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Underwater acoustic channel properties in the Gulf of Naples and their effects on digital data transmission

机译:那不勒斯海湾的水声信道特性及其对数字数据传输的影响

摘要

In this paper we studied the physical properties of the Gulf of Naples (Southern Italy) for its use as a commu- nication channel for the acoustic transmission of digital data acquired by seismic instruments on the seafloor to a moored buoy. The acoustic link will be assured by high frequency acoustic modems operating with a central frequency of 100 kHz and a band pass of 10 kHz. The main operational requirements of data transmission con- cern the near horizontal acoustic link, the maximum depth of the sea being about 300 m and the planned hori- zontal distance between seismic instruments and buoy 2 km. This study constructs the signal-to-noise ratio maps to understand the limits beyond which the clarity of the transmission is no longer considered reliable. Using ray- theory, we compute the amplitudes of a transmitted signal at a grid of 21×12 receivers to calculate the transmis- sion loss at each receiver. The signal-to-noise ratio is finally computed for each receiver knowing also the trans- mitter source level and the acoustic noise level in the Gulf of Naples. The results show that the multipath effects predominate over the effects produced by the sound velocity gradient in the sea in the summer period. In the case of omnidirectional transmitters with a Source Level (SL) of 165 dB and a baud rate of 2.4 kbit/s, the results al- so show that distances of 1400-1600 m can be reached throughout the year for transmitter-receiver connections below 50 m depth in the underwater acoustic channel.
机译:在本文中,我们研究了那不勒斯海湾(意大利南部)的物理属性,以将其用作通过海底地震仪器采集的数字数据以声音方式传输到系泊浮标的通信通道。可以通过以100 kHz的中心频率和10 kHz的带通频率运行的高频声学调制解调器来确保声学链路。数据传输的主要操作要求涉及近水平声波链路,最大海洋深度约为300 m,地震仪器与浮标之间的计划水平距离为2 km。这项研究构建了信噪比图,以了解限制,超出这些限制,传输的清晰度不再被认为是可靠的。利用射线理论,我们计算了一个21×12接收机网格上的发射信号幅度,以计算每个接收机的传输损耗。最后为每个接收器计算信噪比,同时还要知道那不勒斯湾的发射源电平和声噪声电平。结果表明,在夏季,多径效应优于由海中声速梯度产生的效应。对于源电平(SL)为165 dB,波特率为2.4 kbit / s的全向发射机,结果还表明,发射机与接收机的连接全年可达到1400-1600 m在水下声波通道中深度低于50 m的位置。

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