首页> 外文会议>ISPRS International Conference on Unmanned Aerial Vehicles in Geomatics >WILDLIFE MULTISPECIES REMOTE SENSING USING VISIBLE AND THERMAL INFRARED IMAGERY ACQUIRED FROM AN UNMANNED AERIAL VEHICLE (UAV)
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WILDLIFE MULTISPECIES REMOTE SENSING USING VISIBLE AND THERMAL INFRARED IMAGERY ACQUIRED FROM AN UNMANNED AERIAL VEHICLE (UAV)

机译:使用从无人驾驶飞行器(UAV)获取的可见和热红外图像的野生动物多层遥感

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Wildlife aerial surveys require time and significant resources. Multispecies detection could reduce costs to a single census for species that coexist spatially. Traditional methods are demanding for observers in terms of concentration and are not adapted to multispecies censuses. The processing of multispectral aerial imagery acquired from an unmanned aerial vehicle (UAV) represents a potential solution for multispecies detection. The method used in this study is based on a multicriteria object-based image analysis applied on visible and thermal infrared imagery acquired from a UAV. This project aimed to detect American bison, fallow deer, gray wolves, and elks located in separate enclosures with a known number of individuals. Results showed that all bison and elks were detected without errors, while for deer and wolves, 0-2 individuals per flight line were mistaken with ground elements or undetected. This approach also detected simultaneously and separately the four targeted species even in the presence of other untargeted ones. These results confirm the potential of multispectral imagery acquired from UAV for wildlife census. Its operational application remains limited to small areas related to the current regulations and available technology. Standardization of the workflow will help to reduce time and expertise requirements for such technology.
机译:野生动物空中调查需要时间和重要的资源。多数检测可以降低​​空间共存的单一人口普查的成本。传统方法要求在浓度方面对观察者苛刻,并且不适应对多项人口普查。从无人驾驶飞行器(UAV)获取的多光谱空中图像的处理代表了多层检测的潜在解决方案。本研究中使用的方法基于应用于从UAV获取的可见和热红外图像上的基于多铁基对象的图像分析。该项目旨在检测美国北美野牛,鹿,灰狼,以及位于单独的外壳中,具有已知数量的个人。结果表明,检测到所有北美野牛和麋鹿没有错误,而对于鹿和狼,每次飞行线0-2个体被弄错的地面或未检测到。即使在其他未确定的存在下,这种方法也同时检测到四个靶向物种。这些结果证实了从无人机获得野生动物人口普查的多光谱图像的潜力。其运营申请仍然仅限于与现行法规和可用技术有关的小领域。工作流程的标准化将有助于降低此类技术的时间和专业知识。

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