arXiv:2512.11231eess.SPeess.AS2025-12中稿 · this research for …被引 1

用光纤传感阵列+新算法,抗非均匀噪声,精准定位水下目标

Robust Detection of Underwater Target Against Non-Uniform Noise With Optical Fiber DAS Array

  • 用螺旋敏感光纤电缆提升声信号捕获灵敏度
  • 在模拟和实验中均比传统方法更准、噪声更低
  • 适合复杂海洋环境下的水下目标探测

水下目标检测受海洋环境噪声非均匀空间特性严重影响。天然与人为声源(如航运、生物活动、地质运动)进一步加剧了水声环境的复杂性。本文提出一种新型方法,结合光学纤维分布式声学传感(DAS)系统与宽带广义稀疏协方差拟合框架,实现对水下目标方向的鲁棒感知,尤其针对非均匀噪声。所用DAS系统采用新型螺旋敏感光纤电缆,相比传统海底电缆灵敏度显著提升,实测灵敏度达-145.69 dB re: 1 rad / (uPa·m),在驻波管内验证。通过仿真评估算法在不同噪声水平和目标配置下的性能,结果表明其准确率更高且背景噪声更低,优于传统波束成形及其他稀疏技术。池中控制实验显示,该系统获取波形与标准水听器的相关系数达0.973,表明信号捕获保真度高。

原文摘要 · Abstract (English)

The detection of underwater targets is severely affected by the non-uniform spatial characteristics of marine environmental noise. Additionally, the presence of both natural and anthropogenic acoustic sources, including shipping traffic, marine life, and geological activity, further complicates the underwater acoustic landscape. Addressing these challenges requires advanced underwater sensors and robust signal processing techniques. In this paper, we present a novel approach that leverages an optical fiber distributed acoustic sensing (DAS) system combined with a broadband generalized sparse covariance-fitting framework for underwater target direction sensing, particularly focusing on robustness against non-uniform noise. The DAS system incorporates a newly developed spiral-sensitized optical cable, which significantly improves sensitivity compared to conventional submarine cables. This innovative design enables the system to capture acoustic signals with greater precision. Notably, the sensitivity of the spiral-wound sensitized cable is around -145.69 dB re: 1 rad / (uPa*m), as measured inside the standing-wave tube. Employing simulations, we assess the performance of the algorithm across diverse noise levels and target configurations, consistently revealing higher accuracy and reduced background noise compared to conventional beamforming techniques and other sparse techniques. In a controlled pool experiment, the correlation coefficient between waveforms acquired by the DAS system and a standard hydrophone reached 0.973, indicating high fidelity in signal capture.

水下探测光纤传感噪声抑制

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