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水下运动目标浅海低频矢量干涉谱研究

Research on Low-Frequency Vector Interference Spectra of Underwater Moving Targets in Shallow Water

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【作者】 王博; 莫世奇; 黄兴雨; 闫学毅; 韩宝进;

【Author】 WANG Bo;MO Shiqo;HUANG Xingyu;YAN Xueyi;HAN Baojin;National Key Laboratory of Underwater Acoustic Technology,Harbin Engineering University;Key Laboratory of Marine Information Acquisition and Security(Harbin Engineering University),Ministry of Industry and Information Technology;College of Underwater Acoustic Engineering,Harbin Engineering University;School of Information and Communication,Guilin University of Electronic Technology;

【通讯作者】 莫世奇;

【机构】 哈尔滨工程大学水声技术全国重点实验室; 海洋信息获取与安全工信部重点实验室(哈尔滨工程大学),工业和信息化部; 哈尔滨工程大学水声工程学院; 桂林电子科技大学信息与通信学院;

【摘要】 水下运动目标辐射噪声分析一直是水下攻防所关注的热点,在噪声级逐渐降低的背景下,为了获得更多声场信息,学者们将目光转向低频矢量声场。对浅海矢量声场干涉结构的形成机理进行了研究,使用三参数模型方法对水下运动目标辐射噪声进行建模,推导了所产生干涉条纹的轨迹方程,并系统分析了CPA(Closest Point of Approach,CPA)点最近通过距离、接收点深度、海底参数及声速梯度等参数对矢量声场干涉条纹结构特征与强度的影响。最后利用实测水文数据对矢量声场干涉现象进行了具体分析与验证,结果表明矢量声场蕴含独特的干涉信息,为低频浅海目标探测及声场特性分析提供新的理论依据。

【Abstract】 The analysis of radiated noise from underwater moving targets has always been a hot topic in underwater attack and defense. In the context of gradually decreasing noise levels,scholars have turned their attention to low-frequency vector sound fields in order to obtain more sound field information. In this article,the formation mechanism of shallow water vector acoustic interference structures is studied. The radiated noise of underwater moving targets is modeled using a three-parameter model method,and the trajectory equation of interference fringes is derived. The effects of CPA(closest point of approach)distance,receiver depth,seabed parameters and sound velocity gradient on the structure characteristics and intensity of vector sound field interference fringes are systematically analyzed. Finally,the interference phenomenon of vector sound fields is analyzed and verified using the measured hydrological data. The results show that the vector sound fields contain unique interference information,and the deep mining of their formation rules and characteristics can provide a new theoretical basis for low-frequency shallow water target detection and sound field characteristic analysis.

【基金】 国家自然科学基金项目项目“复杂浅海环境中船舶辐射噪声测量技术研究”(52271343);国家自然科学基金项目项目“海洋非均质波导中非线性声场特性与利用”(52271342);国家自然科学基金项目项目“基于功能梯度变化材料的声学结构低频噪声控制研究”(52171333);国家自然科学基金项目项目“吸声–探测一体化的声敏感材料研究”(52250344);国家自然科学基金“水下矢量声场高效稳健方位估计方法研究”(62301179);国家重大研究仪器开发项目“海洋非线性声散射声场动态观测与调控系统”(52327901);黑龙江省自然科学基金项目“声学覆盖层内嵌矢量水听器探测基础问题研究”(JQ2024A001);广西自然科学基金“水下小孔径超增益高阶矢量声呐应用基础研究”(2025GXNSFFA069010)
  • 【文献出处】 数字海洋与水下攻防 ,Digital Ocean & Underwater Warfare , 编辑部邮箱 ,2025年05期
  • 【分类号】E91;TB56
  • 【下载频次】21
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