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A sample-based method for computing the radiosity inverse matrix

机译:一种基于样本的计算光能逆矩阵的方法

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摘要

The radiosity problem can be expressed as a linear system, where the light transport interactions of all patches of the scene are considered. Due to the amount of computation required to solve the system, the whole matrix is rarely computed and iterative methods are used instead. In this paper we introduce a new algorithm to obtain an approximation of the radiosity inverse matrix. The method is based on the calculation of a random sample of rows of the form factor matrix. The availability of this matrix allows us to reduce the radiosity calculation costs, speeding up the radiosity process. This is useful in applications where the radiosity equation must be solved thousands of times for different light configurations. We apply it to solve inverse lighting problems, in scenes up to 170 K patches. The optimization process used finds optimal solutions in nearly interactive times, which improves on previous work.
机译:光能传递问题可以表示为线性系统,其中考虑了场景的所有面片的光传输相互作用。由于求解该系统需要大量的计算,因此很少计算整个矩阵,而是使用迭代方法。在本文中,我们介绍了一种新的算法来获得光能传递逆矩阵的近似值。该方法基于对形状因子矩阵的行的随机样本的计算。此矩阵的可用性使我们能够减少光能传递的计算成本,从而加快光能传递的过程。这对于必须针对不同的灯光配置将光能传递方程求解数千次的应用很有用。我们将其用于解决高达170 K色块的场景中的逆向照明问题。使用的优化过程可以在几乎交互的时间内找到最佳解决方案,这比以前的工作有所改进。

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