Institute of Telecommunications and Multimedia Applications (iTEAM), Universitat Politècnica de València, Valencia, Spain.
Sensors (Basel). 2013 Sep 4;13(9):11653-9. doi: 10.3390/s130911653.
Regenerated Fibre Bragg Gratings have the potential for high-temperature monitoring. In this paper, the inscription of Fibre Bragg Gratings (FBGs) and the later regeneration process to obtain Regenerated Fiber Bragg Gratings (RFBGs) in high-birefringence optical fiber is reported. The obtained RFBGs show two Bragg resonances corresponding to the slow and fast axis that are characterized in temperature terms. As the temperature increases the separation between the two Bragg resonances is reduced, which can be used for low cost interrogation. The proposed interrogation setup is based in the use of optical filters in order to convert the wavelength shift of each of the Bragg resonances into optical power changes. The design of the optical filters is also studied in this article. In first place, the ideal filter is calculated using a recursive method and defining the boundary conditions. This ideal filter linearizes the output of the interrogation setup but is limited by the large wavelength shift of the RFBG with temperature and the maximum attenuation. The response of modal interferometers as optical filters is also analyzed. They can be easily tuned shifting the optical spectrum. The output of the proposed interrogation scheme is simulated in these conditions improving the sensitivity.
再生光纤布拉格光栅具有高温监测的潜力。本文报告了在高双折射光纤中光纤布拉格光栅(FBG)的写入及其随后的再生过程,以获得再生光纤布拉格光栅(RFBG)。所获得的 RFBG 显示出对应于慢轴和快轴的两个布拉格共振,这些共振在温度方面具有特征。随着温度的升高,两个布拉格共振之间的分离减小,这可用于低成本的询问。所提出的询问设置基于使用光学滤波器,以便将每个布拉格共振的波长移动转换为光功率变化。本文还研究了光学滤波器的设计。首先,使用递归方法并定义边界条件来计算理想滤波器。该理想滤波器使询问设置的输出线性化,但受到 RFBG 随温度的大波长移动和最大衰减的限制。还分析了作为光学滤波器的模态干涉仪的响应。通过移动光学光谱可以轻松地对它们进行调谐。在这些条件下模拟了所提出的询问方案的输出,提高了灵敏度。