Qin Jie, Zhang Ling, Xie Weilin, Cheng Ran, Liu Zhangweiyi, Wei Wei, Dong Yi
Opt Express. 2019 Jul 8;27(14):19359-19368. doi: 10.1364/OE.27.019359.
We report on an ultra-long range optical frequency domain reflectometry (OFDR) using a coherence-enhanced highly linear frequency-swept fiber laser source based on an optoelectronic phase-locked loop (OPLL). The frequency-swept fiber laser is locked to an all-fiber-based Mach-Zehnder interferometer (MZI) to suppress sweep nonlinearity and enhance the laser coherence, leading to a high coherence linear frequency sweep of 1 GHz in the duration time of 25 ms. This enables the OFDR to realize an ultra-long range measurement with a high spatial resolution. As a result, we obtain a 10 cm transform-limited spatial resolution at a 20 km fiber within 25 ms measurement time, and a 72 cm spatial resolution over an entire 200 km fiber link within 5 ms measurement time. The proposed reflectometry provides a high-performance solution with both high spatial resolution and ultra-long measurement range for field real-time fiber network monitoring and sensing applications.
我们报道了一种基于光电锁相环(OPLL)的相干增强型高线性扫频光纤激光源的超长距离光学频域反射仪(OFDR)。扫频光纤激光器被锁定到一个全光纤马赫曾德尔干涉仪(MZI)上,以抑制扫频非线性并增强激光相干性,从而在25毫秒的持续时间内实现1 GHz的高相干线性扫频。这使得OFDR能够以高空间分辨率实现超长距离测量。结果,我们在25毫秒的测量时间内,在20千米的光纤上获得了10厘米的变换极限空间分辨率,在5毫秒的测量时间内,在整个200千米的光纤链路上获得了72厘米的空间分辨率。所提出的反射仪为现场实时光纤网络监测和传感应用提供了一种兼具高空间分辨率和超长测量范围的高性能解决方案。