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A compact shape descriptor for triangular surface meshes

delete2014-08-01
delete28
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OA
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Z
Zhanheng Gao *
Z
Zeyun Yu
X
Xiaoli Pang
DOI:10.1016/j.cad.2014.03.008delete
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Abstract

Abstract

En 中文
Three-dimensional shape-based descriptors have been widely used in object recognition and database retrieval. In the current work, we present a novel method called compact Shape-DNA (cShape-DNA) to describe the shape of a triangular surface mesh. While the original Shape-DNA technique provides an effective and isometric-invariant descriptor for surface shapes, the number of eigenvalues used is typically large. To further reduce the space and time consumptions, especially for large-scale database applications, it is of great interest to find a more compact way to describe an arbitrary surface shape. In the present approach, the standard Shape-DNA is first computed from the given mesh and then processed by surface area-based normalization and line subtraction. The proposed cShape-DNA descriptor is composed of some low frequencies of the discrete Fourier transform of the processed Shape-DNA. Several experiments are shown to illustrate the effectiveness and efficiency of the cShape-DNA method on 3D shape analysis, particularly on shape comparison and classification. (C) 2014 Elsevier Ltd. All rights reserved.
Keywords:
Shape descriptor
Shape retrieval
Shape-DNA
Discrete Fourier transform
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C
Computer-Aided Design
IF:
3.1
Papers:
3.1K
Citations:
6.4K

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University of Wisconsin System cover
University of Wisconsin System
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Citations: 382
U
University of Wisconsin Milwaukee
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J
Jilin University
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