位形空间障碍物的生成:运动球体的情况

C. Bajaj, Myung-Soo Kim
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引用次数: 48

摘要

给出了由球在障碍物之间运动而产生的位形空间障碍物边界的代数算法。障碍物的边界由代数曲面块给出。给出了隐式曲面补丁和参数曲面补丁的算法。同时考虑了凸障碍和非凸障碍。在凸障碍物的情况下,卷积面的拓扑结构与障碍物的面、边和顶点的邻接图相同。此外,在卷积面中没有冗余。在非凸障碍物的情况下,可能会出现卷积上的冗余。从卷积面的交集和自交集中可以检测到这些冗余。简单固体也被考虑。>
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generation of configuration space obstacles: the case of a moving sphere
Algebraic algorithms are presented for generating the boundary of configuration space obstacles arising from the motion of a sphere among obstacles. The boundaries of the obstacles are given by patches of algebraic surfaces. Algorithms are given for both implicit and parametric surface patches. Both convex and nonconvex obstacles are considered. In the case of convex obstacles, the topology of convolution faces is the same as the adjacency graph of faces, edges, and vertices of the obstacle. Further, there are no redundancies in the convolution faces. Redundancies on the convolution can occur in the case of nonconvex obstacles. It is possible to detect these redundancies from the the intersections and self-intersections of convolution faces. Simple solids are also considered. >
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