A novel algorithm on computing intersections of two surfaces of revolution based on spherical decomposition

Jinyuan Jia, G. Baciu, K. Kwok
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引用次数: 1

Abstract

A novel algorithm for computing RSIC intersection curves of two surfaces of revolution is presented; it subdivides a surface of revolution into a collection of coaxial spherical strips, by subdividing its generatrix into a collection of C/sup 0/ and C/sup 1/ coaxial circular arcs correspondingly. So the intersection problem of two surfaces of revolution is reduced to an intersection problem of two spherical stripes, and RSIC is approximated as a piecewise C/sup 0/ and C/sup 1/ circular, which is quite convenient for some CAD applications. Cylindrical bounding shell is used for computing valid intersection interval VII to avoid the unnecessary intersection computation efficiently. Finally, we give a simple algorithm of tracing RSIC for classification and a unified rational Bezier representation to RSIC.
基于球面分解的两旋转曲面交点计算新算法
提出了一种计算两旋转曲面RSIC相交曲线的新算法;它将旋转曲面细分为同轴球带的集合,将其母线细分为C/sup 0/和C/sup 1/同轴圆弧的集合。因此,将两个旋转曲面的相交问题简化为两个球面条纹的相交问题,并将RSIC近似为C/sup 0/和C/sup 1/圆的分段,这对于一些CAD应用非常方便。采用圆柱包围壳计算有效相交区间VII,有效地避免了不必要的相交计算。最后,给出了一种简单的RSIC分类跟踪算法,并给出了RSIC的统一的理性Bezier表示。
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