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An Approximate and Efficient Method for Optimal Rotation Alignment of 3D Models

机译:3D模型最佳旋转对准的一种近似有效方法

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摘要

In many shape analysis applications, the ability to find the best rotation that aligns two models is an essential first step in the analysis process. In the past, methods for model alignment have either used normalization techniques, such as PCA alignment, or have performed an exhaustive search over the space of rotation to find the best optimal alignment. While normalization techniques have the advantage of efficiency, providing a quick method for registering two shapes, they are often imprecise and can give rise to poor alignments. Conversely, exhaustive search is guaranteed to provide the correct answer, but, even using efficient signal processing techniques, this type of approach can be prohibitively slow. In this paper, we present a new method for aligning two 3D shapes. We show that the method is markedly faster than existing approaches based on efficient signal processing and we provide registration results demonstrating that the alignments obtained using our method have a high degree of precision and are markedly better than those obtained using normalization.
机译:在许多形状分析应用程序中,找到使两个模型对齐的最佳旋转的能力是分析过程中必不可少的第一步。过去,用于模型对齐的方法要么使用归一化技术(例如PCA对齐),要么在旋转空间上进行了详尽的搜索以找到最佳的最佳对齐方式。尽管归一化技术具有效率高的优点,提供了一种用于注册两个形状的快速方法,但它们通常不精确,并可能导致对齐不良。相反,穷举搜索可确保提供正确的答案,但是,即使使用高效的信号处理技术,此类方法也可能会过慢。在本文中,我们提出了一种用于对齐两个3D形状的新方法。我们表明,该方法比基于有效信号处理的现有方法明显更快,并且我们提供的配准结果表明,使用我们的方法获得的比对具有较高的精确度,并且明显优于使用归一化获得的比对。

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