Soto Marcelo A, Taki Mohammad, Bolognini Gabriele, Di Pasquale Fabrizio
Scuola Superiore Sant’Anna, TeCIP Institute, via G. Moruzzi 1, 56124 Pisa, Italy.
Opt Express. 2012 Mar 26;20(7):6860-9. doi: 10.1364/OE.20.006860.
Sub-meter distributed optical fiber sensing based on Brillouin optical time-domain analysis with differential pulse-width pairs (DPP-BOTDA) is combined with the use of optical pre-amplification and pulse coding. In order to provide significant measurement SNR enhancement and to avoid distortions in the Brillouin gain spectrum due to acoustic-wave pre-excitation, the pulse width and duty cycle of Simplex coding based on return-to-zero pulses are optimized through simulations. In addition, the use of linear optical pre-amplification increases the receiver sensitivity and the overall dynamic range of DPP-BOTDA measurements. Experimental results demonstrate for first time a spatial resolution of ~25 cm over a 60 km standard single-mode fiber (equivalent to ~240 k discrete sensing points) with temperature resolution of 1.2°C and strain resolution of 24 με.
基于具有差分脉冲宽度对的布里渊光时域分析(DPP-BOTDA)的亚米级分布式光纤传感与光预放大和脉冲编码的使用相结合。为了显著提高测量信噪比并避免由于声波预激发导致的布里渊增益谱失真,通过仿真优化了基于归零脉冲的单工编码的脉冲宽度和占空比。此外,线性光预放大的使用提高了接收器灵敏度和DPP-BOTDA测量的整体动态范围。实验结果首次证明,在60公里标准单模光纤上(相当于约24万个离散传感点),空间分辨率约为25厘米,温度分辨率为1.2°C,应变分辨率为24 με。