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Generating spatial distributions for multilevel models of plant communities

机译:为植物社区多级模型生成空间分布

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The simulation and visualization of large groups of plants has many applications. The extreme visual complexity of the resulting scenes can be captured using multilevel models. For example, in two-level models, plant distributions may be determined using coarse plant representations, and realistic visualizations may be obtained by substituting detailed plant models for the coarse ones. In this paper, we focus on the coarse aspect of modeling, the specification of plant distribution. We consider two classes of models: local-to-global models, rooted in the individual-based ecosystem simulations, and inverse, global-to-local models, in which positions of individual plants are inferred from a given distribution of plant densities. We extend previous results obtained using both classes of models with additional phenomena, including clustering and succession of plants. We also introduce the formalism of multiset L-systems to formalize the individual-based simulation models.
机译:大型植物的模拟和可视化具有许多应用。可以使用多级模型捕获生成的场景的极端视觉复杂性。例如,在两级模型中,可以使用粗植物表示来确定工厂分布,并且可以通过代替粗略的植物模型来获得现实可视化。在本文中,我们专注于建模的粗糙方面,植物分布规范。我们考虑两类模型:本地到全球模型,植根于基于个人的生态系统模拟,逆,全局到本地模型,其中从给定的植物密度分布推断各个植物的位置。我们扩展了使用具有额外现象的模型获得的先前结果,包括植物的聚类和连续。我们还介绍了多立方L-Systems的形式主义,以正规化基于个性的仿真模型。

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