Scale-space representation of 3D models and topological matching

Dmitriy Bespalov, A. Shokoufandeh, W. Regli, Wei Sun
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引用次数: 61

Abstract

Reeb graphs have been shown to be effective for topology matching of 3D objects. Their effectiveness breaks down, however, when the individual models become very geometrically and topologically detailed---as is the case for complex machined parts. The result is that Reeb graph techniques, as developed for matching general shape and computer graphics models, produce poor results when directly applied to create engineering databases.This paper presents a framework for shape matching through scale-space decomposition of 3D models. The algorithm is based on recent developments in efficient hierarchical decomposition of metric data using its spectral properties. Through spectral decomposition, we reduce the problem of matching to that of computing a mapping and distance measure between vertex-labeled rooted trees. We use a dynamic programming scheme to compute distances between trees corresponding to solid models. Empirical evaluation of the algorithm on an extensive set of 3D matching trials demonstrates both robustness and efficiency of the overall approach.
三维模型的比例空间表示和拓扑匹配
Reeb图已被证明是三维物体拓扑匹配的有效方法。然而,当单个模型在几何和拓扑结构上变得非常详细时,就像复杂的机械零件一样,它们的有效性就会失效。结果是,为匹配一般形状和计算机图形模型而开发的Reeb图技术在直接应用于创建工程数据库时产生了糟糕的结果。提出了一种基于比例空间分解的三维模型形状匹配框架。该算法基于利用其谱特性对度量数据进行有效分层分解的最新进展。通过谱分解,我们将匹配问题简化为计算顶点标记的根树之间的映射和距离度量问题。我们使用动态规划方案来计算与实体模型相对应的树之间的距离。在一组广泛的3D匹配试验中对该算法进行了实证评估,证明了整个方法的鲁棒性和效率。
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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