光学
解调
反射计
灵敏度(控制系统)
航程(航空)
职位(财务)
斑点图案
图像分辨率
遥感
噪音(视频)
观测误差
准确度和精密度
计算机科学
物理
材料科学
时域
人工智能
电信
计算机视觉
数学
电子工程
地质学
工程类
复合材料
经济
频道(广播)
图像(数学)
统计
量子力学
财务
作者
Tingyi Zhu,Cuofu Lin,Jun Yang,Zhangjun Yu,Pengbai Xu,Kunhua Wen,Yuncai Wang,Yuwen Qin
出处
期刊:Optics Express
[The Optical Society]
日期:2023-06-07
卷期号:31 (13): 20980-20980
摘要
In this paper, we propose and demonstrate a spectral splicing method (SSM) for distributed strain sensing based on optical frequency domain reflectometry (OFDR), which can achieve km level measurement length, µɛ level measurement sensitivity and 104 µɛ level measurement range. Based on the traditional method of cross-correlation demodulation, the SSM replaces the original centralized data processing method with a segmented processing method and achieves precise splicing of the spectrum corresponding to each signal segment by spatial position correction, thus realizing strain demodulation. Segmentation effectively suppresses the phase noise accumulated in the large sweep range over long distances, expands the sweep range that can be processed from the nm level to the 10 nm level, and improves strain sensitivity. Meanwhile, the spatial position correction rectifys the position error in the spatial domain caused by segmentation, which reduces the error from the 10 m level to the mm level, enabling precise splicing of spectra and expanding the spectral range, thus extending the strain range. In our experiments, we achieved a strain sensitivity of ±3.2 µɛ (3σ) over a length of 1 km with a spatial resolution of 1 cm and extended the strain measurement range to 10,000 µɛ. This method provides, what we believe to be, a new solution for achieving high accuracy and wide range OFDR sensing at the km level.
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