Lu Bin, Wu Bingyan, Gu Jinfeng, Yang Junqi, Gao Kan, Wang Zhaoyong, Ye Lei, Ye Qing, Qu Ronghui, Chen Xiaobao, Cai Haiwen
Opt Express. 2021 Feb 1;29(3):3147-3162. doi: 10.1364/OE.414598.
In this letter, a distributed optical fiber hydrophone (DOFH) based on Φ-OTDR is demonstrated and tested in the field. The specially designed sensitized optical cable with sensitivity up to -146 dB rad/µPa/m is introduced, and an array signal processing model for DOFH is constructed to analyze the equivalence and specificity of the distributed array of acoustic sensors. In the field test, a 104-meter-long optical cable and a Φ-OTDR system based on heterodyne coherent detection (Het Φ-OTDR) is utilized, and underwater acoustic signal spatial spectrum estimation, beamforming and motion trajectory tracking with high accuracy can be realized. As far as we know, this is the first report on the field trial of DOFH based on Φ-OTDR. The DOFH has the potential to achieve an array range of tens of kilometers, with elements spaced up to the meter level and flexible configuration, which has a broad application prospect for marine acoustic detection.
在这封信中,展示了一种基于Φ-OTDR的分布式光纤水听器(DOFH)并在现场进行了测试。介绍了专门设计的灵敏度高达-146 dB rad/µPa/m的传感光缆,并构建了DOFH的阵列信号处理模型,以分析声学传感器分布式阵列的等效性和特异性。在现场测试中,使用了一条104米长的光缆和一个基于外差相干检测的Φ-OTDR系统(Het Φ-OTDR),可以实现水下声信号的高精度空间谱估计、波束形成和运动轨迹跟踪。据我们所知,这是关于基于Φ-OTDR的DOFH现场试验的首次报道。DOFH有潜力实现数十公里的阵列范围,元件间距可达米级且配置灵活,在海洋声学探测方面具有广阔的应用前景。