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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Simulation of an Underwater Acoustic Communication Channel Characterized by Wind-Generated Surface Waves and Bubbles
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Simulation of an Underwater Acoustic Communication Channel Characterized by Wind-Generated Surface Waves and Bubbles

机译:风力产生的表面波和气泡为特征的水下声通信通道的仿真

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摘要

Sea-surface scattering by wind-generated waves and bubbles is regarded to be the main nonplatform related cause of the time variability of shallow acoustic communication channels. Simulations for predicting the quality of acoustic communication links in such channels thus require adequate modeling of these dynamic sea-surface effects. For frequencies in the range of 1–4 kHz , there is an important effect of bubbles on sea-surface reflection loss due to refraction, which can be modeled with a modified sound-speed profile (SSP) accounting for the bubble void fraction in the surface layer. The bubble cloud then acts as an acoustic lens, enhancing the rough-surface scattering by the resulting upward refraction. It is shown here that, for frequencies in the considered range of 4–8 kHz, bubble extinction, including both the effects of bubble scattering and absorption, provides a significant additional contribution to the surface loss. Model-based channel simulations are performed by applying a ray tracer, together with a toolbox for generation of rough sea-surface evolutions. This practical simulation framework is demonstrated to provide realistic results for both stationary and mobile communication nodes by capturing specific features observed in experiments, such as time variability, fading reverberation tails, and wind-speed dependence of the Doppler power spectrum.
机译:风力波和气泡引起的海面散射被认为是浅声通信通道时间变化的主要与平台无关的原因。因此,用于预测此类通道中声音通信链路质量的模拟需要对这些动态海面效应进行适当的建模。对于1-4 kHz范围内的频率,气泡对由于折射引起的海面反射损耗有重要影响,可以通过修改后的声速剖面(SSP)来建模,以说明气泡中的气泡空隙率。表层。气泡云然后充当声透镜,通过产生的向上折射增强粗糙表面的散射。此处显示,对于所考虑的4–8 kHz范围内的频率,气泡消光,包括气泡散射和吸收的影响,都对表面损耗提供了重要的额外贡献。通过应用射线追踪器以及用于生成粗糙海面演变的工具箱,可以执行基于模型的通道模拟。通过捕获实验中观察到的特定特征(例如时间可变性,衰落的混响尾音和多普勒功率谱的风速相关性),证明了这种实用的仿真框架可为固定和移动通信节点提供现实的结果。

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