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Transverse strain sensing based on optical fibre Solc filter

机译:基于光纤Solc滤波器的横向应变传感

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We present an optical sensor based on Solc filter to measure the transverse strain. The Solc filter is made of highly birefringent fibre by twisting its optical axes back and forth in equal sections. When a polarised light goes through the sensor, a periodic transmission response is obtained with a certain free spectra range (FSR) determined by the modal birefringence and the section length. The transverse strain can be measured by the shift of FSR from the transmitted response as the transverse stress changes the birefringence. More importantly we find that the measurement of transverse strain is free from the influence of temperature. We theoretically analyse the sensor model and simulate it by Jones Formalism. It is found that the sensitivity can achieve 7.14 pm/με. The influence of section length, wavelength of light source, modal birefringence and number of sections on the sensitivity is also investigated.
机译:我们提出了一种基于Solc滤波器的光学传感器来测量横向应变。 Solc滤光片是由高度双折射的光纤制成的,方法是将其光轴以相等的部分来回扭曲。当偏振光通过传感器时,获得的周期性透射响应具有由模态双折射和截面长度确定的一定的自由光谱范围(FSR)。当横向应力改变双折射时,可以通过从传输响应中移出FSR来测量横向应变。更重要的是,我们发现横向应变的测量不受温度的影响。我们从理论上分析传感器模型并通过Jones Formalism对其进行仿真。发现灵敏度可以达到7.14pm /με。还研究了截面长度,光源波长,模态双折射和截面数对灵敏度的影响。

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