88
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

A view‐dependent method for the multi‐resolution representation of terrains with roads embedded

, , &
Pages 319-334 | Received 21 Jul 2005, Accepted 16 Mar 2006, Published online: 31 Jan 2007

References

  • Bonneau , G. P. 1998 . Multi‐resolution analysis on irregular surface meshes. . IEEE Transaction on Visualization and Computer Graphics , 4 : 365 – 378 .
  • Ciampalini , A. , Cignoni , P. , Montani , C. and Scopigno , R. 1997 . Multi‐resolution decimation based on global error. . The Visual Computer , 13 : 228 – 246 .
  • Cignoni , P. , Montani , C. and Varshney , A. 1998 . A comparison of mesh simplification algorithms. . Computer and Graphics , 22 : 37 – 54 .
  • Cignoni , P. , Ganovelli , F. , Gobbetti , E. , Ponchio , F. and Scopogno , R. 2003a . BDAM‐batched dynamic adaptive meshes for high performance terrain visualization. . Computer Graphics Forum , 22 : 505 – 514 .
  • Cignoni , P. , Ganovelli , F. , Gobbetti , E. , Ponchio , F. and Scopogno , R. 2003b . “ Planet‐sized batched dynamic adaptive meshes (P‐BDAM). ” . In Proceedings IEEE Visualization , 147 – 155 . Washington : IEEE Press . G. Bell (Ed.)
  • De Floriani , L. 1989 . A pyramidal data structure for triangle‐based surface description. . IEEE Computer Graphics and Application , 8 : 67 – 78 .
  • De Floriani , L. , Marzano , P. and Puppo , E. 1996 . Multi‐resolution models for topographic surface description. . The Visual Computer , 12 : 317 – 345 .
  • De Floriani , L. , Magillo , P. and Puppo , E. 2000 . VARIANT: a system for terrain modeling at variable resolution. . GeoInformatica , 4 : 287 – 315 .
  • Duchaineau , M. , Wolinsky , M. , Sigeti , D. , Miller , M. , Aldrich , C. and Mineev Weinstein , M. 1997 . “ ROAMing terrain: real‐time optimally adapting meshes. ” . In Proceedings IEEE Visualization '97 R. Yagel and H. Hagen (Eds.), pp. 81–88 (Los Alamitos, CA: IEEE Computer Society Press)
  • El‐Sana , J. and Varshney , A. 1999 . Generalized view‐dependent simplification. . Computer Graphics Forum , 18 : 84 – 94 .
  • Evans , W. , Kirkpatrick , D. and Townsend , G. 2001 . Right triangulated irregular networks. . Algorithmica , 30 : 264 – 286 .
  • Garland , M. 1999 . “ Multi‐resolution modeling: survey and future opportunities. ” . In EUROGRAPHICS '99 – State of the Art Report (STAR) 111 – 131 . Eurographics Association, Aire‐la‐Ville (CH)
  • Garland , M. and Heckbert , P. S. 1997 . “ Surface simplification using quadric error metrics. ” . In Computer Graphics Proceedings, Annual Conference Series 209 – 216 . ACM SIGGRAPH, Los Angeles, California: ACM Press
  • Gross , M. H. , Gatti , R. and Staadt , O. G. 1995 . “ Fast multi‐resolution surface meshing. ” . In G.M. Nielson and D. Silver (Eds.) Visualization '95, pp. 135–142 (Los Alamitos, CA: IEEE Computer Society Press)
  • Heckbert , P. S. and Garland , M. 1997 . “ Survey of polygonal surface simplification algorithms. ” . Technical Report, CMU‐CS, Carnegie Mellon University Pittsburgh, Pennsylvania, USA
  • Heller , M. 1990 . “ Triangulation algorithms for adaptive terrain modeling. ” . In Proceedings of the 4th International Symposium on Spatial Data Handling 163 – 174 . K. Brassel, H. Kishimoto (Eds.)
  • Hoppe , H. 1996 . Progressive meshes. . 30 : 99 – 108 . Computer Graphics (special issue on SIGGRAPH '96)
  • Kim , J. and Lee , S. 2001 . “ Truly selective refinement of progressive meshes. ” . In Proceedings Graphics Interface 2001 101 – 110 . Ottawa, Canada, C. De Floriani and P. Magillo (Eds.)
  • Lindstrom , P. and Pascucci , V. 2002 . Terrain simplification simplified: a general framework for view‐dependent out‐of‐core visualization. . IEEE Transactions on Visualization and Computer Graphics , 8 : 239 – 254 .
  • Lindstrom , P. , Koller , D. , Ribarsky , W. , Hodges , L. F. and Faust , N. 1996 . Real‐time, continuous level of detail rendering of height fields. . 30 : 109 – 118 . Computer Graphics (special issue on SIGGRAPH '96)
  • Losasso , F. and Hoppe , H. 2004 . Geometry clipmaps: terrain rendering using nested regular grids. . ACMSIGGRAPH 2004 , Los Angeles, pp. 769–776
  • Mallat , S. G. 1989 . A theory for multi‐resolution signal decomposition: the wavelet representation. . IEEE Transactions on Pattern Analysis and Machine Intelligence , 11 : 674 – 693 .
  • Pajarola , R. 1998 . “ Large‐scale terrain visualization using the restricted quadtree triangulation. ” . In Proceedings IEEE Visualization '98 Edited by: Ebert , D. , Hagen , H. and Rushmeier , H. 19 – 26 . Research Triangle Park, NC, IEEE Computer Society Press
  • Pajarola , R. 2002 . “ Overview of quadtree based terrain triangulation and visualization. ” . Technical Report UCI‐ICS TR 02‐01, Department of Information, Computer Science University of California, Irvine
  • Pedrini , H. 2000 . “ An adaptive method for terrain surface approximation based on triangular meshes. ” . PhD dissertation, Department of Electrical, Computer, and System Engineering, Rensselaer Polytechnic Institute, Troy‐NY, USA
  • Qslim. 1997. Available online at: URL: http://graphics.cs.uiuc.edu/˜garland/research/quadrics.html (accessed 5 October 2003)
  • Ribelles , J. , Lopez , A. , Belmonte , O. , Remolar , L. and Chover , M. 2002 . Multi‐resolution modeling of arbitrary polygonal surfaces: a characterization. . Computer Graphics , 26 : 449 – 462 .
  • Samet , H. 1990 . Applications of Spatial Data Structures , Reading, MA, , USA : Addison Wesley .
  • Schroeder , W. , Zarge , A. J. and Du , W. 1992 . Decimation of triangle meshes. . Computer Graphics , 26 : 65 – 70 .
  • Sivan , R. and Samet , H. 1992 . “ Algorithm for constructing quadtree surface maps. ” . In Proceedings of the 5th International Symposium on Spatial Data Handling 361 – 370 . August, 1992, Charleston, SC,
  • Soucy , M. and Laurendeau , D. 1992 . “ Multi‐resolution surface modeling from multiple range views. ” . In Conference on Computer Vision and Pattern Recognition (CVPR'92) 348 – 353 . Champlaign, Illinois
  • Soucy , M. and Laurendeau , D. 1996 . Multi‐resolution surface modeling based on hierarchical triangulation. . Computer Vision and Image Understanding , 63 : 1 – 14 .
  • Suarez , J. P. and Plaza , A. 2003 . “ Refinement and hierarchical coarsening schemes for triangulated surfaces. ” . In WSCG 2003 V. Skala (Ed.) (Plzen, Czech Republic: UNION Agency‐Science Press)
  • Voigtmann , A. , Becker , L. and Hinrichs , K. 1997 . A hierarchical model for multi‐resolution surface reconstruction. . Graphical Models and Image Processing , 59 : 333 – 348 .
  • Xia , J. , El‐Sana , J. and Varshney , A. 1997 . Adaptive real‐time level‐of‐detail‐based rendering for polygonal models. . IEEE Transactions on Visualization and Computer Graphics , 3 : 171 – 183 .
  • Yang , B. , Li , Q. and Shi , W. 2005a . Constructing multi‐resolution triangulated irregular network model for visualization. . Computer and Geoscience , 31 : 77 – 86 .
  • Yang , B. , Shi , W. and Li , Q. 2005b . A dynamic method for generating multi‐resolution TIN models. . Photogrammetric Engineering and Remote Sensing, 71(8), pp. 917–927

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.