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Realistic 3D-simulation of large-scale forest scene based on individual tree detection

机译:基于单个树木检测的大型森林场景的逼真的3D模拟

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Reconstructing a realistic and large-scale 3D forest scene has potential applications in visual representations and scientific research. Forest scene with explicitly described branches and leaves can provide a more accurate interpretation of interactions between light and canopy. In this study, a large-scale 3D forest scene reconstruction and simulation method is proposed. A series of individual trees with high level of details are generated using parameters derived from allometric equation, which populates plot leaf area index (LAI) into each individual tree. Based on the airborne laser scanning (ALS) data, the height, crown diameter and position of each individual tree are extracted by watershed segmentation algorithm. Finally, an emulation system based on ray-tracing is developed. It provides the capability to simulate RGB and multi-spectral images. These simulated datasets with “ground truth” can be used as benchmark for a variety of applications in remote sensing, forest investigation and computer graphic.
机译:重建现实的大规模3D森林场景在视觉表示和科学研究中具有潜在的应用。具有清晰描述的树枝和树叶的森林场景可以提供对光和冠层之间相互作用的更准确的解释。在这项研究中,提出了一种大规模的3D森林场景重建和仿真方法。使用从等速方程导出的参数生成一系列详细程度较高的单棵树,这些参数将绘图叶面积指数(LAI)填充到每棵单棵树中。根据机载激光扫描(ALS)数据,通过分水岭分割算法提取每棵树的高度,树冠直径和位置。最后,开发了基于光线跟踪的仿真系统。它提供了模拟RGB和多光谱图像的功能。这些具有“地面真实性”的模拟数据集可以用作遥感,森林调查和计算机图形学中各种应用的基准。

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