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首页> 外文期刊>The Visual Computer >Optimized Edgebreaker encoding for large and regular triangle meshes
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Optimized Edgebreaker encoding for large and regular triangle meshes

机译:针对大型和规则三角形网格的优化Edgebreaker编码

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We present a technique aiming to improve the compression of the Edgebreaker CLERS string for large and regular meshes, where regularity is understood as the compactness of the distribution of vertex degrees. Our algorithm uses a specially designed context-based coding to compress the CLERS sequence. It is exceptionally simple to implement and can easily be incorporated into any existing Edgebreaker implementation which uses the Spirale Reversi algorithm for decompression. Even for irregular meshes, it does not carry considerable overhead when compared to the original Edgebreaker encoding. Experimental results show that our procedure is very fast (600 000 triangles per second on a PIII 650 MHz for decompression) and leads to compression rates which are, in most cases, superior to those previously reported for large meshes of high regularity.
机译:我们提出了一种旨在改善Edgebreaker CLERS字符串对大型和规则网格的压缩的技术,其中规则性被理解为顶点度分布的紧凑性。我们的算法使用经过特殊设计的基于上下文的编码来压缩CLERS序列。它的实现极其简单,可以轻松地合并到任何使用Spirale Reversi算法进行解压缩的Edgebreaker实现中。即使对于不规则的网格,与原始Edgebreaker编码相比,它也不会带来可观的开销。实验结果表明,我们的过程非常快(在PIII 650 MHz上每秒60万个三角形进行解压缩),并导致压缩率在大多数情况下优于先前报道的高规则性大网格的压缩率。

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