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Effect of wind-generated bubbles on OFDM power loading for time-varying shallow water acoustic channels with limited feedback

机译:风发气泡对多变浅水声道的OFDM电源负载的影响有限反馈

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Wind blowing over the sea surface generates many dramatic effects. One of the most important effects is bubbles generated by breaking waves, which has major effects on high frequency acoustic propagation, sound speed profile and ambient noise due to the sound scattering and absorption properties of a thin layer of bubbles. In this paper, on one hand, we analyze several important properties of bubbles and their effects on acoustic propagation and sound speed profile; on the other hand, we propose an optimization model aiming at maximizing system capacity with the constraint of the total transmission power in a symbol. It is achieved by adopting the Lloyd algorithm based limited feedback procedure. Simulation results reveal underwater acoustic (UWA) channel impulse responses both with and without the effect of bubbles, and the limited feedback based system capacities comparison in terms of obtained channel impulse responses will be demonstrated.
机译:吹过海面的风产生许多戏剧性的效果。其中一个最重要的效果是通过破坏波产生的泡沫,这对高频声传播,声速曲线和由于薄气泡的声音散射和吸收特性而产生了重大影响。在本文中,一方面,我们分析了泡沫的几个重要属性及其对声学传播和声速轮廓的影响;另一方面,我们提出了一种优化模型,其旨在使系统容量最大化,并在符号中的总传输功率的约束。通过采用基于LLOYD算法的有限反馈过程来实现的。仿真结果揭示了水下声学(UWA)通道脉冲响应,而不是气泡的影响,并且基于基于反馈的系统容量在获得的通道脉冲响应方面的比较将得到证明。

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