基于傅里叶算子的三维产品形状描述方法研究

Jianning Su, Xue-song Zhao
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引用次数: 1

摘要

产品的三维形状创新设计具有开发出更加赏心悦目的产品的重要能力,而形状描述技术是其中的关键技术之一。提出了基于傅里叶算子的三维产品形状描述方法,该方法包括以下四个步骤。首先是数据准备,可以获得三维产品形状的几何和拓扑关系。第二种是球面参数化,它创建一个从物体表面到单位球体表面的连续和均匀的映射。三是计算球面谐波,将三维曲面数据展开为一套完整的球面谐波基函数,用傅里叶算子(谐波)表示三维乘积形状。四是找到一个理想的谐波数,它代表了产品形状的主要形状特征,并消除了噪声。选择小鼠形状进行实验研究。结果表明,该描述方法具有鲁棒性、紧凑性和简单性,适用于产品形状创新设计和三维形状检索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the describing method of 3D product shape based on Fourier operator
The 3D product shape innovation design has possessed a very important ability to develop more pleasurable products, in which Shape Descriptor is one of key technologies. The describing method of 3D product shape based on Fourier operator is presented, which includes the following four steps. The first is data preparation, which can obtain the geometry and topological relations of 3D product shape. The second is spherical parameterization, which creates a continuous and uniform mapping from the object surface to the surface of a unit sphere. The third is to compute spherical harmonics, which expands the 3D surface data into a complete set of spherical harmonic basis functions, so the 3D product shape is expressed by the Fourier operators (harmonics). The fourth is to find an ideal number of harmonics, which represents the main shape feature of product shape and eliminates the noise. The mouse shape is chosen to do experimental study. The result appears that a few first harmonics are suitable for representing 3D product shape and shows that the describing method is robust, compact and simple, which is promising to apply in the product shape innovation design and the 3D shape retrieval.
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