Distributed Strain Sensing Based on Sensing Range Enhanced Optical Frequency Domain Reflectometry by Modified Longest Common Substring Algorithm

IF 4.8 1区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Lightwave Technology Pub Date : 2025-01-08 DOI:10.1109/JLT.2025.3526937
Xiang Zheng;Weilin Xie;Qiang Yang;Jiang Yang;Congfan Wang;Xin Li;Kaiyue Tan;Wei Wei;Yi Dong
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Abstract

Conventional cross-correlation is commonly used in the estimation of the spectral shift for optical frequency-domain reflectometry (OFDR) based distributed sensing. However, the potential errors in cases of relatively large shifts have severely limited the sensing dynamic range. We report a modified longest common substring algorithm that exploits two-dimensional image processing for more accurate shift estimation. Theoretical study for the conventional cross-correlation is conducted, which reveals quantitatively the underlying mechanism for the emergence of the correlation errors. By adopting the relative error function as the similarity function in connection with the binarization and normalized projection, it allows for a reduction for the possibility of large estimation error in a two-dimensional image processing manner, leading to a substantial improvement in the sensing range. Experimental demonstrations have verified a remarkable enhancement of about 18.7 times in strain sensing range, which accounts for ∼56.2% of the effective sweep range. The proposed algorithm not only permits opportunities in OFDR based distributed sensing, but also promises enhanced fidelity for applications where cross-correlation is concerned.
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基于传感距离增强光频域反射的改进最长公共子串算法分布式应变传感
在基于分布式传感的光频域反射法(OFDR)中,谱移的估计通常采用传统的互相关方法。然而,在较大位移情况下的潜在误差严重限制了传感动态范围。我们报告了一种改进的最长公共子串算法,该算法利用二维图像处理来进行更准确的移位估计。对传统的互相关进行了理论研究,定量地揭示了相关误差产生的内在机制。通过采用相对误差函数作为二值化和归一化投影的相似函数,减少了二维图像处理中估计误差较大的可能性,从而大大提高了感知范围。实验证明,应变传感范围提高了约18.7倍,占有效扫描范围的约56.2%。所提出的算法不仅为基于OFDR的分布式传感提供了机会,而且还保证了在涉及互相关的应用中提高保真度。
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来源期刊
Journal of Lightwave Technology
Journal of Lightwave Technology 工程技术-工程:电子与电气
CiteScore
9.40
自引率
14.90%
发文量
936
审稿时长
3.9 months
期刊介绍: The Journal of Lightwave Technology is comprised of original contributions, both regular papers and letters, covering work in all aspects of optical guided-wave science, technology, and engineering. Manuscripts are solicited which report original theoretical and/or experimental results which advance the technological base of guided-wave technology. Tutorial and review papers are by invitation only. Topics of interest include the following: fiber and cable technologies, active and passive guided-wave componentry (light sources, detectors, repeaters, switches, fiber sensors, etc.); integrated optics and optoelectronics; and systems, subsystems, new applications and unique field trials. System oriented manuscripts should be concerned with systems which perform a function not previously available, out-perform previously established systems, or represent enhancements in the state of the art in general.
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Corrections to “Bragg-Reflection Waveguides as Practical Photon-Pair Sources for Quantum Rangefinding” Journal of Lightwave Technology Information for Authors Blank Page Blank Page Journal of Lightwave Technology Information for Authors
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