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Fiber-optic polarimetric strain sensor with three-wavelength digital phase demodulation

机译:具有三波长数字相位解调的光纤偏振应变传感器

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摘要

A fiber-optic polarimetric strain sensor of l_(s)=10-cm sensing length with three-wavelength passive quadrature digital phase demodulation is investigated. The demodulation unit uses a superluminescent diode light source with narrow-band interference filters in front of the photodiodes and real-time processing of the interference intensities by an arctan-phase-stepping algorithm. Quasi-static strain sensing is performed during slow periodic compression of a composite reinforced plastic rod with a sensor glued to its surface. The measured displacement sensitivity of δΦ/δl=125 mrad/μm, with a resistive strain gauge as a reference, agrees well with the value of 119 mrad/μm previously determined by fringe-distance measurement [Bock et al., Pure Appl. Opt. 5, 125 (1996)]. Despite a coherence-limited fringe contrast of only a few percent, a linearity of the phase-strain characteristic of the order of 1% and a strain resolution of 2.5 μ∈ are demonstrated.
机译:研究了具有三波长无源正交数字相位解调的检测长度为l_(s)= 10-cm的光纤偏振应变传感器。解调单元使用一个超发光二极管光源,该光源在光电二极管前具有窄带干涉滤光片,并通过反正切相位步进算法实时处理干涉强度。准静态应变感测是在复合材料增强塑料棒的缓慢周期性压缩过程中执行的,传感器上粘贴了传感器。以电阻应变仪作为参考,测得的δΦ/δl= 125 mrad /μm位移敏感度与先前通过边缘距离测量确定的119 mrad /μm值非常吻合[Bock等,Pure Appl。选择。 5,125(1996)]。尽管相干限制的条纹对比度仅为百分之几,但仍证明了相变特性的线性约为1%,应变分辨率为2.5με。

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