Zhong Huajian, Fu Cailing, Li Pengfei, Du Bin, Du Chao, Meng Yanjie, Yin Xiaoyu, Liao Changrui, Wang Yiping
Opt Lett. 2023 Sep 1;48(17):4540-4543. doi: 10.1364/OL.501034.
We demonstrated a long-range and centimeter-spatial-resolution optical frequency domain reflectometry (OFDR) system based on an ultra-linear broadband optical frequency sweep. The high nonlinear sweeping effect of the distributed feedback (DFB) diode laser was suppressed by a pre-distortion method, ensuring that the injection-locking process remained stable during fast tuning over a large span. An optical linear frequency sweep (LFS) with a sweep range and sweep rate of up to 60 GHz and 15 THz/s, respectively, was ultimately obtained by optimizing the injection-locking system. The high performance OFDR based on the proposed LFS achieved a sampling spatial resolution of 1.71 mm. Furthermore, distributed strain sensing was implemented with high-spatial resolutions of about 5 cm and 7 cm in the measurement range over 1 km and 2 km, respectively.
我们展示了一种基于超线性宽带光频扫描的远程且具有厘米级空间分辨率的光频域反射仪(OFDR)系统。通过预失真方法抑制了分布反馈(DFB)二极管激光器的高非线性扫描效应,确保在大跨度快速调谐期间注入锁定过程保持稳定。通过优化注入锁定系统,最终获得了扫描范围高达60 GHz且扫描速率高达15 THz/s的光学线性频率扫描(LFS)。基于所提出的LFS的高性能OFDR实现了1.71 mm的采样空间分辨率。此外,分别在超过1 km和2 km的测量范围内以约5 cm和7 cm的高空间分辨率实现了分布式应变传感。