Curvature Determination Method for Diverging Acoustic Lens of Underwater Acoustic Transducer.

IF 3.5 3区 综合性期刊 Q2 CHEMISTRY, ANALYTICAL Sensors Pub Date : 2025-01-19 DOI:10.3390/s25020568
Minze Li, Mingzhen Xin, Fanlin Yang, Yu Luo, Jinpeng Liu, Niuniu Wu
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Abstract

Underwater acoustic transducers need to expand the coverage of acoustic signals as much as possible in most ocean explorations, and the directivity indicators of transducers are difficult to change after the device is packaged, which makes the emergence angle of the underwater acoustic transducer limited in special operating environments, such as polar regions, submarine volcanoes, and cold springs. Taking advantage of the refractive characteristics of sound waves propagating in different media, the directivity indicators can be controlled by installing an acoustic lens outside the underwater acoustic transducer. To increase the detection range of an underwater acoustic transducer in a specific marine environment, a curvature-determining method for the diverging acoustic lens of an underwater acoustic transducer is proposed based on the acoustic ray tracing theory. The relationship equation between the original directivity indicators of the underwater acoustic transducer and the emergence angle in the specific environment is constructed, and the slope of the acoustic lens at different positions of the underwater acoustic transducer is obtained by a progressive solution. Then, the least squares polynomial fitting of the acoustic lens slope at all the refractive positions is carried out to obtain the optimal curvature of the acoustic lens. Experiments are designed to verify the effectiveness of the curvature determination method for the diverging acoustic lens of an underwater acoustic transducer, and the directivity indicators of acoustic lenses under different materials and different marine environments are analyzed. The experimental results show that the acoustic lens can change the directivity of the underwater acoustic transducer without changing the acoustic unit array, and the curvature of the acoustic lens directly affects the directivity indicators after refraction, so the method proposed in this paper has important reference value for determining the optimal shape of the diverging acoustic lens.

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水声换能器发散声透镜曲率的确定方法。
在大多数海洋探测中,水声换能器需要尽可能扩大声信号的覆盖范围,并且换能器的指向性指标在设备封装后难以改变,这使得水声换能器在极地、海底火山、冷泉等特殊操作环境下的出射角度受到限制。利用声波在不同介质中传播的折射特性,通过在水声换能器外安装声透镜来控制指向性指标。为了提高水声换能器在特定海洋环境下的探测距离,提出了一种基于声射线追踪理论的水声换能器发散声透镜曲率确定方法。构建了水声换能器原始指向性指标与特定环境下出射角的关系方程,通过逐级求解得到水声换能器不同位置声透镜的斜率。然后,对声透镜在各折射位置的斜率进行最小二乘多项式拟合,得到声透镜的最优曲率;通过实验验证了水声换能器发散声透镜曲率确定方法的有效性,分析了不同材料和不同海洋环境下声透镜的指向性指标。实验结果表明,声透镜可以在不改变声单元阵列的情况下改变水声换能器的指向性,并且声透镜的曲率直接影响折射后的指向性指标,因此本文提出的方法对确定发散声透镜的最佳形状具有重要的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Sensors
Sensors 工程技术-电化学
CiteScore
7.30
自引率
12.80%
发文量
8430
审稿时长
1.7 months
期刊介绍: Sensors (ISSN 1424-8220) provides an advanced forum for the science and technology of sensors and biosensors. It publishes reviews (including comprehensive reviews on the complete sensors products), regular research papers and short notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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