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用于在潮汐急流中对港湾鼠海豚进行精细尺度跟踪的被动声学方法。

Passive acoustic methods for fine-scale tracking of harbour porpoises in tidal rapids.

作者信息

Macaulay Jamie, Gordon Jonathan, Gillespie Douglas, Malinka Chloë, Northridge Simon

机构信息

Sea Mammal Research Unit, Scottish Oceans Institute, Institiud Chuantan na h-Alba, University of St. Andrews, Gatty Marine Laboratory, East Sands, St. Andrews KY16 8LB, Scotland, United Kingdom.

出版信息

J Acoust Soc Am. 2017 Feb;141(2):1120. doi: 10.1121/1.4976077.

Abstract

The growing interest in generating electrical power from tidal currents using tidal turbine generators raises a number of environmental concerns, including the risk that marine mammals might be injured or killed through collision with rotating turbine blades. To understand this risk, information on how marine mammals use tidal rapid habitats and in particular, their underwater movements and dive behaviour is required. Porpoises, which are the most abundant small cetacean at most European tidal sites, are difficult animals to tag, and the limited size of tidal habitats means that any telemetered animal would be likely to spend only a small proportion of time within them. Here, an alternative approach is explored, whereby passive acoustic monitoring (PAM) is used to obtain fine scale geo-referenced tracks of harbour porpoises in tidal rapid areas. Large aperture hydrophone arrays are required to obtain accurate locations of animals from PAM data and automated algorithms are necessary to process the large quantities of acoustic data collected on such systems during a typical survey. Methods to automate localisation, including a method to match porpoise detections on different hydrophones and separate different vocalising animals, and an assessment of the localisation accuracy of the large aperture hydrophone array are presented.

摘要

利用潮汐涡轮发电机从潮流中发电的兴趣日益浓厚,这引发了一些环境问题,包括海洋哺乳动物可能因与旋转的涡轮叶片碰撞而受伤或死亡的风险。为了解这种风险,需要了解海洋哺乳动物如何利用潮汐急流栖息地,特别是它们的水下运动和潜水行为。鼠海豚是欧洲大多数潮汐地点最常见的小型鲸类动物,给它们佩戴标签很困难,而且潮汐栖息地面积有限,这意味着任何通过遥测追踪的动物在这些栖息地内停留的时间可能只占很小一部分。在此,探索了一种替代方法,即利用被动声学监测(PAM)来获取潮汐急流区域港湾鼠海豚的高精度地理参考轨迹。需要大孔径水听器阵列从PAM数据中获取动物的准确位置,并且需要自动化算法来处理在典型调查期间在此类系统上收集的大量声学数据。本文介绍了自动化定位方法,包括一种匹配不同水听器上鼠海豚探测结果并区分不同发声动物的方法,以及对大孔径水听器阵列定位精度的评估。

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