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Simulations and experimental research of fiber optic contrast-based dislocation sensor

机译:基于光纤对比的位错传感器的模拟与实验研究

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The dislocation sensor based on the contrast phenomenon in an unbalanced fiber optic Michelson interferometer with a 3 x 3 coupler and a semiconductor multimode laser. Periodic contrast oscillations, which depend on a laser spectrum, occur if a measuring arm of the interferometer is elongated. A conception of the elongation sensor that based on linearization of contrast oscillations is shown. A virtual model of the sensor was built for simulations. For real parameters of 1 -m long sensor, 5-mm measuring range with 12-μm uncertainty was obtained. Next, a setup of the sensor and signal processing scheme of real sensor is presented. During measurements we obtained 5-mm measuring range with +- 28-μm uncertainty. Explanation of these differences and conclusion to further research are formulated.
机译:基于具有3×3耦合器和半导体多模激光的不平衡光纤迈克尔逊干涉仪对比现象的位错传感器。如果干涉仪的测量臂伸长,则依赖于激光谱的周期性对比度振荡。示出了基于对比度振荡的线性化的伸长传感器的概念。为模拟构建了传感器的虚拟模型。对于1-™长传感器的实际参数,获得5毫米的测量范围,具有12μm不确定性。接下来,提出了真实传感器的传感器和信号处理方案的设置。在测量期间,我们获得5毫米的测量范围,不确定度+ - 28μm。制定了对这些差异和结论进行进一步研究的解释。

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