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首页> 外文期刊>ACM Transactions on Graphics >Theory, Analysis and Applications of 2D Global Illumination
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Theory, Analysis and Applications of 2D Global Illumination

机译:二维全局照明的理论,分析与应用

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We investigate global illumination in 2D and show how this simplified problem domain leads to practical insights for 3D rendering. We first derive a full theory of 2D light transport by introducing 2D analogs to radiometric quantities such as flux and radiance, and deriving a 2D rendering equation. We use our theory to show how to implement algorithms such as Monte Carlo raytracing, path tracing, irradiance caching, and photon mapping in 2D, and demonstrate that these algorithms can be analyzed more easily in this domain while still providing insights for 3D rendering. We apply our theory to develop several practical improvements to the irradiance caching algorithm. We perform a full second-order analysis of diffuse indirect illumination, first in 2D, and then in 3D by deriving the irradiance Hessian, and show how this leads to increased accuracy and performance for irradiance caching. We propose second-order Taylor expansion from cache points, which results in more accurate irradiance reconstruction. We also introduce a novel error metric to guide cache point placement by analyzing the error produced by irradiance caching. Our error metric naturally supports anisotropic reconstruction and, in our preliminary study, resulted in an order of magnitude less error than the "split-sphere" heuristic when using the same number of cache points.
机译:我们研究2D中的全局照明,并显示此简化的问题域如何导致3D渲染的实用见解。我们首先通过将2D类似物引入诸如辐射通量和辐射率之类的辐射量中,并推导2D渲染方程,来得出2D光传输的完整理论。我们使用我们的理论来展示如何在2D中实现诸如蒙特卡洛射线追踪,路径追踪,辐照度缓存和光子映射之类的算法,并证明可以在此领域中更轻松地分析这些算法,同时仍然为3D渲染提供见解。我们运用我们的理论对辐照度缓存算法进行了一些实际的改进。我们通过导出辐照度Hessian,首先在2D中然后在3D中执行漫反射间接照明的完整二阶分析,并说明这如何提高辐照度缓存的准确性和性能。我们建议从缓存点进行二阶泰勒展开,这样可以更精确地重建辐照度。我们还介绍了一种新颖的错误度量标准,通过分析辐照度缓存产生的错误来指导缓存点的放置。我们的误差度量自然支持各向异性重建,并且在我们的初步研究中,当使用相同数量的缓存点时,导致的误差比“分裂域”启发式方法小一个数量级。

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