Modeling the Geometry of an Underwater Channel for Acoustic Communication

Q4 Engineering
Hala A. Naman, A. E. Abdelkareem
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引用次数: 0

Abstract

 The achievement of efficient data transmissions via underwater acoustic channels, while dealing with large data packets and real-time data fed by underwater sensors, requires a high data rate. However, diffraction, refraction, and reflection phenomena, as well as phase and amplitude variations, are common problems experienced in underwater acoustic (UWA) channels. These factors make it difficult to achieve high-speed and long-range underwater acoustic communications. Due to multipath interference caused by surface and ocean floor reflections, the process of modeling acoustic channels under the water’s surface is of key importance. This work proposes a simple geometry-based channel model for underwater communication. The impact that varying numbers of reflections, low water depth values, and distances between the transmitter and the receiver exert on channel impulse response and transmission loss is examined. The high degree of similarity between numerical simulations and actual results demonstrates that the proposed model is suitable for describing shallow underwater acoustic communication environments.
用于声学通信的水下通道几何建模
 在处理由水下传感器提供的大数据包和实时数据的同时,通过水下声学信道实现高效的数据传输需要高数据速率。然而,衍射、折射和反射现象以及相位和振幅变化是水下声学(UWA)信道中常见的问题。这些因素使得实现高速和远程水声通信变得困难。由于地表和海底反射引起的多径干扰,水面下声道的建模过程至关重要。本文提出了一种简单的基于几何结构的水下通信信道模型。研究了不同的反射次数、低水深值以及发射器和接收器之间的距离对信道脉冲响应和传输损耗的影响。数值模拟与实际结果的高度相似性表明,该模型适用于描述浅层水声通信环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Telecommunications and Information Technology
Journal of Telecommunications and Information Technology Engineering-Electrical and Electronic Engineering
CiteScore
1.20
自引率
0.00%
发文量
34
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