首页> 外文会议>Society of Photo-optical Instrumentation Engineers Europe Conference on Sensory Phenomena and Measurement Instrumentation for Smart Structures and Materials >Static strain measurement with sub-micro strain resolution and large dynamic range using twin grating Fabry-Perot sensor
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Static strain measurement with sub-micro strain resolution and large dynamic range using twin grating Fabry-Perot sensor

机译:静态应变测量与亚微量应变分辨率和使用双光栅法法 - 珀罗传感器的大动态范围测量

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We present experimental results on testing a twin grating fiber optic sensor for measurement of static strain. The sensor is built with two identical Bragg gratings closely spaced in a single mode fiber. It produces a reflection spectrum modulated due to interference. Similar to traditional FBG sensors, strain of the fiber leads to the wavelength shift of the reflection spectrum. This shift can be determined precisely measuring phase changes for corresponding components of Fourier transform of the reflection spectrum. Such and approach allows an absolute strain measurement with an interferometric sensitivity. Resolution of 0.02 °C and 0.2με was demonstrated experimentally for temperature and static strain measurements using a pair of 0.7mm long Bragg gratings with reflectivity of 1% each.
机译:我们在测试双光栅光纤传感器以进行静态应变的测量试验结果。该传感器采用两个相同的布拉格光栅,在单模光纤中紧密间隔。它产生由于干扰而调制的反射谱。类似于传统的FBG传感器,光纤的应变导致反射光谱的波长偏移。可以确定地测量反射频谱的傅立叶变换的相应组件的相位变化精确测量相位变化。这种和方法允许具有干涉灵敏度的绝对应变测量。通过通过一对0.7mm长的布拉格光栅实验进行0.02°C和0.2με的分辨率,用于实验温度和静态应变测量,每次有0.7mm长的布拉格光栅,每次具有1%的反射率。

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