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首页> 外文期刊>Frontiers in Marine Science >Bottlenose Dolphins and Antillean Manatees Respond to Small Multi-Rotor Unmanned Aerial Systems
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Bottlenose Dolphins and Antillean Manatees Respond to Small Multi-Rotor Unmanned Aerial Systems

机译:宽吻海豚和Antillean海牛应对小型多旋翼无人机系统

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Unmanned aerial systems (UAS) are powerful tools for research and monitoring of wildlife. However, the effects of these systems on most marine mammals are largely unknown, preventing the establishment of guidelines that will minimize animal disturbance. In this study, we evaluated the behavioral responses of coastal bottlenose dolphins (Tursiops truncatus) and Antillean manatees (Trichechus manatus manatus) to small multi-rotor UAS flight. From 2015 to 2017, we piloted 211 flights using DJI quadcopters (Phantom II Vision +, 3 Professional and 4) to approach and follow animals over shallow-water habitats in Belize. The quadcopters were equipped with high-resolution cameras to observe dolphins during 138 of these flights, and manatees during 73 flights. Aerial video observations of animal behavior were coded and paired with flight data to determine whether animal activity and/or the UAS’s flight patterns caused behavioral changes in exposed animals. Dolphins responded to UAS flight at altitudes of 11–30 m, and responded primarily when they were alone or in small groups. Single dolphins and one pair responded to the UAS by orienting upward and turning towards the aircraft to observe it, before quickly returning to their pre-response activity. A higher number of manatees responded to the UAS, exhibiting strong disturbance in response to the aircraft from 6–104 m. Manatees changed their behavior by fleeing the area and sometimes this elicited the same response in nearby animals. If pursued post-response, manatees repeatedly responded to overhead flight by evading the aircraft’s path. These findings suggest that the invasiveness of UAS varies across individuals, species, and taxa. We conclude that careful exploratory research is needed to determine the impact of multi-rotor UAS flight on diverse species, and to develop best practices aimed at reducing the disturbance to wildlife that may result from their use.
机译:无人机系统(UAS)是研究和监测野生动植物的强大工具。但是,这些系统对大多数海洋哺乳动物的影响在很大程度上是未知的,因此无法建立将动物干扰降到最低的准则。在这项研究中,我们评估了沿海宽吻海豚(Tursiops truncatus)和安提尔海牛(Trichechus manatus manatus)对小型多旋翼无人机飞行的行为响应。从2015年到2017年,我们使用DJI四旋翼飞机(Phantom II Vision +,3 Professional和4)进行了211次飞行,以接近和跟随伯利兹浅水生境的动物。四旋翼飞机配备了高分辨率相机,可以在这些飞行的138次中观察海豚,并在73次飞行中观察海牛。对动物行为的航拍视频进行编码并与飞行​​数据配对,以确定动物活动和/或UAS的飞行模式是否引起暴露动物的行为变化。海豚在11–30 m的高度对UAS飞行做出反应,并且主要在它们单独或成群出现时做出反应。单身海豚和一对海豚通过向上定向并转向飞机进行观察来对UAS做出反应,然后迅速返回其反应前的活动。更多的海牛对UAS做出反应,在6–104 m范围内对飞机产生了强烈的干扰。海牛逃离该地区改变了他们的行为,有时这在附近的动物中引起了同样的反应。如果采取追赶行动,海牛会通过逃避飞机的路径反复对头顶飞行作出回应。这些发现表明,UAS的侵入性随个人,物种和分类群的不同而不同。我们得出结论,需要进行认真的探索性研究,以确定多旋翼无人机系统飞行对不同物种的影响,并制定最佳实践,以减少使用它们可能对野生生物造成的干扰。

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