首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2015 >HIERARCHICAL PRIMITIVE SURFACE CLASSIFICATION FROM TRIANGULATED SOLIDS FOR DEFINING PART-TO-PART DEGREES OF FREEDOM
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HIERARCHICAL PRIMITIVE SURFACE CLASSIFICATION FROM TRIANGULATED SOLIDS FOR DEFINING PART-TO-PART DEGREES OF FREEDOM

机译:基于三角类的原始平面分类来定义部分对部分的自由度

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Mesh segmentation is the process of organizing a set of data points into connected areas defined by known surface primitives or surface equations. Our approach is a hierarchical method based on clustering and Mamdani's fuzzification system. First, a clustering algorithm is used to isolate regions of small and irregular oriented triangles, which make up a large portion of the total polygonal faces. Then, using fuzzification rule sets, the remaining triangles are made into meaningful primitives: cylinder, cone, sphere and flat. The end goal of this work is to use the primitives to define the degrees of freedom between mating parts in an assembly when such information is unknown or lost. The result of this process has proven to be accurate with well-defined borders with no need of additional post-processing steps.
机译:网格分割是将一组数据点组织到由已知曲面图元或曲面方程式定义的连接区域中的过程。我们的方法是基于聚类和Mamdani的模糊化系统的分层方法。首先,使用聚类算法来隔离小三角形和不规则三角形的区域,这些三角形占总多边形面的很大一部分。然后,使用模糊化规则集,将其余的三角形制作为有意义的图元:圆柱,圆锥,球面和平面。这项工作的最终目标是在这些信息未知或丢失时,使用基元来定义装配中的配对零件之间的自由度。事实证明,此过程的结果准确无误,且边界清晰,无需其他后处理步骤。

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