Progressive encoding of complex isosurfaces

Haeyoung Lee, M. Desbrun, P. Schröder
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引用次数: 54

Abstract

We present a progressive encoding technique specifically designed for complex isosurfaces. It achieves better rate distortion performance than all standard mesh coders, and even improves on all previous single rate isosurface coders. Our novel algorithm handles isosurfaces with or without sharp features, and deals gracefully with high topologic and geometric complexity. The inside/outside function of the volume data is progressively transmitted through the use of an adaptive octree, while a local frame based encoding is used for the fine level placement of surface samples. Local patterns in topology and local smoothness in geometry are exploited by context-based arithmetic encoding, allowing us to achieve an average of 6.10 bits per vertex (b/v) at very low distortion. Of this rate only 0.65 b/v are dedicated to connectivity data: this improves by 24% over the best previous single rate isosurface encoder.
复杂等值面的渐进式编码
我们提出了一种专门为复杂等值面设计的渐进式编码技术。它实现了比所有标准网格编码器更好的速率失真性能,甚至改进了所有以前的单速率等面编码器。我们的新算法处理具有或不具有尖锐特征的等值面,并优雅地处理高拓扑和几何复杂性。体数据的内/外函数通过使用自适应八叉树逐步传输,而基于局部帧的编码用于表面样本的精细水平放置。基于上下文的算术编码利用了拓扑中的局部模式和几何中的局部平滑性,使我们能够在非常低的失真下实现每个顶点平均6.10比特(b/v)。在这个速率中,只有0.65 b/v用于连接数据:这比以前最好的单速率等面编码器提高了24%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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