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Simulation and Statistical Modeling of Acoustic Scattering of Bubble Wakes

机译:泡沫唤醒声散射的仿真与统计建模

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Ship wakes are large, exist for a long time, and are difficult to disguise or conceal. These characteristics can be used as an important basis for ship tracking and recognition. However, distinguishing between wakes, underwater targets, and sea surface is a difficult problem that currently limits acoustic wake homing technology. To solve this problem, in this study, from the viewpoint of feature recognition, the effects of bubble radius, air volume fraction, frequency, depth, and other parameters on the group bubble were first investigated. The volume scattering intensity of acoustic wakes at different frequencies and depths was also calculated and analyzed, and the results of our theoretical calculations were verified through an experiment using a multifrequency single wave sonar dock. Subsequently, through the single frequency and multibeam sonar sea trial test, a statistical model of target characteristics with a clear physical mechanism was developed. The developed model can be utilized for the guidance and recognition of acoustic wake targets. Thus, this study lays the foundation for the practical application of acoustic wake guidance.
机译:船唤醒很大,存在很长一段时间,很难伪装或隐藏。这些特性可以用作船舶跟踪和识别的重要基础。然而,区分唤醒,水下目标和海面是一个难以限制声学唤醒归巢技术的难题。为了解决这个问题,在本研究中,从特征识别的观点来看,首先研究了泡沫半径,空气体积分数,频率,深度和其他参数的效果。还计算和分析了不同频率和深度处的声学唤醒的体积散射强度,通过使用多频性单波声纳码头通过实验验证了我们理论计算的结果。随后,通过单频和多频道声纳海试验试验,开发了具有明确物理机制的目标特征的统计模型。开发的模型可用于声学唤醒目标的引导和识别。因此,本研究为声学尾行指导的实际应用奠定了基础。

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