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All-frequency interactive relighting of translucent objects with single and multiple scattering

机译:具有单个和多个散射的半透明物体的全频交互式重新照明

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We present a technique, based on precomputed light transport, for interactive rendering of translucent objects under all-frequency environment maps. We consider the complete BSSRDF model proposed by Jensen et al. [2001], which includes both single and diffuse multiple scattering components. The challenge is how to efficiently precompute all-frequency light transport functions due to subsurface scattering. We apply the two-pass hierarchical technique by Jensen et al. [2002] in the space of non-linearly approximated transport vectors, which allows us to efficiently evaluate transport vectors due to diffuse multiple scattering. We then include an approximated single scattering term in the precomputation, which previous interactive systems have ignored. For an isotropic phase function, this approximation produces a diffuse transport vector per vertex, and is combined with the multiple scattering component. For a general phase function, we introduce a technique from BRDF rendering to factor the phase function using a separable decomposition to allow for view-dependent rendering. We show that our rendering results qualitatively match the appearance of translucent objects, achieving a high level of realism at interactive rates.
机译:我们提出了一种基于预计算光传输的技术,用于在全频环境图下交互式渲染半透明物体。我们考虑了Jensen等人提出的完整BSSRDF模型。 [2001],其中既包含单个散射元素,又包含分散的多个散射元素。面临的挑战是如何有效地预先计算由于地下散射而产生的全频光传输函数。我们应用了Jensen等人的两遍分层技术。 [2002]在非线性近似的运输矢量的空间,这使我们能够有效地评估由于弥散多重散射运输矢量。然后,我们在预计算中包括一个近似的单个散射项,以前的交互式系统已忽略了该项。对于各向同性的相位函数,此近似值会在每个顶点生成一个扩散传输矢量,并与多重散射分量结合在一起。对于一般的相位函数,我们从BRDF渲染中引入了一种技术,该技术使用可分离的分解来分解相位函数,以实现与视图相关的渲染。我们证明了我们的渲染结果在质量上与半透明对象的外观匹配,并以交互速率达到了很高的真实感。

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