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Improvement of a polarisation optical fibre sensor for the detection of seismic vibration

机译:用于检测地震振动的偏振光纤传感器的改进

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Near acoustic frequencies from seismic activities can be observed by sensors with band pass higher than the 5-second period peak noise. By using a single mode fibre optic specially adjusted, a planar vibration travelling on surface can modify the optogeometrical properties of its material and enhanced a birefringence effect. This type of sensor already effective in acoustic frequencies is now adapted to seismic vibration. The high noise background at these frequencies disturbs greatly the measure and isolation by adjustment of spring and plates dimensions leads to interesting questions in regard of dynamic behaviour in this window. Currently, the sensor can detect small and local vibrations but cannot measure with good precision its velocity and acceleration value. In the first part of this paper, the basics of seismic vibration will be briefly exposes in coordination with the way the sensor works; a brief walk through of the fibre optic sensing behaviour will be exposed. The next part will display the different elements of the sensor and the choices that were made at this stage. Eventually, the behaviour of the sensor will be displayed along with the calibration method and the different errors that need to be corrected.
机译:可以通过带通高于5秒周期峰值噪声的传感器观察到地震活动产生的近声频率。通过使用经过特殊调节的单模光纤,在表面传播的平面振动可以改变其材料的光学几何特性,并增强双折射效果。这种已经在声频中有效的传感器现在适用于地震振动。在这些频率下的高噪声背景会通过调节弹簧和板的尺寸极大地干扰测量和隔离,从而导致有关此窗口中动态行为的有趣问题。当前,该传感器可以检测到较小的局部振动,但无法高精度地测量其速度和加速度值。在本文的第一部分中,将与传感器的工作方式协调地简要介绍地震振动的基本原理。简要介绍了光纤传感行为。下一部分将显示传感器的不同元素以及在此阶段所做的选择。最终,将显示传感器的行为以及校准方法和需要纠正的不同错误。

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