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Forward scattering detection of a submerged object by a vertical hydrophone array

机译:垂直水听器阵列对水下物体的前向散射检测

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摘要

When an object crosses a source-receiver line, the resulting weak acoustic field aberration is often overwhelmed by a strong direct blast. In this study, a lake experiment with a vertical receiver array spanning the water column was designed and conducted with a 10 kHz pulse. The study aimed to detect the aberration caused by forward scattering from an intercepting submerged object. Although such aberration could be directly observed, it varies by only 3 dB, at most, around the direct blast. Hence, the vertical hydrophone array was subjected to time-delay beamforming, and a principal component analysis was conducted on the stable portion of the beam output. The second principal component was extracted from the horizontally directed beam output waveform at the vertical receiver array. The invariant direct blast component was reduced after analysis, and the field aberration caused by forward scattering of the submerged object was amplified by up to 10 dB above the background acoustic field. (C) 2014 Acoustical Society of America.
机译:当物体越过源接收器线时,所产生的弱声场像差通常会被强烈的直接爆炸淹没。在这项研究中,设计了一个湖泊实验,该实验具有横跨水柱的垂直接收器阵列,并以10 kHz脉冲进行。该研究旨在检测由拦截水下物体向前散射引起的像差。尽管可以直接观察到这种像差,但在直接爆炸周围最多只能变化3 dB。因此,对垂直水听器阵列进行延时波束成形,并对波束输出的稳定部分进行主成分分析。第二个主成分是从垂直接收器阵列的水平定向波束输出波形中提取的。经过分析后,不变的直接爆炸分量减少了,由淹没物体的前向散射引起的场像差在背景声场之上放大了10 dB。 (C)2014美国声学学会。

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