Guaranteed ray intersections with implicit surfaces

D. Kalra, A. Barr
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引用次数: 218

Abstract

In this paper, we present a robust and mathematically sound ray-intersection algorithm for implicit surfaces. The algorithm is guaranteed to numerically find the nearest intersection of the surface with a ray, and is guaranteed not to miss fine features of the surface. It does not require fine tuning or human choice of interactive parameters. Instead, it requires two upper bounds: "L" that limits the net rate of change of the implicit surface function f(x,y,z) and "G" that limits the rate of change of the gradient. We refer to an implicit surface with these rate limits as an "LG-implicit surface."Existing schemes to intersect a ray with an implicit surface have typically been guaranteed to work only for a limited set of implicit functions, such as quadric surfaces or polynomials, or else have been ad-hoc and have not been guaranteed to work. Our technique significantly extends the ability to intersect rays with implicit surfaces in a guaranteed fashion.
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保证射线与隐式曲面相交
在本文中,我们提出了一种鲁棒且数学上合理的隐式曲面射线相交算法。该算法保证在数值上找到与射线最近的曲面交点,并保证不遗漏曲面的精细特征。它不需要微调或人工选择交互参数。相反,它需要两个上界:“L”限制隐式表面函数f(x,y,z)的净变化率,“G”限制梯度的变化率。我们将具有这些速率极限的隐式曲面称为“lg隐式曲面”。现有的射线与隐式曲面相交的方案通常被保证只适用于有限的隐式函数集,如二次曲面或多项式,或者是特别的,不能保证工作。我们的技术显著地扩展了以保证的方式使光线与隐式表面相交的能力。
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