Development of a shallow water ambient noise database

T.S. Pieng, K. T. Beng, P. Venugopalan, M. Chitre, J. Potter
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引用次数: 13

Abstract

The number of underwater activities and experiments in tropical waters has been growing; people are increasingly becoming interested in the development of underwater applications that rely on acoustic communications. Ambient noise is a limiting factor in the performance of underwater acoustic detection and communication systems at shallow water. Knowledge of ambient noise characteristics at a location can be helpful for ambient noise imaging systems like ROMANIS, built at Acoustic Research Laboratory. The Singapore straits and surrounding waters contain some of the busiest shipping channels in the world. Monitoring of ambient noise is of crucial interest to acousticians and oceanographers due to the high level of shipping and snapping shrimp noise in the region. Since there was no such systematic ambient noise database existing to support oceanographers and acousticians, the Acoustic Research Laboratory (ARL) at the Tropical Marine Science Institute (TMSI) has embarked on developing a shallow water ambient noise database. This Graphical User Interface (GUI)-based database benefit and enhance the research and development of marine acoustic systems. This paper describes the collection of ambient noise data and the structured compilation of this information into a useful database. The data collected covers a frequency range of 11-8300 Hz. The data is indexed and stored in a database and presented to the user via a GUI. The GUI uses an approach similar to typical Geographical Information System (GIS) databases. The user is able to select different layers of information on a map. The user may search for ambient noise data based on various parameters such as location of data collections or classification of the environment. The GUI is also integrated with Matlab/sup /spl reg//, popular mathematical analysis software, to display the time series, power spectral density and 1/3/sup rd/ octave spectrogram of the ambient noise data. The database GUI, some example data and a summary of the collected ambient noise data are presented. The high levels of noise due to shipping and snapping shrimp are all readily apparent in the data; with typical intensity levels considerably exceeding the classic reported values. Shipping noise is reported to dominate the frequency range below 1 kHz. Snapping shrimp noise is found in all warm and shallow waters. The ambient noise data collected from near a fish farm area shows that the snapping shrimp noise is dominant above 2 kHz.
浅水环境噪声数据库的开发
在热带水域进行的水下活动和实验越来越多;人们对依靠声学通信的水下应用的发展越来越感兴趣。环境噪声是影响浅水水声探测与通信系统性能的一个制约因素。了解一个地点的环境噪声特性对环境噪声成像系统(如声学研究实验室建造的ROMANIS)很有帮助。新加坡海峡及其周围水域拥有世界上最繁忙的航运通道。由于该地区的航运和捕虾噪声水平很高,因此环境噪声的监测对声学家和海洋学家至关重要。由于没有这样一个系统的环境噪声数据库来支持海洋学家和声学学家,热带海洋科学研究所(TMSI)的声学研究实验室(ARL)已经着手开发一个浅水环境噪声数据库。这种基于图形用户界面(GUI)的数据库有利于并促进了海声系统的研究与发展。本文介绍了环境噪声数据的收集,并将这些信息结构化地汇编成一个有用的数据库。采集的数据频率范围为11 ~ 8300hz。数据被索引并存储在数据库中,并通过GUI呈现给用户。GUI使用类似于典型地理信息系统(GIS)数据库的方法。用户可以在地图上选择不同层次的信息。用户可以根据数据收集位置或环境分类等各种参数搜索环境噪声数据。GUI还集成了Matlab/sup /spl reg//这一流行的数学分析软件,可以显示环境噪声数据的时间序列、功率谱密度和1/3/sup /倍频程谱图。给出了数据库GUI、一些示例数据和收集到的环境噪声数据摘要。运输和捕捉虾所产生的高水平噪音在数据中都很明显;典型强度水平大大超过经典报告值。据报道,船舶噪声在1千赫以下的频率范围内占主导地位。捕虾的噪音在所有温暖的浅水区都有发现。从某养鱼场附近采集的环境噪声数据表明,捕虾噪声在2 kHz以上占主导地位。
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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