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Research on pulse stretching of underwater bubbles echo signal of lidar

机译:LIDAR水下气泡回波信号的脉冲拉伸研究

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In the process of underwater lidar wake detection, the multipath effect leads to pulse stretching of the echo signal, which is a distinguishing feature to distinguish the wake echo signal. In order to explore the factors that affect the pulse stretching of the echo signal, this paper convolves the instantaneous echo energy of the bubbles at different distance layers with the transmitted pulse, and establishes a distance layer summation model(DLSM) of underwater bubbles. This paper analyzes the effect of bubble density on the backscattering coefficient of the bubbles and the pulse width of the echo signal, and introduces the attenuation length of the water and the multipath effect. The experimental results show that when the attenuation length increases from 1.2 to 2.0, the half-peak width of the echoes of the bubbles increases by 1.3ns. However, when the attenuation length increases from 1.5 to 2.2, the echo pulse width of the strong backscatter target decreases by 0.5ns. The thickness of the bubbles increases from 2cm to 5cm, the peak shifts by 0.4ns, and the echo pulse width increases by 0.6ns. The simulation model and experimental results provide an effective basis for distinguishing ship wakes and strong backscattering targets, and have an important role in improving wake detection and recognition capabilities.
机译:在水下激光雷达唤醒检测过程中,多径效应导致回波信号的脉冲拉伸,这是区分唤醒回波信号的区别特征。为了探索影响回波信号的脉冲拉伸的因素,本文将不同距离层的气泡的瞬时回声能量与透射脉冲透露,并建立水下气泡的距离层求和模型(DLSM)。本文分析了气泡密度对气泡反向散射系数的影响及回声信号的脉冲宽度,并引入了水的衰减长度和多径效应。实验结果表明,当衰减长度从1.2增加到2.0时,气泡回波的半峰宽度增加1.3ns。然而,当衰减长度从1.5增加到2.2时,强反向散射目标的回声脉冲宽度降低0.5ns。气泡的厚度从2cm增加到5cm,峰值偏移0.4ns,回波脉冲宽度增加0.6ns。仿真模型和实验结果为区分船舶唤醒和强散射目标提供了有效的基础,在提高尾迹检测和识别能力方面具有重要作用。

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