Surface Patches from Unorganized Space Curves
Recent 3D sketch tools produce networks of three‐space curves that suggest the contours of shapes. The shapes may be non‐manifold, closed three‐dimensional, open two‐dimensional, or mixed. We describe a system that automatically generates intuitively appealing piecewise‐smooth surfaces from such a c...
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| Veröffentlicht in: | Computer graphics forum Jg. 30; H. 5; S. 1379 - 1387 |
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| Format: | Journal Article |
| Sprache: | Englisch |
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Oxford, UK
Blackwell Publishing Ltd
01.08.2011
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| ISSN: | 0167-7055, 1467-8659 |
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| Abstract | Recent 3D sketch tools produce networks of three‐space curves that suggest the contours of shapes. The shapes may be non‐manifold, closed three‐dimensional, open two‐dimensional, or mixed. We describe a system that automatically generates intuitively appealing piecewise‐smooth surfaces from such a curve network, and an intelligent user interface for modifying the automatically chosen surface patches. Both the automatic and the semi‐automatic parts of the system use a linear algebra representation of the set of surface patches to track the topology. On complicated inputs from ILoveSketch [BBS08], our system allows the user to build the desired surface with just a few mouse‐clicks. |
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| AbstractList | Recent 3D sketch tools produce networks of three‐space curves that suggest the contours of shapes. The shapes may be non‐manifold, closed three‐dimensional, open two‐dimensional, or mixed. We describe a system that automatically generates intuitively appealing piecewise‐smooth surfaces from such a curve network, and an intelligent user interface for modifying the automatically chosen surface patches. Both the automatic and the semi‐automatic parts of the system use a linear algebra representation of the set of surface patches to track the topology. On complicated inputs from ILoveSketch [BBS08], our system allows the user to build the desired surface with just a few mouse‐clicks. Recent 3D sketch tools produce networks of three‐space curves that suggest the contours of shapes. The shapes may be non‐manifold, closed three‐dimensional, open two‐dimensional, or mixed. We describe a system that automatically generates intuitively appealing piecewise‐smooth surfaces from such a curve network, and an intelligent user interface for modifying the automatically chosen surface patches. Both the automatic and the semi‐automatic parts of the system use a linear algebra representation of the set of surface patches to track the topology. On complicated inputs from ILoveSketch [ BBS08 ], our system allows the user to build the desired surface with just a few mouse‐clicks. Recent 3D sketch tools produce networks of three-space curves that suggest the contours of shapes. The shapes may be non-manifold, closed three-dimensional, open two-dimensional, or mixed. We describe a system that automatically generates intuitively appealing piecewise-smooth surfaces from such a curve network, and an intelligent user interface for modifying the automatically chosen surface patches. Both the automatic and the semi-automatic parts of the system use a linear algebra representation of the set of surface patches to track the topology. On complicated inputs from ILoveSketch [BBS08], our system allows the user to build the desired surface with just a few mouse-clicks. [PUBLICATION ABSTRACT] |
| Author | Abbasinejad, Fatemeh Joshi, Pushkar Amenta, Nina |
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| Cites_doi | 10.1109/34.541409 10.1016/0010-4485(92)90032-6 10.1145/505008.505041 10.1109/34.954601 10.1016/0097-8493(83)90004-3 10.1109/TPAMI.2002.1114850 10.1145/218013.218083 10.1145/988834.988863 10.1115/1.1586309 10.1016/j.ipl.2005.01.006 10.1007/s00453-004-1098-x 10.1145/1449715.1449740 10.1147/rd.245.0582 10.1016/j.cad.2009.11.008 |
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| References_xml | – reference: Varley P. A., Company P. P.: A new algorithm for finding faces in wireframes. Computer-Aided Design 42, 4 (2010), 279-309. 2, 3. – reference: Markowsky G., Wesley M. A.: Fleshing out wire frames. IBM J. Res. Dev. 24 (September 1980), 582-597. 2. – reference: Ganter M. A., Uicker J. J.: From Wire-Frame to solid geometric: Automated conversion of data representations. Computers in Mechanical Engineering 2 (sept 1983), 40-45. 3. – reference: Agarwal S. C., Waggenspack W. N.: Decomposition method for extracting face topologies from wireframe models. Computer-Aided Design 24, 3 (1992), 123-140. 2. – reference: Dutton R. D., Brigham R. C.: Efficiently identifying the faces of a solid. Computers & Graphics in Mechanical Engineering 7, 2 (1983), 143-147. 3. – reference: Liu J., Lee Y. T., Cham W.-K.: Identifying faces in a 2d line drawing representing a manifold object. 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| SubjectTerms | and object representations Computer graphics Construction I.3.3 [Computer Graphics]: Picture/Image Generation-Line and curve generation I.3.5 [Computer Graphics]: Computational Geometry and Object Modeling-Curve I.3.5 [Computer Graphics]: Computational Geometry and Object Modeling—Curve,surface,solid,and object representations Linear algebra Networks Representations Sketches solid Studies surface Three dimensional Two dimensional User interfaces |
| Title | Surface Patches from Unorganized Space Curves |
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