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Feasibility Study of Underwater Acoustic Communications Between Buried and Bottom-Mounted Sensor Network Nodes

机译:埋入式和底部固定式传感器网络节点之间的水下声通信的可行性研究

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摘要

This paper presents a feasibility study of underwater communications between buried sensor network nodes. To investigate this problem, two experiments have been conducted: where some sensor nodes are buried in the sediment, and where all sensor nodes are buried in the sediment. The orthogonal frequency-division multiplexing (OFDM) communications have been chosen to test underwater communications because of its unique strength in handling transmissions over long dispersive channels. Since the existing OFDM schemes for underwater communications are designed to achieve high data rate communications within the water column and are not adequate for communications between sensors placed on the ocean floor, a new low-complexity OFDM receiver has been proposed. The proposed receiver performs frame-by-frame channel estimation, residual phase tracking, diversity combining, and data demodulation. This approach is adopted because of its effectiveness in applications with very fast varying channels and a large number of propagation paths. It is demonstrated that the error-free performance can be achieved between buried sensors using the proposed OFDM receiver.
机译:本文提出了埋藏式传感器网络节点之间水下通信的可行性研究。为了研究这个问题,进行了两个实验:其中一些传感器节点埋在沉积物中,所有传感器节点埋在沉积物中。由于正交频分复用(OFDM)通信在处理长色散信道上的传输方面的独特优势,因此已选择使用它来测试水下通信。由于用于水下通信的现有OFDM方案被设计为在水域内实现高数据速率通信,并且不适用于放置在海底的传感器之间的通信,因此提出了一种新的低复杂度OFDM接收机。拟议中的接收机执行逐帧信道估计,残余相位跟踪,分集组合和数据解调。之所以采用这种方法,是因为其在通道变化非常快和传播路径数量众多的应用中非常有效。结果表明,使用建议的OFDM接收机可以在掩埋传感器之间实现无误码性能。

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