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Orebody Modeling from Non-Parallel Cross Sections with Geometry Constraints

机译:具有几何约束的非平行横截面的矿体建模

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In this paper, we present an improved approach to the surface reconstruction of orebody from sets of interpreted cross sections that allows for shape control with geometry constraints. The soft and hard constraint rules based on adaptive sampling are proposed. As only the internal and external position relations of sections are calculated, it is unnecessary to estimate the normal directions of sections. Our key contribution is proposing an iterative closest point correction algorithm. It can be used for iterative correction of the distance field based on the constraint rules and the internal and external position relations of the model. We develop a rich variety of geometry constraints to dynamically control the shape trend of orebody for structural geologists. As both of the processes of interpolation and iso-surface extraction are improved, the performance of this method is excellent. Combined with the interactive tools of constraint rules, our approach is shown to be effective on non-trivial sparse sections. We show the reconstruction results with real geological datasets and compare the method with the existing reconstruction methods.
机译:在本文中,我们提出了一种改进的方法,用于从解释的横截面集合中进行矿体的表面重建,该方法允许进行具有几何约束的形状控制。提出了基于自适应采样的软约束和硬约束规则。由于仅计算截面的内部和外部位置关系,因此无需估计截面的法线方向。我们的主要贡献是提出了迭代最近点校正算法。它可以基于约束规则以及模型的内部和外部位置关系用于距离场的迭代校正。我们开发了各种各样的几何约束来为结构地质学家动态控制矿体的形状趋势。由于改进了插值和等值面提取这两个过程,因此该方法的性能非常好。结合约束规则的交互式工具,我们的方法显示出对非平凡稀疏部分有效。我们显示了具有真实地质数据集的重建结果,并将该方法与现有的重建方法进行了比较。

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