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An Analytical Approach to Single Scattering for Anisotropic Media and Light Distributions

机译:各向异性介质和光分布单散射的分析方法

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Despite their numerous applications, efficiently rendering participating media remains a challenging task due to the intricacy of the radiative transport equation. While numerical techniques remain the method of choice for addressing complex problems, a closedform solution to the air-light integral in optically thin isotropic media was recently derived. In this paper, we extend this work and present a novel analytical approach to single scattering from point light sources in homogeneous media. We propose a combined formulation of the air-light integral which allows both anisotropic phase functions and light distributions to be adequately handled. The technique relies neither on precomputation nor on storage, and we provide a robust and efficient implementation allowing for an explicit control on the accuracy of the results. Finally, the performance characteristics of the method on graphics hardware are evaluated and demonstrate its suitability to real-time applications.
机译:尽管有许多应用,但由于辐射传输方程的复杂性,有效地渲染参与媒体仍然是一个具有挑战性的任务。虽然数值技术仍然是解决复杂问题的选择方法,但最近衍生光学薄的各向同性介质中的空气光整体的闭合变形溶液。在本文中,我们延长了这项工作,并提出了一种新的分析方法来从均匀介质中的点光源散射。我们提出了一种组合的空气光积分,其允许充分处理各向异性相位函数和光分布。该技术既不依赖于预压缩,也不依赖于存储,我们提供了一种强大而有效的实现,允许显式控制结果的准确性。最后,评估图形硬件方法的性能特征,并展示其适用于实时应用。

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