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Quantitative measurement of dynamic nanostrain based on a phase-sensitive optical time domain reflectometer

机译:基于相敏光时域反射仪的动态纳米应变定量测量

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摘要

A sensing system is proposed for quantitative measurement of large-range dynamic nanostrain based on a phase-sensitive optical time domain reflectometer, where the coherent detection and I/Q demodulation methods are employed to demodulate both the phase and the amplitude of the Rayleigh scattering light in real time. A nanopositioning translation stage is utilized to apply precise nanostrain to fiber. By measuring phase differences between two adjacent sections, the quantitative nanostrain with a large measurement range is demonstrated; this is also a method to measure the strain parameter of refractive index. For the Panda polarization-maintaining fiber under test in the experiment, the strain parameter of phase difference is measured to be 8.714 mrad/(n epsilon.m), while the strain parameter of refractive index is measured to be -0.3751 epsilon(-1). As a proof of the concept, the dynamic strain sensing with a range of 10-1000 n epsilon is experimentally demonstrated, and the strain resolution is 1 or 2 n epsilon, corresponding to 5 or 2.5 m spatial resolution, respectively. The experimental measurement also shows a triangular wave with a 12-Hz vibrating frequency and a 100-n. strain amplitude as well as a 188-Hz resonant signal of the tensile section. (C) 2016 Optical Society of America
机译:提出了一种基于相敏光时域反射计的大范围动态纳米应变定量测量的传感系统,该系统采用相干检测和I / Q解调方法对瑞利散射光的相位和幅度进行解调。实时。利用纳米定位平移台将精确的纳米应变施加到纤维上。通过测量两个相邻截面之间的相差,可以证明具有较大测量范围的定量纳米应变。这也是一种测量折射率应变参数的方法。对于在实验中测试的熊猫保偏光纤,相差的应变参数测得为8.714 mrad /(n epsilon.m),而折射率的应变参数测得为-0.3751 epsilon(-1) )。作为该概念的证明,实验证明了动态应变感应范围为10-1000 nε,应变分辨率为1或2 nε,分别对应于5或2.5 m空间分辨率。实验测量还显示了一个具有12 Hz振动频率和100 n的三角波。应变幅度以及拉伸部分的188 Hz共振信号。 (C)2016美国眼镜学会

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