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点云数据的管道面重构
引用本文:李岸,柯映林.点云数据的管道面重构[J].浙江大学学报(自然科学版 ),2006,40(5):768-771.
作者姓名:李岸  柯映林
作者单位:李岸1,2,柯映林1(1.浙江大学 机械与能源工程学院,浙江 杭州 310027;2.浙江科技学院
机械与汽车工程学院,浙江 杭州 310083)
摘    要:针对反求工程中管道面重构问题,提出了一种从点云数据中直接提取管道面特征参数的算法.算法
分为两步:第一步将管道面数据视为过渡特征数据,利用过渡特征提取原理获得管道面的一系列截面线
,经概率统计方法进行噪声去除后,得到准确的截面线及其半径.第二步是由截面线的中心确定管道面的
脊线点列.利用移动球法,球的直径即是采样步长,沿着脊线方向对点列进行均匀采样,然后对采样点列
进行高斯平滑,获得光滑均匀的脊线点列.用三次B样条曲线拟合采样点列而获得脊线.计算实例表明,该
方法能够稳定、准确地提取出管道面的几何特征参数.

关 键 词:反求工程  特征提取  管道面  数据处理
文章编号:1008-973X(2006)05-0768-04
收稿时间:2004-12-30
修稿时间:2004-12-30

Pipe surfaces extraction from point cloud
LI An,KE Ying-lin.Pipe surfaces extraction from point cloud[J].Journal of Zhejiang University(Engineering Science),2006,40(5):768-771.
Authors:LI An  KE Ying-lin
Affiliation:1. College of Mechanical and Energy Engineering, Zhejiang University, Hangzhou 310027, China; 2. School of Mechanical and Automotive Engineering, Zhejiang University of Science and Technology, Hangzhou 310083,China
Abstract:For reconstruction of pipe surface in reverse engineering,an algorithm is proposed to directly extract geometric feature parameters of pipe surfaces from point cloud.This algorithm consists of two steps.In the first step,the point cloud of pipe surface was considered on as that of the blend surface.A series of profile curves of pipe surfaces were extracted based on the blend feature extraction method from point cloud and then the accurate profile curve and radius of pipe surfaces were determined by statistical analysis.In the second step,a set of points used to determine the spine curve was obtained by calculating the circular centers of the profile curves.These points were uniformly sampled by moving a sphere(with diameter being the sample step length),along the spine curve,and then the Gaussian method was used to smooth the sampled points.A spine curve was fitted to those re-sampled points with a cubic B-spline curve. Experiments illustrated that this algorithm can accurately and reliably extract the pipe surface from point cloud.
Keywords:reverse engineering  feature extraction  pipe surfaces  data processing
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