵进行了进一步校准,以减少误差并提高解调精度。最后,我们还为传感器设计了一个保护壳,以满足实际海洋应用的要求。与其他现有类型的光纤传感器相比,该传感器具有制作简单、灵敏度高和环境适应性强等优点,在海洋环境监测领域具有巨大的应用潜力。