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拉曼分布式光纤传感的物理原理及其应用

Physics and applications of Raman distributed optical fiber sensing.

作者信息

Li Jian, Zhang Mingjiang

机构信息

College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan, Shanxi, 030024, China.

Key Laboratory of Advanced Transducers and Intelligent Control Systems (Ministry of Education and Shanxi Province), Taiyuan University of Technology, Taiyuan, 030024, China.

出版信息

Light Sci Appl. 2022 May 7;11(1):128. doi: 10.1038/s41377-022-00811-x.

Abstract

Raman distributed optical fiber sensing has been demonstrated to be a mature and versatile scheme that presents great flexibility and effectivity for the distributed temperature measurement of a wide range of engineering applications over other established techniques. The past decades have witnessed its rapid development and extensive applicability ranging from scientific researches to industrial manufacturing. However, there are four theoretical or technical bottlenecks in traditional Raman distributed optical fiber sensing: (i) The difference in the Raman optical attenuation, a low signal-to-noise ratio (SNR) of the system and the fixed error of the Raman demodulation equation restrict the temperature measurement accuracy of the system. {ii) The sensing distance and spatial resolution cannot be reconciled. (iii) There is a contradiction between the SNR and measurement time of the system. (iv) Raman distributed optical fiber sensing cannot perform dual-parameter detection. Based on the above theoretical and technical bottlenecks, advances in performance enhancements and typical applications of Raman distributed optical fiber sensing are reviewed in this paper. Integration of this optical system technology with knowledge based, that is, demodulation technology etc. can further the performance and accuracy of these systems.

摘要

拉曼分布式光纤传感已被证明是一种成熟且通用的方案,与其他现有技术相比,它在广泛的工程应用分布式温度测量中具有极大的灵活性和有效性。在过去几十年中,它经历了快速发展,其应用范围从科学研究到工业制造都十分广泛。然而,传统拉曼分布式光纤传感存在四个理论或技术瓶颈:(i)拉曼光衰减的差异、系统的低信噪比(SNR)以及拉曼解调方程的固定误差限制了系统的温度测量精度。(ii)传感距离和空间分辨率无法兼顾。(iii)系统的信噪比和测量时间之间存在矛盾。(iv)拉曼分布式光纤传感无法进行双参数检测。基于上述理论和技术瓶颈,本文综述了拉曼分布式光纤传感在性能提升和典型应用方面的进展。将这种光学系统技术与基于知识的技术(即解调技术等)相结合,可以进一步提升这些系统的性能和精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6953/9079107/bd82351f5980/41377_2022_811_Fig1_HTML.jpg

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