距离图像配准方法及其精度评价

W. Liying, Song Weidong
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引用次数: 16

摘要

三维扫描技术允许获取真实世界表面的几何模型。大多数采集系统仅限于重建在盲区和遮挡处获得的物体的部分视图,而在大多数应用中需要完整的重建。许多作者提出了通过确定不同视图之间的运动来融合3D表面的技术。虽然这些视图之间的运动通常是未知的,但它可以通过配准算法计算出来。近年来提出了几种方法:(a)迭代最近点法(ICP);(b)陈氏法;(c)带符号距离域;(d)遗传算法等。本文综述了精细距离图像配准算法,提出了一种结合模拟退火和遗传算法(GAEA)的进化算法。该算法避免了遗传算法存在的早熟收敛问题,增强了全局收敛性,提高了收敛速度。算法是在MATLAB中实现的,因为MATLAB保证了容易实现。考虑到GAEA的准确性,使用了真实扫描对象。实验结果表明,所引入的GAEA提供了较好的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review of range image registration methods with accuracy evaluation
Three-dimensional scanning technology allows the acquisition of a geometric model for real-world surfaces. Most of the acquisition systems are limited to reconstruct a partial view of the object obtaining in blind areas and occlusions, while in most applications a full reconstruction is required. Many authors have proposed techniques to fuse 3D surfaces by determining the motion between the different views. Although the motion between these views is usually unknown, it can be computed by means of registration algorithms. In recent years, some methods have been presented: (a) iterative closest point (ICP); (b) Method of Chen; (c) signed distance fields; and (d) genetic algorithms, among others. In this paper, we reviewed the fine Range Image Registration algorithms, and a new evolutionary algorithm which marries simulated annealing with genetic algorithms (GAEA) is introduced to solve this problem. The algorithm avoids the premature convergence problem existed in genetic algorithms, enhances the globe convergence, and improves the convergence velocity. Algorithm is implemented in MATLAB because MATLAB guarantees an easy implementation. Real scanned objects are used to take into account the accuracy of the GAEA. Our experimental results showed that the introduced GAEA provided better solution.
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