Ohno Shingo, Iida Daisuke, Toge Kunihiro, Manabe Tetsuya
Opt Express. 2016 Aug 22;24(17):19651-60. doi: 10.1364/OE.24.019651.
Long-range C-OFDR measurement of fiber Rayleigh scatter signature is described. The Rayleigh scatter signature, which is an interference pattern of backscatters from the random refractive indices in fibers, is known to be applicable to fiber identification and temperature or strain sensing by measuring its repeatability and its spectral shift. However, these applications have not been realized at ranges beyond the laser coherence length since laser phase noise degrades its repeatability. This paper proposes and demonstrates a method for analyzing the optical power spectrum of local Rayleigh backscatter to overcome the limitation imposed by laser phase noise. The measurable range and spatial performance are also investigated experimentally with respect to the remaining phase noise and noise reduction by signal averaging with the proposed method. The feasibility of Rayleigh scatter signature measurement for long-range applications is confirmed.
描述了对光纤瑞利散射特征进行远程相干光频域反射(C-OFDR)测量。瑞利散射特征是光纤中随机折射率产生的后向散射干涉图案,通过测量其重复性和光谱偏移,已知其可用于光纤识别以及温度或应变传感。然而,由于激光相位噪声会降低其重复性,这些应用在超出激光相干长度的范围尚未实现。本文提出并演示了一种分析局部瑞利后向散射光功率谱的方法,以克服激光相位噪声带来的限制。还针对剩余相位噪声以及通过所提方法进行信号平均降噪,对可测量范围和空间性能进行了实验研究。证实了瑞利散射特征测量用于远程应用的可行性。