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The Generation of 3D Tree Models by the Integration of Multi-sensor Data

机译:通过集成多传感器数据生成3D树模型

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Three-dimensional tree modeling is an important task in the management of forest ecosystems. The objective of this investigation is to reconstruct 3D tree models using LIDAR data and high resolution images. The proposed scheme comprises of three major steps: (1) data preprocessing, (2) vegetation detection, and (3) tree modeling. The data preprocessing includes spatial registration of the airborne LIDAR and high resolution images, derivation of the above ground surface from LIDAR data, and generation of a spectral index from high resolution images. In the vegetation detection, a region-based segmentation and knowledge-based classification are integrated to detect the tree regions. Afterwards, the watershed segmentation is selected to extract the tree crown and heights. In the last step, we use the tree height, tree crown and terrain information to build up the 3D tree models. The experimental results indicate that the accuracy of the extracted individual tree is better than 80%, while the accuracy of the determined tree heights is about 1m.
机译:三维树建模是森林生态系统管理中的重要任务。这项研究的目的是使用LIDAR数据和高分辨率图像重建3D树模型。所提出的方案包括三个主要步骤:(1)数据预处理,(2)植被检测和(3)树木建模。数据预处理包括机载LIDAR和高分辨率图像的空间配准,LIDAR数据得出的地表上方以及高分辨率图像产生的光谱指数。在植被检测中,将基于区域的分割和基于知识的分类相结合以检测树木区域。然后,选择分水岭分割以提取树冠和树高。在最后一步中,我们使用树高,树冠和地形信息来构建3D树模型。实验结果表明,提取的单棵树的准确度优于80%,而确定的树高的准确度约为1m。

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