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An Algebraic Model for Parameterized Shape Editing

delete2012-07-01
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OA
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M
Michael Wand
H
Hans‐Peter Seidel
V
Vladlen Koltun
DOI:10.1145/2185520.2185574delete
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Abstract

Abstract

En 中文
We present an approach to high-level shape editing that adapts the structure of the shape while maintaining its global characteristics. Our main contribution is a new algebraic model of shape structure that characterizes shapes in terms of linked translational patterns. The space of shapes that conform to this characterization is parameterized by a small set of numerical parameters bounded by a set of linear constraints. This convex space permits a direct exploration of variations of the input shape. We use this representation to develop a robust interactive system that allows shapes to be intuitively manipulated through sparse constraints.
Keywords:
shape editing
shape understanding
symmetry
structural regularity
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Journal

ACM Transactions on Graphics cover
ACM Transactions on Graphics
IF:
9.5
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4.7K
Citations:
3.6W

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Stanford University
Scholars:
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Citations: 17.0W
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Saarland University
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Citations: 1.3W