Using the witness method to detect rigid subsystems of geometric constraints in CAD

D. Michelucci, P. Schreck, Simon E. B. Thierry, Christoph Fünfzig, J. Génevaux
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引用次数: 7

Abstract

This paper deals with the resolution of geometric constraint systems encountered in CAD-CAM. The main results are that the witness method can be used to detect that a constraint system is over-constrained and that the computation of the maximal rigid subsystems of a system leads to a powerful decomposition method. In a first step, we recall the theoretical framework of the witness method in geometric constraint solving and extend this method to generate a witness. We show then that it can be used to incrementally detect over-constrainedness. We give an algorithm to efficiently identify all maximal rigid parts of a geometric constraint system. We introduce the algorithm of W-decomposition to identify all rigid subsystems: it manages to decompose systems which were not decomposable by classical combinatorial methods.
在CAD中应用见证法检测几何约束的刚性子系统
本文讨论了CAD-CAM中遇到的几何约束系统的解析问题。主要结果是见证法可以用来检测约束系统是否过度约束,以及系统最大刚性子系统的计算导致了一种强大的分解方法。首先,我们回顾了几何约束求解中见证人方法的理论框架,并对该方法进行了扩展以生成见证人。然后我们表明,它可以用于增量检测过度约束。给出了一种有效识别几何约束系统中所有最大刚性部分的算法。我们引入了w分解算法来识别所有的刚性子系统,它可以分解经典组合方法无法分解的系统。
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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