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A wavelet-based framework for acquired radiometric quantity representation and accurate physical rendering

机译:基于小波的框架,用于获取辐射量表示和精确的物理渲染

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In this paper, we present a framework based on a generic representation, which is able to handle most of the radiometric quantities required by global illumination software. A sparse representation in the wavelet space is built using the separation between the directional and the wavelength dependencies of such radiometric quantities. Particularly, we show how to use this representation for spectral power distribution, spectral reflectance and phase function measurements modeling. Then, we explain how the representation is useful for performing spectral rendering. On the one hand, it speeds up spectral path tracing by importance sampling to generate reflected directions and by avoiding expensive computations usually done on-the-fly. On the other hand, it allows efficient spectral photon mapping, both in terms of memory and speed. We also show how complex light emission from real luminaires can be efficiently sampled to emit photons with our numerical model.
机译:在本文中,我们提出了一个基于通用表示的框架,该框架能够处理全球照明软件所需的大多数辐射量。小波空间中的稀疏表示是使用此类辐射量的方向性和波长相关性之间的分隔来建立的。特别是,我们展示了如何将这种表示形式用于光谱功率分布,光谱反射率和相位函数测量建模。然后,我们解释该表示形式如何用于执行光谱渲染。一方面,它通过重要采样来生成反射方向并避免通常在运行中进行的昂贵计算,从而加快了频谱路径的跟踪速度。另一方面,它在存储和速度方面都允许有效的光谱光子映射。我们还展示了如何使用我们的数值模型有效地采样来自真实照明设备的复杂光发射光子。

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