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Hierarchical 3D mechanical parts matching based-on adjustable geometry and topology similarity measurements 被引量:1

Hierarchical 3D mechanical parts matching based-on adjustable geometry and topology similarity measurements
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摘要 A hierarchical scheme of feature-based model similarity measurement was proposed,named CSG_D2,in which both geometry similarity and topology similarity were applied.The features of 3D mechanical part were constructed by a series of primitive features with tree structure,as a form of constructive solid geometry(CSG) tree.The D2 shape distributions of these features were extracted for geometry similarity measurement,and the pose vector and non-disappeared proportion of each leaf node were gained for topology similarity measurement.Based on these,the dissimilarity between the query and the candidate was accessed by level-by-level CSG tree comparisons.With the adjustable weights,our scheme satisfies different comparison emphasis on the geometry or topology similarity.The assessment results from CSG_D2 demonstrate more discriminative than those from D2 in the analysis of precision-recall and similarity matrix.Finally,an experimental search engine is applied for mechanical parts reuse by using CSG_D2,which is convenient for the mechanical design process. A hierarchical scheme of feature-based model similarity measurement was proposed, named CSG_D2, in which both geometry similarity and topology similarity were applied. The features of 3D mechanical part were constructed by a series of primitive features with tree structure, as a form of constructive solid geometry (CSG) tree. The D2 shape distributions of these features were extracted for geometry similarity measurement, and the pose vector and non-disappeared proportion of each leaf node were gained for topology similarity measurement. Based on these, the dissimilarity between the query and the candidate was accessed by level-by-level CSG tree comparisons. With the adjustable weights, our scheme satisfies different comparison emphasis on the geometry or topology similarity. The assessment results from CSG_D2 demonstrate more discriminative than those from D2 in the analysis of precision-recall and similarity matrix. Finally, an experimental search engine is applied for mechanical parts reuse by using CSG_D2, which is convenient for the mechanical design process.
作者 马嵩华 田凌
出处 《Journal of Central South University》 SCIE EI CAS 2014年第1期89-99,共11页 中南大学学报(英文版)
基金 Project(51175287)supported by the National Natural Science Foundation of China Project(2006AA04Z112)supported by National High Technology Research and Development Program of China
关键词 拓扑相似性 几何形状 机械零部件 可调 3D 构造实体几何 相似性度量 测量 D2 shape distribution CSG tree geometry dissimilarity topology dissimilarity adjustable weight
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