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Developing a portable and persistent autonomous real-time marine mammal acoustic monitor

机译:开发便携式且持久的自主实时海洋哺乳动物声学监测器

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Current methods for acoustically monitoring marine mammal habitats to mitigate against potential disruptions are compromised in their effectiveness due to non-real-time analysis, such as with archival recorders, or high system noise, such as with towed hydrophone arrays used with seismic surveys. To realize the advantages of both archival and real-time analysis systems, we are developing a portable and autonomous system for acquiring and analyzing towed hydrophone array data in real-time, by combining archival recording hardware, signal detection firmware, and high-bandwidth satellite communication onto a solar- and wave-powered glider platform. Such a system would be capable of persistent, autonomous, real-time monitoring of marine mammals in areas that would otherwise not be surveyed, as it will not require a local ship for its deployment, its retrieval, or reception of data for human review. This paper describes the ongoing development work to demonstrate the feasibility of integrating a WaveGlider with the archival recording electronics and a towed four-element hydrophone array to capture and output acoustic data to an on-ship data collection system.
机译:由于非实时分析(例如,使用档案记录器)或系统噪声较高(例如,用于地震勘测的拖曳水听器阵列),当前用于声学监测海洋哺乳动物栖息地以减轻潜在破坏的方法的有效性受到了损害。为了实现存档和实时分析系统的优势,我们正在开发一种便携式,自治的系统,通过结合存档记录硬件,信号检测固件和高带宽卫星实时捕获和分析拖曳的水听器阵列数据。通信到太阳能和波浪动力滑翔机平台上。这样的系统将能够对原本不会被调查的地区的海洋哺乳动物进行持续,自主,实时的监测,因为它不需要部署,检索或接收供人工审查的数据的本地船只。本文描述了正在进行的开发工作,以展示将WaveGlider与档案记录电子设备和拖曳的四单元水听器阵列集成在一起以捕获声音数据并将其输出到船上数据收集系统的可行性。

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