...
首页> 外文期刊>Royal Society Open Science >An experimental approach to evaluate the potential of drones in terrestrial mammal research: a gregarious ungulate as a study model
【24h】

An experimental approach to evaluate the potential of drones in terrestrial mammal research: a gregarious ungulate as a study model

机译:评估陆地哺乳动物研究中无人机潜力的实验方法:作为研究模式的艰巨联杆菌

获取原文

摘要

Research on the use of unmanned aircraft systems (UAS) in wildlife has made remarkable progress recently. Few studies to date have experimentally evaluated the effect of UAS on animals and have usually focused primarily on aquatic fauna. In terrestrial open arid ecosystems, with relatively good visibility to detect animals but little environmental noise, there should be a trade-off between flying the UAS at high height above ground level (AGL) to limit the disturbance of animals and flying low enough to maintain count precision. In addition, body size or social aggregation of species can also affect the ability to detect animals from the air and their response to the UAS approach. To address this gap, we used a gregarious ungulate, the guanaco ( Lama guanicoe ), as a study model. Based on three types of experimental flights, we demonstrated that (i) the likelihood of miscounting guanacos in images increases with UAS height, but only for offspring and (ii) higher height AGL and lower UAS speed reduce disturbance, except for large groups, which always reacted. Our results call into question mostly indirect and observational previous evidence that terrestrial mammals are more tolerant to UAS than other species and highlight the need for experimental and species-specific studies before using UAS methods.
机译:野生动物无人机系统(UAS)在野生动物中使用的研究近来近来的进步。迄今少数研究已经通过实验评估了UAS对动物的影响,通常主要集中在水生动物群上。在陆地开放的干旱生态系统中,具有相对良好的知识来检测动物,但环境噪音很少,在地上高度高度(AGL)的高度高度(AGL)之间应该有一个权衡,以限制动物的干扰并飞得足够低,以维持计数精度。此外,物种的体型或社会聚集也会影响从空气中检测动物的能力及其对UAS方法的反应。为了解决这一差距,我们使用了一个血腥的悬鼠,瓜曲(喇嘛鸟科)作为一项研究模式。基于三种类型的实验飞行,我们证明(i)在图像中误诊的瓜纳卡科斯的可能性随UAS高度而增加,但仅用于后代和(ii)高度AGL和较低的UAS速度减少干扰,除了大型组,除了大型组总是反应。我们的结果称为问题主要是间接和观察到以前的证据,即陆地哺乳动物比其他物种更容易耐受,并且在使用UAS方法之前突出了对实验性和物种的研究。

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