首页> 外文期刊>Drones >Ears in the Sky: Potential of Drones for the Bioacoustic Monitoring of Birds and Bats
【24h】

Ears in the Sky: Potential of Drones for the Bioacoustic Monitoring of Birds and Bats

机译:天空中的耳朵:用于鸟类和蝙蝠的生物声学监测的无人机的潜力

获取原文
       

摘要

In the context of global biodiversity loss, wildlife population monitoring is a major challenge. Some innovative techniques such as the use of drones—also called unmanned aerial vehicle/system (UAV/UAS)—offer promising opportunities. The potential of UAS-based wildlife census using high-resolution imagery is now well established for terrestrial mammals or birds that can be seen on images. Nevertheless, the ability of UASs to detect non-conspicuous species, such as small birds below the forest canopy, remains an open question. This issue can be solved with bioacoustics for acoustically active species such as bats and birds. In this context, UASs represent an interesting solution that could be deployed on a larger scale, at lower risk for the operator, and over hard-to-reach locations, such as forest canopies or complex topographies, when compared with traditional protocols (fixed location recorders placed or handled by human operators). In this context, this study proposes a methodological framework to assess the potential of UASs in bioacoustic surveys for birds and bats, using low-cost audible and ultrasound recorders mounted on a low-cost quadcopter UAS (DJI Phantom 3 Pro). The proposed methodological workflow can be straightforwardly replicated in other contexts to test the impact of other UAS bioacoustic recording platforms in relation to the targeted species and the specific UAS design. This protocol allows one to evaluate the sensitivity of UAS approaches through the estimate of the effective detection radius for the different species investigated at several flight heights. The results of this study suggest a strong potential for the bioacoustic monitoring of birds but are more contrasted for bat recordings, mainly due to quadcopter noise (i.e., electronic speed controller (ESC) noise) but also, in a certain manner, to the experimental design (use of a directional speaker with limited call intensity). Technical developments, such as the use of a winch to safely extent the distance between the UAS and the recorder during UAS sound recordings or the development of an innovative platform, such as a plane–blimp hybrid UAS, should make it possible to solve these issues.
机译:在全球生物多样性损失的背景下,野生动物人口监测是一个重大挑战。一些创新技术,如使用无人机 - 也称为无人机/系统(UAV / UAS) - 承诺的机会。现在,使用高分辨率图像的基于UAS的野生动物人口普查的潜力对于可以在图像上看到的陆地哺乳动物或鸟类来说是很好的。然而,uass检测森林冠层下方的小鸟类的不显眼物种的能力仍然是一个开放的问题。这个问题可以用生物理学来解决原声道活性物种,如蝙蝠和鸟类。在这种情况下,uass代表了一个有趣的解决方案,可以在更大的规模上部署,较低的运营商的风险,以及与传统协议相比的难以到达位置,例如森林檐篷或复杂的地形(固定位置)由人类运营商安排或处理的录像机)。在这种情况下,本研究提出了一种方法论框架,用于评估禽类调查的乌索斯的潜力,使用安装在低成本Quadcopter UAS(DJI Phantom 3 Pro)上的低成本声音和超声录像机。所提出的方法学工作流程可以在其他背景下被简单地复制,以测试其他UAS生物声学记录平台与目标物种的影响和特定的UAS设计。该协议允许人们通过在几种飞行高度调查的不同物种的有效检测半径的估计来评估UAS方法的敏感性。本研究的结果表明,对鸟类的生物声学监测的强大潜力,但对于蝙蝠录音而言更为鲜明对比,主要是由于Quadcopter噪声(即电子速度控制器(ESC)噪声)而且以某种方式,以实验到实验设计(使用带有有限呼叫强度的方向扬声器)。技术开发,如使用绞车在UAS录音期间使用绞盘和录像机之间的距离或创新平台的开发,例如飞机 - 模糊混合UA,应该可以解决这些问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号