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Effect of Pulse Length on Low Frequency Average Reverberation Intensity in Shallow Water Waveguide

机译:脉冲长度对浅水波导低频平均混响强度的影响

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The average reverberation intensity (abbreviated as ARI in this paper) is affected by many factors. In general, an active sonar system transmits short pulse signals, and the ARI in shallow water is proportional to the pulse length. If the ARI of a long pulse signal can be treated as the superposition of that of several short pulse signals, then the average intensity and the duration of reverberation of the long pulse signal should increase linearly with the pulse length. To verify this assumption, an experiment was conducted in a shallow-water waveguide with a flat bottom and sandy sediment. Signals were transmitted by a shark's-lip type transducer and received by two vertical linear arrays located respectively at the distance of 1km and 10km away from the source. The experimental result shows that the average intensity and duration of low frequency reverberation both increase with pulse length, though not linearly. The reason is that the sound absorption effect and scattering attenuation effect can be ignored for the ARI of short pulses, but cannot be ignored for long pulses. In this paper, the effect of signal pulse length on low frequency ARI in shallow water was analyzed and discussed according to the data. Signals with different pulse lengths lead to different ARIs through changing the size of scattering area. In order to illustrate the performance in the experiment, a comparison and thorough analysis of the ARI for different pulse lengths, ambient noise levels and propagation ranges has been made. The conclusions of this paper are: a) the ARI in shallow water is affected cumulatively by range, pulse length and background ambient noise; b) the ARI at different ranges in the scattering area will be weighted by two-way sound propagation loss; c) the weighting parameters will be changed when the reverberation-ambient noise ratio is low.
机译:平均混响强度(本文中的ARI缩写)受许多因素的影响。通常,有源声纳系统传输短脉冲信号,浅水中的ARI与脉冲长度成比例。如果长脉冲信号的ARI可以被视为几个短脉冲信号的叠加,则长脉冲信号的平均强度和混响的混响的持续时间应该与脉冲长度线性增加。为了验证这种假设,在具有平坦底部和砂质沉积物的浅水波导中进行实验。信号由鲨鱼唇型换能器传递,并由分别位于1km和10km的距离远离源的两个垂直线性阵列接收。实验结果表明,低频混响的平均强度和持续时间随着脉冲长度而增加,虽然不线性。原因是对于短脉冲的ARI,可以忽略吸音效应和散射衰减效果,但不能忽略长脉冲。本文根据数据分析并讨论了信号脉冲长度对浅水低频ARI的影响。具有不同脉冲长度的信号通过改变散射区域的大小而导致不同的ARI。为了说明实验中的性能,已经进行了对不同脉冲长度,环境噪声水平和传播范围的ARI的比较和彻底分析。本文的结论是:a)浅水中的ARI受到尺寸,脉冲长度和背景环境噪声的累积影响; b)散射区域的不同范围的ARI将由双向声音损耗加权; c)当混响环境噪声比率低时,将改变加权参数。

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