面向井下环境参量的光纤传感物联网系统
Optical fiber sensing internet of things system for underground environmental parameters
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摘要: 为了能够大范围准确获取井下环境参量并有效抑制噪声, 研究了基于新型光纤光栅(FBG)封装的光纤传感物联网系统。设计了一种可同时测试应变与温度的传感模块, 试制了新型FBG封装结构, 搭建了符合巷道结构的光纤应力监测分布网络。采用基于互相关差分计算的方法实现了对振动噪声的消除, 并对井下巷道的应力和温度进行了连续监测。结果表明, 拱段45°与60°的FBG可以准确记录应力、温度变化数据。该系统在大范围井下环境参量监测中具有更高的稳定性、更好的适应性。Abstract: In order to obtain accurate parameters of the downhole environment in a large range and effectively suppress the noise, an optical fiber sensing internet of things system based on a new fiber Bragg grating(FBG) package was studied. A sensor module that can test strain and temperature simultaneously was designed. The new FBG package structure was trial-produced. An optical fiber stress monitoring distribution network conforming to the tunnel structure was built. A method based on cross-correlation difference calculation was used to eliminate vibration noise. The experiment continuously monitored the stress and temperature of the underground tunnel. The results show that the FBG at 45° and 60° in the arch can accurately record the stress and temperature change data. It can be seen that the system has higher stability and better adaptability in large-scale downhole environmental parameter monitoring.
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