QAS: Real-Time Quadratic Approximation of Subdivision Surfaces

T. Boubekeur, C. Schlick
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引用次数: 24

Abstract

We introduce QAS, an efficient quadratic approximation of subdivision surfaces which offers a very close appearance compared to the true subdivision surface but avoids recursion, providing at least one order of magnitude faster rendering. QAS uses enriched polygons, equipped with edge vertices, and replaces them on-the-fly with low degree polynomials for interpolating positions and normals. By systematically projecting the vertices of the input coarse mesh at their limit position on the subdivision surface, the visual quality of the approximation is good enough for imposing only a single subdivision step, followed by our patch fitting, which allows real-time performances for million polygons output. Additionally, the parametric nature of the approximation offers an efficient adaptive sampling for rendering and displacement mapping. Last, the hexagonal support associated to each coarse triangle is adapted to geometry processors.
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细分曲面的实时二次逼近
我们引入了QAS,这是一种高效的二次近似细分曲面,与真正的细分曲面相比,它提供了非常接近的外观,但避免了递归,提供了至少一个数量级的渲染速度。QAS使用丰富的多边形,配备边缘顶点,并用低次多项式替换它们,用于插值位置和法线。通过系统地将输入粗网格的顶点投影到细分表面的极限位置,近似的视觉质量足以只施加一个细分步骤,然后是我们的补丁拟合,这允许数百万个多边形输出的实时性能。此外,近似的参数特性为渲染和位移映射提供了有效的自适应采样。最后,将与每个粗三角形相关联的六边形支持适应于几何处理器。
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