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A Practical Approach for Extracting Tree Models in Forest Environments Based on Equirectangular Projections of Terrestrial Laser Scans

机译:基于陆地激光扫描等角投影的森林环境树模型提取实用方法

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Extracting 3D tree models based on terrestrial laser scanning (TLS) point clouds is a challenging task as trees are complex objects. Current TLS devices acquire high-density data that allow a detailed reconstruction of the tree topology. However, in dense forests a fully automatic reconstruction of trees is often limited by occlusion, wind influences and co-registration issues. In this paper, a semi-automatic method for extracting branching and stem structure based on equirectangular projections (range and intensity maps) is presented. The digitization of branches and stems is based on 2D maps, which enables simple navigation and raster processing. The modeling is performed for each viewpoint individually instead of using a registered point cloud. Previously reconstructed 2D-skeletons are transformed between the maps. Therefore, wind influences, orientation imperfections of scans and data gaps can be overcome. The method is applied to a TLS dataset acquired in a forest in Germany. In total 34 scans were carried out within a managed forest to measure approximately 90 spruce trees with minimal occlusions. The results demonstrate the feasibility of the presented approach to extract tree models with a high completeness and correctness and provide an excellent input for further modeling applications.
机译:由于树是复杂的对象,因此基于地面激光扫描(TLS)点云提取3D树模型是一项艰巨的任务。当前的TLS设备获取高密度数据,从而可以详细重建树形拓扑。然而,在茂密的森林中,树木的全自动重建通常受到遮挡,风的影响和共同注册问题的限制。本文提出了一种基于等矩形投影(范围和强度图)的半自动提取分支和茎结构的方法。分支和茎的数字化基于2D地图,可实现简单的导航和栅格处理。可以对每个视点分别执行建模,而不使用注册点云。在地图之间转换先前重建的2D骨架。因此,可以克服风的影响,扫描的方向缺陷和数据间隙。该方法适用于德国森林中获取的TLS数据集。在一个被管理的森林中总共进行了34次扫描,以测量大约90棵云杉树木,且遮挡物最少。结果表明,该方法具有较高的完整性和正确性,可用于提取树模型,为进一步的建模应用提供了极好的输入。

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