Olivier Devillers
13
Documents
Identifiants chercheurs
- olivierdevillers
- 0000-0003-4275-5068
- Google Scholar : http://scholar.google.com/citations?user=oD-iXjcAAAAJ
- IdRef : 033684162
Présentation
[my homepage](https://members.loria.fr/Olivier.Devillers/),[ ![ORCID iD icon](https://orcid.org/sites/default/files/images/orcid_16x16.png)orcid](https://orcid.org/0000-0003-4275-5068)
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### **PhD student**s
- Charles Duménil. [Expected Size of the 3-Dimensional Delaunay Triangulation of Random Points on a Surface](https://tel.archives-ouvertes.fr/tel-03695908). 2022.
- Rémy Thomasse. [Complexity analysis of random convex hulls](https://tel.archives-ouvertes.fr/tel-01252937). 2015.
- Ross Hemsley. [Probabilistic methods for the analysis of algorithms on random tessellations,](https://tel.archives-ouvertes.fr/tel-01099165) 2014.
- Pedro Machado Manhães de Castro. [Practical Ways to Accelerate Delaunay Triangulations.](http://tel.archives-ouvertes.fr/tel-00531765/fr/) 2010.
- Abdelkrim Mebarki. [Implantation de structures de données compactes pour les triangulations](http://tel.archives-ouvertes.fr/tel-00336178/). 2008.
- Luca Castelli Aleardi. [Représentations compactes de structures de données géométriques.](http://tel.archives-ouvertes.fr/tel-00336188/) 2006.
- Philippe Guigue. [Constructions géométriques à précision fixée](http://tel.archives-ouvertes.fr/tel-00471447/fr/). 2003.
- Pierre-Marie Gandoin. [Compression progressive sans perte de structures géométriques](http://tel.archives-ouvertes.fr/tel-00771344). 2001.
- Pascal Desnoguès. [Triangulations et quadriques](http://tel.archives-ouvertes.fr/tel-00771335). 1996.
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Variable-width contouring for additive manufacturingACM Transactions on Graphics, 2020, 39 (4 (Proc. SIGGRAPH)), ⟨10.1145/3386569.3392448⟩
Article dans une revue
hal-02568677v2
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Monotone Simultaneous Paths Embeddings in $\mathbb{R}^d$Discrete Mathematics and Theoretical Computer Science, 2018, Vol. 20 no. 1 (1), pp.1-11. ⟨10.23638/DMTCS-20-1-1⟩
Article dans une revue
hal-01529154v2
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Recognizing Shrinkable Complexes Is NP-CompleteJournal of Computational Geometry, 2016, 7 (1), pp.430--443. ⟨10.20382/jocg.v7i1a18⟩
Article dans une revue
hal-01384396v2
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On the Complexity of Umbra and PenumbraComputational Geometry, 2009, 42 (8), pp.758--771. ⟨10.1016/j.comgeo.2008.04.007⟩
Article dans une revue
inria-00431418v1
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Lines and free line segments Tangent to Arbitrary Three-dimensional Convex PolyhedraSIAM Journal on Computing, 2007, 37 (2), pp.522-551. ⟨10.1137/S0097539705447116⟩
Article dans une revue
inria-00103916v1
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Monotone Simultaneous Paths Embeddings in $\mathbb{R}^d$24th International Symposium on Graph Drawing & Network Visualization, Sep 2016, Athens, Greece. ⟨10.1007/978-3-319-50106-2_42⟩
Communication dans un congrès
hal-01366148v1
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Recognizing shrinkable complexes is NP-completeESA 2014 - 22nd Annual European Symposium on Algorithms, Sep 2014, Wroclaw, Poland. pp.74-86, ⟨10.1007/978-3-662-44777-2_7⟩
Communication dans un congrès
hal-01015747v1
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Predicates for line transversals to lines and line segments in three-dimensional spaceSoCG 2008 - 24th Annual Symposium on Computational Geometry, Jun 2008, College Park, Maryland, United States. pp.174-181, ⟨10.1145/1377676.1377704⟩
Communication dans un congrès
inria-00336256v1
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Between umbra and penumbraProceedings of the 23rd Annual Symposium on Computational Geometry, Hee-Kap Ahn, Otfried Cheong, and Kyung-Yong Chwa, Jun 2007, Gyeongju, South Korea. pp.265-274, ⟨10.1145/1247069.1247117⟩
Communication dans un congrès
inria-00187253v1
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The Number of Lines Tangent to Arbitrary Convex Polyhedra in 3DProceedings of the 20th Annual Symposium on Computational Geometry, Jun 2004, Brooklyn, NY, United States. pp.46 - 55, ⟨10.1145/997817.997827⟩
Communication dans un congrès
inria-00103995v1
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On the Number of Lines Tangent to Four Convex Polyhedra14th Canadian Conference on Computational Geometry - CCCG'02, 2002, Lethbridge, Canada
Communication dans un congrès
inria-00099449v1
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On the Complexity of Umbra and Penumbra[Research Report] RR-6347, INRIA. 2007, pp.28
Rapport
inria-00186262v2
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On the Number of Maximal Free Line Segments Tangent to Arbitrary Three-dimensional Convex Polyhedra[Research Report] RR-5671, INRIA. 2005
Rapport
inria-00071226v1
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