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使用分布布拉格反射(DBR)激光器的光学频域反射(OFDR)传感系统的光谱拼接

Spectral splicing for an OFDR sensing system using a DBR laser.

作者信息

Xue Yuanze, Wang Xuefeng, Tang Caijie, Gao Hongchun, Zhao Chen

出版信息

Appl Opt. 2022 Jun 20;61(18):5435-5441. doi: 10.1364/AO.462297.

Abstract

A spectral splicing method is proposed for an optical frequency domain reflectometry (OFDR) sensing system using a distributed Bragg reflector (DBR) laser. An external cavity tunable laser (ECTL) is used in a conventional OFDR sensing system. There are no reports to our knowledge about using a DBR laser as the light source for an OFDR sensing system. A DBR laser has the advantages of small size, no mechanical scanning, easy integration, and low cost. However, due to the mode hopping, the wavelength can only be continuously tuned in the range of about 1 nm. The spectral splicing method was used to splice 39 partially overlapping Rayleigh scattering signals into a continuous signal with wavelength of 35.174 nm. Distributed optical fiber strain sensing with 5 mm spatial resolution is realized. The strain range is ±2500µε, and the maximum error of the measured strain is 9.91 µε.

摘要

提出了一种用于使用分布式布拉格反射器(DBR)激光器的光频域反射仪(OFDR)传感系统的光谱拼接方法。传统的OFDR传感系统中使用的是外腔可调谐激光器(ECTL)。据我们所知,尚无关于将DBR激光器用作OFDR传感系统光源的报道。DBR激光器具有体积小、无需机械扫描、易于集成和成本低等优点。然而,由于模式跳变,波长只能在约1nm的范围内连续调谐。采用光谱拼接方法将39个部分重叠的瑞利散射信号拼接成一个波长为35.174nm的连续信号。实现了空间分辨率为5mm的分布式光纤应变传感。应变范围为±2500µε,测量应变的最大误差为9.91µε。

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