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基于伪随机二进制序列调制的干涉型光纤水听器最佳相干长度控制:理论与实验

Optimal Coherence Length Control in Interferometric Fiber Optic Hydrophones via PRBS Modulation: Theory and Experiment.

作者信息

Wang Wujie, Hu Qihao, Ma Lina, Shang Fan, Leng Hongze, Song Junqiang

机构信息

College of Meteorology and Oceanology, National University of Defense Technology, Changsha 410073, China.

出版信息

Sensors (Basel). 2025 Jul 30;25(15):4711. doi: 10.3390/s25154711.

Abstract

Interferometric fiber optic hydrophones (IFOHs) are highly sensitive for underwater acoustic detection but face challenges owing to the trade-off between laser monochromaticity and coherence length. In this study, we propose a pseudo-random binary sequence (PRBS) phase modulation method for laser coherence length control, establishing the first theoretical model that quantitatively links PRBS parameter to coherence length, elucidating the mechanism underlying its suppression of parasitic interference noise. Furthermore, our research findings demonstrate that while reducing the laser coherence length effectively mitigates parasitic interference noise in IFOHs, this reduction also leads to elevated background noise caused by diminished interference visibility. Consequently, the modulation of coherence length requires a balanced optimization approach that not only suppresses parasitic noise but also minimizes visibility-introduced background noise, thereby determining the system-specific optimal coherence length. Through theoretical modeling and experimental validation, we determined that for IFOH systems with a 500 ns delay, the optimal coherence lengths for link fibers of 3.3 km and 10 km are 0.93 m and 0.78 m, respectively. At the optimal coherence length, the background noise level in the 3.3 km system reaches -84.5 dB (re: rad/√Hz @1 kHz), representing an additional noise suppression of 4.5 dB beyond the original suppression. This study provides a comprehensive theoretical and experimental solution to the long-standing contradiction between high laser monochromaticity, stability and appropriate coherence length, establishing a coherence modulation noise suppression framework for hydrophones, gyroscopes, distributed acoustic sensing (DAS), and other fields.

摘要

干涉型光纤水听器(IFOHs)对水下声学检测具有高度敏感性,但由于激光单色性和相干长度之间的权衡而面临挑战。在本研究中,我们提出了一种用于激光相干长度控制的伪随机二进制序列(PRBS)相位调制方法,建立了第一个将PRBS参数与相干长度定量联系起来的理论模型,阐明了其抑制寄生干扰噪声的机制。此外,我们的研究结果表明,虽然降低激光相干长度有效地减轻了IFOHs中的寄生干扰噪声,但这种降低也会导致由于干涉可见度降低而引起的背景噪声升高。因此,相干长度的调制需要一种平衡的优化方法,不仅要抑制寄生噪声,还要将可见度引入的背景噪声降至最低,从而确定系统特定的最佳相干长度。通过理论建模和实验验证,我们确定对于具有500 ns延迟的IFOH系统,3.3 km和10 km链路光纤的最佳相干长度分别为0.93 m和0.78 m。在最佳相干长度下,3.3 km系统中的背景噪声水平达到-84.5 dB(相对于1 kHz时的rad/√Hz),比原来的抑制效果额外增加了4.5 dB的噪声抑制。本研究为高激光单色性、稳定性与适当相干长度之间长期存在的矛盾提供了全面的理论和实验解决方案,为水听器、陀螺仪、分布式声学传感(DAS)等领域建立了相干调制噪声抑制框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c46c/12349664/e3fe37a05b69/sensors-25-04711-g001.jpg

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