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A High Spatial Resolution Distributed Optical Fiber Grating Sensing System Based on OFDR

机译:基于OFDR的高分辨率分布式光纤光栅传感系统。

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A distributed optical fiber grating sensing system with large capacity and high spatial resolution is presented. Since high-density identical weak grating array was utilized as sensing fiber, the multiplexing number was greatly increased, meanwhile, optical frequency domain reflectometry (OFDR) technology was used to implement high resolution distributed sensing system. In order to eliminate the nonlinear effect of tunable light source, a windowed FFT algorithm based on cubic spline interpolation was applied. The feasibility of the algorithm was experimentally testified, ultimately, the spatial resolution of system can reach mm-level. The influence of the crosstalk signal in the grating array on the OFDR system was analyzed. A method that a long enough delay fiber was added before the first FBG to remove crosstalk signal was proposed. The experiment was verified using an optical fiber with 113 uniform Bragg gratings at an interval of 10cm whose reflectivity are less than 1%. It demonstrates that crosstalk signal and measurement signal can be completely separated in the distance domain after adding a long enough delay fiber. Finally, the temperature experiment of distributed grating sensing system was carried out. The results display that each raster's center wavelength in the fiber link is independent of each other and the center wavelength drift has a good linear relationship with the temperature. The sensitivity of linear fitting is equal to 11.1pm/°C.
机译:提出了一种具有大容量和高空间分辨率的分布式光纤光栅传感系统。由于利用高密度相同的弱光栅阵列作为传感光纤,大大提高了复用数量,同时,采用光频域反射法(OFDR)技术实现了高分辨率分布式传感系统。为了消除可调光源的非线性影响,应用了基于三次样条插值的加窗FFT算法。实验证明了该算法的可行性,最终使系统的空间分辨率达到毫米级。分析了光栅阵列中串扰信号对OFDR系统的影响。提出了在第一个FBG之前添加足够长的延迟光纤以去除串扰信号的方法。使用具有113个均匀Bragg光栅,间隔为10cm且反射率小于1%的光纤来验证该实验。它表明,在添加足够长的延迟光纤之后,串扰信号和测量信号可以在距离域中完全分离。最后,进行了分布式光栅传感系统的温度实验。结果表明,光纤链路中每个光栅的中心波长彼此独立,并且中心波长漂移与温度具有良好的线性关系。线性拟合的灵敏度等于11.1pm /°C。

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