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Tree Axis Structure Simplification Correspondent to Botanical Properties

机译:树轴结构简化对应于植物特性

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In order to describe the tree topology more efficiently for modeling and biological calculation, a ternary tree data structure is introduced in this paper. The data structure of a ternary tree and the topological structure of a real tree constitute a mapping, which presents the biological properties of plant axes and the relationships among plant axes of different tiers. The simplification of tree axes has explicit botanical significance. Biological properties are considered, and the fidelity is kept as high as possible between the simplified tree axes and biological features such as canopy envelope’s shape, volume and the biomass distribution inside. This paper applies the ternary tree data structure and the tree axis simplification method to simplify tree modeling and therefore generates Levels of Detail (LOD) models. Fast display of the LOD models is achieved with graphics hardware acceleration. Experimental results indicate that the introduced structural simplification is highly correspondent to a real tree’s botanical properties, keeps visual equivalence in a satisfactory degree, and is smooth in the transition between levels of detail of models. Furthermore, the approach is advantageous for graphics hardware acceleration.
机译:为了更有效地描述建模和生物学计算的树拓扑,本文介绍了三元树数据结构。三元树的数据结构和真实树的拓扑结构构成了一种映射,这提出了植物轴的生物学特性和不同层的植物轴之间的关系。树轴的简化具有明确的植物意义。考虑生物特性,并且在简化的树木轴和生物学特征之间保持高度的保真度,例如顶篷封闭形状,体积和生物量分布。本文适用三元树数据结构和树轴简化方法来简化树建模,从而生成细节级别(LOD)模型。通过图形硬件加速实现LOD型号的快速显示。实验结果表明,介绍的结构简化对真实树的植物特性高度对应,保持了令人满意的程度,并且在模型细节水平之间的过渡中平滑。此外,该方法对于图形硬件加速是有利的。

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