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Accurate Appearance Preserving Prefiltering for Rendering Displacement-Mapped Surfaces

机译:渲染外观映射表面的精确外观保留预过滤

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Prefiltering the reflectance of a displacement-mapped surface while preserving its overall appearance is challenging, as smoothing a displacement map causes complex changes of illumination effects such as shadowing-masking and interreflection. In this paper, we introduce a new method that prefilters displacement maps and BRDFs jointly and constructs SVBRDFs at reduced resolutions. These SVBRDFs preserve the appearance of the input models by capturing both shadowing-masking and interreflection effects. To express our appearance-preserving SVBRDFs efficiently, we leverage a new representation that involves spatially varying NDFs and a novel scaling function that accurately captures micro-scale changes of shadowing, masking, and interreflection effects. Further, we show that the 6D scaling function can be factorized into a 2D function of surface location and a 4D function of direction. By exploiting the smoothness of these functions, we develop a simple and efficient factorization method that does not require computing the full scaling function. The resulting functions can be represented at low resolutions (e.g., 4(2) for the spatial function and 15(4) for the angular function), leading to minimal additional storage. Our method generalizes well to different types of geometries beyond Gaussian surfaces. Models prefiltered using our approach at different scales can be combined to form mipmaps, allowing accurate and anti-aliased level-of-detail (LoD) rendering.
机译:在保留位移映射表面的整体外观的同时,对其进行预过滤具有挑战性,因为对位移贴图进行平滑处理会导致照明效果的复杂变化,例如阴影遮罩和互反射。在本文中,我们介绍了一种新方法,该方法可以联合对位移图和BRDF进行预滤波,并以降低的分辨率构造SVBRDF。这些SVBRDF通过捕获阴影掩蔽和相互反射效果来保留输入模型的外观。为了有效地表达保留外观的SVBRDF,我们利用涉及空间变化NDF的新表示形式和新颖的缩放功能,该功能可以精确捕获阴影,遮罩和互反射效果的微观变化。此外,我们表明6D缩放函数可以分解为表面位置的2D函数和方向的4D函数。通过利用这些函数的平滑度,我们开发了一种简单而有效的因式分解方法,该方法不需要计算完整的缩放函数。所得的函数可以低分辨率表示(例如,空间函数为4(2),角度函数为15(4)),从而导致最少的额外存储。我们的方法很好地概括了除高斯曲面之外的不同类型的几何图形。使用我们的方法在不同比例下预先过滤的模型可以组合起来以形成mipmap,从而可以进行精确且抗锯齿的细节层次(LoD)渲染。

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