使用形状分布来比较实体模型

C. Y. Ip, Daniel Lapadat, Leonard Sieger, W. Regli
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引用次数: 218

摘要

我们最近的工作描述了如何使用特征和拓扑信息来比较三维实体模型。在这项工作中,我们描述了一种基于形状分布来比较实体模型的新方法。形状分布函数在计算机图形学和计算机视觉领域中很常见。形状分布的典型用途是比较2-D对象,例如从成像设备(相机和其他计算机视觉设备)获得的对象。最近的工作应用形状分布度量来比较图形社区中发现的近似模型,如多边形网格、面表示和虚拟现实建模语言(VRML)模型。本文探讨了如何使这些技术适应于三维实体模型的比较,例如那些由商业CAD系统产生的模型。我们简要回顾了分布函数的形状匹配,并提出了一种匹配实体模型的方法。首先,我们展示了如何扩展基本的基于分布的技术来处理已导出为VRML格式的CAD数据。这些扩展处理出现在机械CAD数据中的特定几何形状。其次,我们描述了如何使用形状分布来直接询问实体模型。最后,我们将展示如何将这些技术组合在一起,为大型异构CAD数据库(The National Design Repository)提供“通过示例查询”的接口。我们工作的一个重要贡献是对不同CAD系统产生的CAD模型进行一致的、基于工程内容的比较的系统技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using shape distributions to compare solid models
Our recent work has described how to use feature and topology in-formation to compare 3-D solid models. In this work we describe a new method to compare solid models based on shape distributions. Shape distribution functions are common in the computer graphics and computer vision communities. The typical use of shape dis-tributions is to compare 2-D objects, such as those obtained from imaging devices (cameras and other computer vision equipment). Recent work has applied shape distribution metrics for compari-son of approximate models found in the graphics community, such as polygonal meshes, faceted representation, and Virtual Reality Modeling Language (VRML) models. This paper examines how to adapt these techniques to comparison of 3-D solid models, such as those produced by commercial CAD systems. We provide a brief review of shape matching with distribution functions and present an approach to matching solid models. First, we show how to ex-tend basic distribution-based techniques to handle CAD data that has been exported to VRML format. These extensions address specific geometries that occur in mechanical CAD data. Second, we describe how to use shape distributions to directly interrogate solid models. Lastly, we show how these techniques can be put together to provide a "query by example" interface to a large, het-erogeneous, CAD database: The National Design Repository. One significant contribution of our work is the systematic technique for performing consistent, engineering content-based comparisons of CAD models produced by different CAD systems.
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