Performance Characteristics of the NoiseSpotter: An Acoustic Monitoring and Localization System

K. Raghukumar, G. Chang, F. Spada, Craig Jones
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Abstract

In support of monitoring technologies to evaluate the potential environmental effects of offshore energy devices, this project attempts to ultimately improve upon traditional acoustic sensing techniques by developing a cost-effective compact array of acoustic vector sensors that characterizes, classifies, and provides accurate location information for anthropogenic and natural sounds. The NoiseSpotter consists of three acoustic vector sensors arranged in a three-dimensional array deployed as a seafloor mooring. Each vector sensor measures acoustic pressure and the three-dimensional particle velocity vector associated with the propagation of an acoustic wave, thereby inherently providing bearing information to an underwater source of sound. Here, performance characteristics of the NoiseSpotter are presented, along with an analysis of its abilities as an operational passive acoustic monitoring system to characterize sources of sound. Data are presented from controlled acoustic transmissions in a quiet environment and an energetic tidal channel in the presence of non-acoustic flow noise. NoiseSpotter performance is demonstrated through its modular design, ease of deployment/recovery, ability to remove signal contamination by flow noise and the ability to geolocate acoustic sources of interest.
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噪声探测器的性能特征:一种声学监测和定位系统
为了支持监测技术来评估海上能源设备的潜在环境影响,该项目试图最终改进传统的声学传感技术,通过开发一种具有成本效益的紧凑型声学矢量传感器阵列,该阵列可以表征、分类并提供人为和自然声音的准确位置信息。NoiseSpotter由三个声学矢量传感器组成,它们排列成三维阵列,部署在海底系泊处。每个矢量传感器测量与声波传播相关的声压和三维粒子速度矢量,从而固有地为水下声源提供方位信息。本文介绍了NoiseSpotter的性能特点,并分析了其作为一种可操作的被动声学监测系统来表征声源的能力。数据来自安静环境中的受控声传输和存在非声流噪声的高能潮汐通道。NoiseSpotter的性能体现在其模块化设计、易于部署/恢复、能够消除流噪声的信号污染以及能够对感兴趣的声源进行地理定位。
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