Exploring quadrangulations

Author:

Peng Chi-Han1,Barton Michael2,Jiang Caigui2,Wonka Peter3

Affiliation:

1. Arizona State University, Phoenix, AZ

2. King Abdullah University of Science and Technology, Thuwal, Saudi Arabia

3. Arizona State University and King Abdullah University of Science and Technology, Phoenix, AZ

Abstract

We present a framework for exploring topologically unique quadrangulations of an input shape. First, the input shape is segmented into surface patches. Second, different topologies are enumerated and explored in each patch. This is realized by an efficient subdivision-based quadrangulation algorithm that can exhaustively enumerate all mesh topologies within a patch. To help users navigate the potentially huge collection of variations, we propose tools to preview and arrange the results. Furthermore, the requirement that all patches need to be jointly quadrangulatable is formulated as a linear integer program. Finally, we apply the framework to shape-space exploration, remeshing, and design to underline the importance of topology exploration.

Funder

National Science Foundation

King Abdullah University of Science and Technology

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference30 articles.

1. Anisotropic polygonal remeshing

2. Design-driven quadrangulation of closed 3D curves

3. Paving: A new approach to automated quadrilateral mesh generation

4. D. Bommes B. Levy N. Pietroni E. Puppo M. Tarini and D. Zorin. 2012. State of the art in quad meshing. In EuroGraphics STARS. D. Bommes B. Levy N. Pietroni E. Puppo M. Tarini and D. Zorin. 2012. State of the art in quad meshing. In EuroGraphics STARS.

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