Wang Z N, Zeng J J, Li J, Fan M Q, Wu H, Peng F, Zhang L, Zhou Y, Rao Y J
Opt Lett. 2014 Oct 15;39(20):5866-9. doi: 10.1364/OL.39.005866.
A phase-sensitive optical time-domain reflectometry (Φ-OTDR) with 175 km sensing range and 25 m spatial resolution is demonstrated, using the combination of co-pumping second-order Raman amplification based on random fiber lasing, counter-pumping first-order Raman amplification, and counter-pumping Brillouin amplification. With elaborate arrangements, each pumping scheme is responsible for the signal amplification in one particular segment of all three. To the best of our knowledge, this is the first time that distributed vibration sensing is realized over such a long distance without inserting repeaters. The novel hybrid amplification scheme in this work can also be incorporated in other fiber-optic sensing systems for extension of sensing distance.
利用基于随机光纤激光的共泵浦二阶拉曼放大、反泵浦一阶拉曼放大和反泵浦布里渊放大的组合,展示了一种具有175公里传感范围和25米空间分辨率的相敏光时域反射仪(Φ-OTDR)。通过精心安排,每种泵浦方案负责这三种放大方式中一个特定段的信号放大。据我们所知,这是首次在不插入中继器的情况下实现如此长距离的分布式振动传感。这项工作中的新型混合放大方案也可应用于其他光纤传感系统,以扩展传感距离。