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Extending bioacoustic monitoring of birds aloft through flight call localization with a three‐dimensional microphone array

机译:通过三维麦克风阵列通过飞行呼叫定位来扩展高空鸟类的生物声监测

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摘要

Bioacoustic localization of bird vocalizations provides unattended observations of the location of calling individuals in many field applications. While this technique has been successful in monitoring terrestrial distributions of calling birds, no published study has applied these methods to migrating birds in flight. The value of nocturnal flight call recordings can increase with the addition of three‐dimensional position retrievals, which can be achieved with adjustments to existing localization techniques. Using the time difference of arrival method, we have developed a proof‐of‐concept acoustic microphone array that allows the three‐dimensional positioning of calls within the airspace. Our array consists of six microphones, mounted in pairs at the top and bottom of three 10‐m poles, arranged in an equilateral triangle with sides of 20 m. The microphone array was designed using readily available components and costs less than $2,000 USD to build and deploy. We validate this technique using a kite‐lofted GPS and speaker package, and obtain 60.1% of vertical retrievals within the accuracy of the GPS measurements (±5 m) and 80.4% of vertical retrievals within ±10 m. The mean Euclidian distance between the acoustic retrievals of flight calls and the GPS truth was 9.6 m. Identification and localization of nocturnal flight calls have the potential to provide species‐specific spatial characterizations of bird migration within the airspace. Even with the inexpensive equipment used in this trial, low‐altitude applications such as surveillance around wind farms or oil platforms can benefit from the three‐dimensional retrievals provided by this technique.
机译:鸟类发声的生物声定位可在许多现场应用中无人值守地观察呼叫者的位置。尽管这项技术已成功地监测了候鸟的陆地分布,但尚未发表任何研究将这些方法应用于飞行中的鸟类迁徙。夜间飞行呼叫记录的价值可以通过添加三维位置检索来增加,这可以通过调整现有的定位技术来实现。使用到达时间差方法,我们开发了概念验证的声学麦克风阵列,可以在空域内对呼叫进行三维定位。我们的阵列由六个麦克风组成,成对安装在三个10 m极的顶部和底部,并以等边三角形排列,边长20 m。麦克风阵列是使用随时可用的组件设计的,构建和部署成本不到2,000美元。我们使用放风筝的GPS和扬声器套件验证了此技术,并在GPS测量精度(±5 m)内获得了60.1%的垂直回波,并且在±10 m以内获得了80.4%的垂直回波。飞行通话的声音检索与GPS真值之间的平均欧几里得距离为9.6 m。夜间飞行呼叫的识别和定位有可能提供特定物种在空域内鸟类迁徙的空间特征。即使使用此试验中使用的廉价设备,低空应用(例如风电场或石油平台周围的监视)也可以从此技术提供的三维检索中受益。

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