A New Research Direction: Underwater Acoustic Signal Combined Processing Based on Multi-Field Coherence

Min-je Song
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Abstract

The low-cost and highly-reliable underwater acoustic network is an effective means of monitoring the marine environment, detecting seabed resources, searching in marine rescue operations, etc. [1,2]. There are many acoustic field effects distributed in the Pacific, Atlantic, Indian Ocean, etc., including convergence zones, shadow zones, deep sea acoustic channels and so on. The different sensor nodes of the network may be deployed in different acoustic field zones while adopting suitable working modes; for example, sensor nodes deployed in convergence zones adopt the “convergence zone working mode”, while those deployed in the deep-sea acoustic channels adopt the “deep sea acoustic waveguide working mode”. With the increase in the bandwidth and rate of underwater communication, it has become possible to carry out the combined processing of the acoustic signals of distributed nodes. Therefore, achieving processing gain of multi-field coherence and correlation through combined processing of different sensor node signals will become a new research direction.
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一个新的研究方向:基于多场相干的水声信号组合处理
低成本、高可靠的水声网络是海洋环境监测、海底资源探测、海上救援搜索等的有效手段[1,2]。分布在太平洋、大西洋、印度洋等地的声场效应有很多,包括辐合带、阴影带、深海声道等。网络的不同传感器节点可以部署在不同的声场区域,同时采用合适的工作模式;例如,部署在汇聚区的传感器节点采用“汇聚区工作模式”,部署在深海声通道中的传感器节点采用“深海声波导工作模式”。随着水下通信带宽和速率的提高,对分布式节点声信号进行组合处理已经成为可能。因此,通过对不同传感器节点信号的联合处理来获得多场相干和相关的处理增益将成为一个新的研究方向。
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