Lee Ju Han, Chang You, Han Young-Geun, Chung Haeyang, Kim Sang, Lee Sang
Opt Express. 2004 Jul 26;12(15):3515-20. doi: 10.1364/opex.12.003515.
We demonstrate a novel, Raman amplifier-based long-distance sensing system for simultaneous measurement of temperature and strain using a combined sensing probe of an erbium-doped fiber (EDF) and a fiber Bragg grating. By recycling residual Raman pump power for generation of amplified spontaneous emission in the EDF after distributed Raman amplification in the transmission fiber, the overall system configuration was significantly simplified without requiring any additional broadband light source. We obtain a remote sensing operation of simultaneous temperature and strain measurement at a location of 50 km. High quality of sensing signals with a ~ 11 dB signal-to-noise ratio (SNR) is readily achieved even after the 50 km transmission with distributed Raman amplification.
我们展示了一种基于拉曼放大器的新型长距离传感系统,该系统使用掺铒光纤(EDF)和光纤布拉格光栅的组合传感探头同时测量温度和应变。通过在传输光纤中进行分布式拉曼放大后,回收残余拉曼泵浦功率以在EDF中产生放大自发辐射,整体系统配置得到了显著简化,无需任何额外的宽带光源。我们在50 km处实现了同时进行温度和应变测量的遥感操作。即使经过50 km的分布式拉曼放大传输后,仍能轻松获得信噪比约为11 dB的高质量传感信号。