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Path Integration for Light Transport in Volumes

机译:批量整合轻型运输的路径集成

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摘要

Simulating the transport of light in volumes such as clouds or objects with subsurface scattering is computationally expensive. We describe an approximation to such transport using path integration. Unlike the more commonly used diffusion approximation, the path integration approach does not explicitly rely on the assumption that the material within the volume is dense. Instead, it assumes the phase function of the volume material is strongly forward scattering and uniform throughout the medium, an assumption that is often the case in nature. We show that this approach is useful for simulating subsurface scattering and scattering in clouds.
机译:用地下散射来模拟光在诸如云或物体之类的体积中的传输在计算上是昂贵的。我们使用路径积分来描述这种运输的近似值。与更常用的扩散近似不同,路径积分方法不明确地依赖体积内材料密集的假设。取而代之的是,它假设体材料的相函数是强烈的前向散射,并且在整个介质中是均匀的,这一假设在自然界中常常是这样。我们表明,该方法对于模拟地下散射和云中的散射非常有用。

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