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Analysis on spatial and temporal resolution in photonic time stretch frequency domain reflectometry based fully distributed fiber Bragg grating sensors

机译:基于全分布式光纤布拉格光栅传感器的光子时间拉伸频域反射法的时空分辨率分析

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We propose and experimentally demonstrate fully distributed strain sensing along the length of a linearly chirped fibre Bragg grating with simultaneously high spatial and temporal resolution based on photonic time stretch frequency domain reflectometry (PTS-FDR). The distributed strain information is reconstructed from the instantaneous RF frequency of a temporal interference waveform via short-time Fourier transform analysis. The utility of the proposed method is characterized by analysing the spatial and temporal resolution obtained. An ultrafast strain measurement at a speed of 50 MHz with a high spatial resolution of 31.5 µm over a gauge length of 25 mm and a strain resolution of 9.1 µε have been achieved.
机译:我们提出并实验证明了线性photo光纤布拉格光栅沿长度方向的全分布应变传感,同时基于光子时间拉伸频域反射法(PTS-FDR)具有高时空分辨率。经由短时傅立叶变换分析,从时间干扰波形的瞬时RF频率重构分布的应变信息。该方法的实用性是通过分析获得的空间和时间分辨率来表征的。在25 mm的标距上以31.5 µm的高空间分辨率,在50 MHz的速度下实现了超快应变测量,应变分辨率为9.1 µε。

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