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Frame-to-frame coherent animation with two-pass radiosity

机译:具有两遍光能传递的帧到帧连贯动画

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This paper proposes an efficient method for the production of high quality radiosity solutions which uses an a priori knowledge of the dynamic properties of the scene to exploit temporal coherence. The method is based on a two-pass strategy that provides user-control on the final frame quality. In the first pass, it computes a coarse global solution of the radiosities along a time interval and then, in the second pass, it performs a frame-to-frame incremental gathering step using hardware graphic accelerators. Computing cost is thus reduced because the method takes advantage of frame-to-frame coherence by identifying the changes produced by dynamic objects and by decoupling them from computations that remain unchanged. The input data is a dynamic model of the environment through a period of time corresponding to the same camera recording. The method proceeds by incrementally updating two data structures: a space-time hierarchical radiosity solution for a given interval of time and a hierarchical tree of textures representing the space-time final illumination of the visible surfaces. These data structures are computed for a given viewpoint, either static or dynamic. The main contribution of this work is the efficient construction of the texture tree by identifying the changes produced by dynamic objects and by only recomputing these changes.
机译:本文提出了一种生产高质量辐射解决方案的有效方法,该方法利用对场景动态特性的先验知识来利用时间相干性。该方法基于两遍策略,该策略为最终帧质量提供了用户控制。在第一遍中,它计算沿时间间隔的光能传递的粗略全局解,然后在第二遍中,它使用硬件图形加速器执行帧到帧的增量收集步骤。由于该方法通过识别动态对象产生的变化并将其与保持不变的计算分离,从而利用了帧到帧的一致性,因此降低了计算成本。输入数据是在一段时间内对应于同一摄像机记录的环境动态模型。该方法通过递增地更新两个数据结构来进行:对于给定的时间间隔的时空分层辐射度解决方案和代表可见表面的时空最终照明的纹理的分层树。这些数据结构是针对给定的静态或动态视点计算的。这项工作的主要贡献是通过识别动态对象产生的更改并仅重新计算这些更改来有效构造纹理树。

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