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Adequate inner bound for geometric modeling with compact field functions

机译:具有紧凑型场函数的几何建模具有足够的内界

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Recent advances in implicit surface modeling now provide highly controllable blending effects. These effects rely on the field functions of R~3→R in which the implicit surfaces are defined. In these fields, there is an outside part in which blending is defined and an inside part. The implicit surface is the interface between these two parts. As recent operators often focus on blending, most efforts have been made on the outer part of field functions and little attention has been paid on the inner part. Yet, the inner fields are important as soon as difference and intersection operators are used. This makes its quality as crucial as the quality of the outside. In this paper, we analyze these shortcomings, and deduce new constraints on field functions such that differences and intersections can be seamlessly applied without introducing discontinuities or field distortions. In particular, we show how to adapt state of the art gradient-based union and blending operators to our new constraints. Our approach enables a precise control of the shape of both the inner or outer field boundaries. We also introduce a new set of asymmetric operators tailored for the modeling of fine details while preserving the integrity of the resulting fields.
机译:隐式曲面建模的最新进展现在提供了高度可控的混合效果。这些效果依赖于R〜3→R的场函数,其中定义了隐式曲面。在这些字段中,有一个外部部分,其中定义了混合,一个内部部分。隐式表面是这两部分之间的界面。由于最近的操作员经常将注意力集中在混合上,所以大多数工作都在现场功能的外部进行,而对内部的关注则很少。但是,一旦使用了差分运算符和交叉运算符,内部字段就很重要。这使得其质量与外部质量同样重要。在本文中,我们分析了这些缺点,并得出了对场函数的新约束,以便可以无缝地应用差值和交集而不会引入不连续性或场失真。特别是,我们展示了如何使最新的基于梯度的并集和混合运算符适应新的约束。我们的方法可以精确控制内部或外部场边界的形状。我们还引入了一组新的非对称运算符,这些运算符是为精细细节建模量身定制的,同时保留了结果字段的完整性。

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