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利用探测光束偏转技术估计水下声的到达方向。

Estimation of underwater acoustic direction-of-arrival using the probe beam deflection technique.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2023 May 1;40(5):987-995. doi: 10.1364/JOSAA.484800.

Abstract

This paper proposes a method of estimating the underwater acoustic direction-of-arrival using several laser beams impinging on a propagating underwater acoustic wave. The deflection of the laser beam caused by the spatial variation of the optical refractive index, which is further due to the modulation of the acoustic wave, reflects the information of direction-of-arrival and is sensed by the position sensitive detector (PSD). The sensing of the minute displacement on the PSD, in fact, introduces an extra dimension in the depth direction, which is a significant advantage over the conventional piezoelectric sensing regime. The employment of the extra sensing dimension can overcome several shortcomings, represented by spatial aliasing and phase ambiguity, existing in the current direction-of-arrival estimating methods. In addition, the ringing phenomenon of the piezoelectric effect is greatly reduced in the proposed laser-based sensing regime. By the flexibility of placing the laser beams, a prototype of the hydrophone is designed and manufactured, and a series of testing is performed. The results show that, benefiting from the probe beam deflection technique and combining the rough estimate and fine calculation, the resolution of the underwater acoustic direction-of-arrival can be improved to better than 0.016°, which can support and reform many underwater applications such as underwater acoustic communication, underwater detection, and ocean monitoring.

摘要

本文提出了一种利用多束激光在传播的水下声波上照射来估计水下声到达方向的方法。由于声波调制导致的光学折射率空间变化引起的激光束的偏折反映了到达方向的信息,并由位置灵敏探测器(PSD)感测。PSD 上微小位移的感测实际上在深度方向上引入了一个额外的维度,这与传统的压电传感模式相比具有显著的优势。额外的传感维度的使用可以克服当前到达方向估计方法中存在的几个缺点,例如空间混叠和相位模糊。此外,在提出的基于激光的传感模式中,压电效应的振铃现象大大减少。通过灵活放置激光束,设计并制造了一种水听器原型,并进行了一系列测试。结果表明,受益于探头光束偏转技术以及粗估计和精计算的结合,可以将水下声到达方向的分辨率提高到优于 0.016°,这可以支持和改进许多水下应用,如水下声通信、水下探测和海洋监测。

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