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Toward an Architecture for Subalpine Forest Monitoring Using Commercial Off-the-Shelf Unmanned Aircraft Systems and Sensors

机译:迈向使用商用现货无人飞机系统和传感器进行亚高山森林监测的架构

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Forests of the western United States have, in recent years, been subjected to increasingly severe disturbance regimes. To study interactions between these disturbances and their impact on forested systems, ecologists have traditionally relied on a combination of fine-scale ground surveys and coarse-scale satellite imagery. Unmanned aircraft systems have the potential to bridge a gap in resolution between these sources of data. The work presented here takes an exploratory step in bridging this gap. A prototype unmanned aircraft system consisting of commercial off-the-shelf components, namely a quadrotor drone and a compact multispectral camera, was developed. An accompanying concept of operations for flying the system was also designed, and was carried out to collect imagery over plots of forest in the Colorado Front Range. The images were processed into three dimensional point cloud reconstructions and multispectral reflectance maps. These are to be used to explore development of segmentation and classification algorithms to derive forest metrics from the data, as well as spectral unmixing models on moderate resolution satellite imagery from Landsat, which estimate the percent of each pixel occupied by land cover types. It was found that the concept of operations enables sufficiently safe and robust operation of the prototype system in the rugged subalpine environment. However, it was determined that a more stable aircraft platform was needed in order to collect imagery of sufficient quality for scientific analysis. This work represents a first step in enabling large-scale, regular, and detailed observations of forest metrics from unmanned aircraft systems in subalpine forest ecosystems, which may inform efforts to understand the effects of disturbances on these systems across multiple scales.
机译:近年来,美国西部的森林受到越来越严重的干扰。为了研究这些干扰及其对森林系统的影响之间的相互作用,生态学家传统上依靠精细规模的地面勘测和粗糙规模的卫星图像相结合。无人机系统有可能弥合这些数据源之间的分辨率差距。此处介绍的工作在缩小这一差距方面迈出了探索性的一步。开发了一种原型无人机系统,该系统由商用现货组件组成,即四旋翼无人机和紧凑型多光谱相机。还设计了伴随的飞行系统操作概念,并进行了收集科罗拉多前沿山脉森林地带图像的工作。图像被处理成三维点云重建和多光谱反射率图。这些将用于探索分割和分类算法的发展,以从数据中获取森林度量,以及来自Landsat的中等分辨率卫星图像上的光谱分解模型,该模型可估计土地覆盖类型所占每个像素的百分比。已经发现,操作的概念使原型系统在崎sub的亚高山环境中能够充分安全和可靠地操作。但是,已确定需要更稳定的飞机平台,以便收集足够质量的图像以进行科学分析。这项工作是实现对来自高山森林生态系统的无人驾驶飞机系统的森林指标进行大规模,常规和详细观测的第一步,这可能会有助于人们努力了解各种规模的干扰对这些系统的影响。

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