Xu Pengbai, Dong Yongkang, Zhang Juwang, Zhou Dengwang, Jiang Taofei, Xu Jinlong, Zhang Hongying, Zhu Tao, Lu Zhiwei, Chen Liang, Bao Xiaoyi
Opt Express. 2015 Aug 24;23(17):22714-22. doi: 10.1364/OE.23.022714.
We propose a bend-insensitive distributed Brillouin optical fiber sensing by using a singlemode-multimode-singlemode optical fiber structure for the first time to the best of our knowledge. The sensing fiber is a graded-index multimode fiber (GI-MMF) sandwiched by two standard single-mode fibers (SMFs) with central-alignment splicing at the interface between GI-MMF and SMF to excite the fundamental mode in GI-MMF. The sensing system can resist a minimal bend radius of 1.25mm while maintain the measurement performance, with which the measured coefficients of strain and temperature are 421.6MHz/% and 0.826MHz/°C, respectively. We also demonstrate that the higher-order modes excited in GI-MMF can be easily influenced by bending, so that exciting the fundamental mode is essential for bend-insensitive distributed sensing.
据我们所知,我们首次提出了一种采用单模-多模-单模光纤结构的对弯曲不敏感的分布式布里渊光纤传感技术。传感光纤是一根渐变折射率多模光纤(GI-MMF),夹在两根标准单模光纤(SMF)之间,在GI-MMF与SMF的界面处采用中心对准熔接,以激发GI-MMF中的基模。该传感系统在保持测量性能的同时,能够承受最小1.25mm的弯曲半径,其测量的应变系数和温度系数分别为421.6MHz/%和0.826MHz/°C。我们还证明了在GI-MMF中激发的高阶模很容易受到弯曲的影响,因此激发基模对于对弯曲不敏感的分布式传感至关重要。