利用声信号的时频特征进行水下目标跟踪

Digulescu Angela, Candel Ion, Ioana Cornel, Bucur Diana, Petrut Teodor
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引用次数: 9

摘要

水下目标探测是海洋领域的重要应用。大多数技术都是基于振幅相关技术,即使用接收到的回波的振幅来检测指定范围内的物体。然而,振幅技术容易受到干扰和衰减,从而限制了这种系统的能力。因此,本文的目的是提出一种利用水下运动物体产生的湍流来探测和跟踪水下运动物体的新技术。为了描述和解释人工和自然湍流的行为,宽带信号已被证明是一种非常有效的替代方法,可以将湍流特性和波形设计合并在一起。因此,构建适合于流中嵌入的自然湍流以及未知水下运动物体产生的人工湍流的波形可能是水下目标跟踪新技术的关键。当具有特定瞬时频率规律的声信号进入水下环境时,将击中一个运动物体,其瞬时频率规律将捕获物体的人工湍流,以及嵌入在流中的自然湍流。在我们的小型设备上进行的实验结果验证了该技术。
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Underwater object tracking using time frequency signatures of acoustic signals
Detecting underwater objects is an important application in marine applications. Most of the techniques are based on the amplitude related techniques, whereby the amplitude of the received echo is used to detect objects within specified bounds. Amplitude techniques however are prone to interference and attenuation, thus limiting the capabilities of such systems. Hence, the aim of this paper is to propose a new technique that detect and track underwater moving objects using the turbulence generated by the object. Wideband signals have proven to be a very efficient alternative for merging turbulent flow characteristics and waveform design in order to describe and explain the behavior of turbulence, both artificial and natural. Therefore, constructing adapted waveforms to the natural turbulence embedded in the flow, as well as to the artificial turbulence created by an unknown underwater moving object may hold the key for a new technique for underwater object tracking. When acoustic signals with a particular Instantaneous Frequency Law traveling into underwater environment will hit a moving object, their Instantaneous Frequency Law will capture the object's artificial turbulence, as well as the natural turbulence embedded in the flow. Experimental results carried out in our reduced scale facility provide the validation of the technique.
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