Fiche membre Retour à l'annuaire
Vincent RICORDEL
ENSEIGNANT-CHERCHEUR
Maître de conférencesHDR
Publications référencées sur HAL
Revues internationales avec comité de lecture (ART_INT)
- [1] A. Perrin, V. Krassanakis, L. Zhang, V. Ricordel, M. da Silva, O. Le Meur. EyeTrackUAV2: a Large-Scale Binocular Eye-Tracking Dataset for UAV Videos. In Drones ; éd. MDPI, 2020, vol. 4, num. 2.https://univ-rennes.hal.science/hal-02391832v3
- [2] V. Krassanakis, M. da Silva, V. Ricordel. Monitoring Human Visual Behavior during the Observation of Unmanned Aerial Vehicles (UAVs) Videos. In Drones ; éd. MDPI, 2018, vol. 2, num. 4.https://hal.science/hal-01928841v1
- [3] J. Wang, M. Perreira da Silva, P. Le Callet, V. Ricordel. A computational model of stereoscopic 3D visual saliency. In IEEE Transactions on Image Processing ; éd. Institute of Electrical and Electronics Engineers, 2013, vol. 22, num. 6.https://hal.science/hal-00788847v1
- [4] J. Wang, P. Le Callet, S. Tourancheau, V. Ricordel, M. Perreira da Silva. Study of depth bias of observers in free viewing of still stereoscopic synthetic stimuli. In Journal of Eye Movement Research ; éd. International Group for Eye Movement Research - University of Bern, Switzerland, 2012, vol. 5, num. 5.https://hal.science/hal-00730667v1
- [5] A. Filali, V. Ricordel, N. Normand. Static and Dynamic 3D Point Cloud Compression by TSPLVQ. In International Conference on Systems, Signals and Image Processing (IWSSIP), juin 2021, Bratislava, Slovaquie.https://hal.science/hal-03423890v1
- [6] A. Filali, V. Ricordel, N. Normand. Geometry Compression of 3D Static Point Clouds based on TSPLVQ. In Fifth Sino-French Workshop on Information and Communication Technologies SIFWICT 2019, juin 2019, Nantes, France.https://hal.science/hal-02363980v1
- [7] A. Filali, V. Ricordel, N. Normand, W. Hamidouche. Rate-Distortion Optimized Tree-Structured Point-Lattice Vector Quantization for Compression of 3D Point Clouds Geometry. In 2019 IEEE International Conference on Image Processing (ICIP), septembre 2019, Taipei, Taïwan.https://hal.science/hal-02321752v1
- [8] A. Filali, V. Ricordel, N. Normand. Tree-Structured Point-Lattice Vector Quantization for 3-D Point Cloud Geometry Compression. In CORESA, novembre 2018, Poitiers, France.https://hal.science/hal-01928230v1
- [9] V. Ricordel, N. Normand, J. Guédon. Analysis of Mojette Transform Projections using Z3 lattice versus A3 lattice. In Sino-French Workshop on Research Collaborations in Informations and Communication Technologies (SIFWICT), juin 2017, Qingdao, Chine.https://hal.science/hal-01644998v1
- [10] V. Ricordel, N. Normand, J. Guédon. Mojette Transform on Densest Lattices in 2D and 3D. In 20th International Conference on Discrete Geometry for Computer Imagery (DGCI 2017), septembre 2017, Vienne, Autriche.https://hal.science/hal-01644992v1
- [11] K. Naser, V. Ricordel, P. Le Callet. Estimation of Perceptual Redundancies of HEVC Encoded Dynamic Textures. In 8th International Conference on Quality of Multimedia Experience, juin 2016, Lisbon, Portugal.https://hal.science/hal-01332130v1
- [12] K. Naser, V. Ricordel, P. Le Callet. Modeling the Perceptual Distortion of Dynamic Textures and Its Application in HEVC. In IEEE International Conference on Image Processing (ICIP), septembre 2016, Phoenix,Arizona, états-Unis.https://hal.science/hal-01361445v1
- [13] K. Naser, V. Ricordel, P. Le Callet. A FOVEATED SHORT TERM DISTORTION MODEL FOR PERCEPTUALLY OPTIMIZED DYNAMIC TEXTURES COMPRESSION IN HEVC. In Picture Coding Symposium (PCS), décembre 2016, Nuremberg, Allemagne.https://hal.science/hal-01481689v1
- [14] C. Ma, K. Naser, V. Ricordel, P. Le Callet, C. Qing. An adaptive Lagrange multiplier determination method for dynamic texture in HEVC. In IEEE International Conference on Consumer Electronics-China (ICCE-China), décembre 2016, Guangzhou, Chine.https://hal.science/hal-01481686v1
- [15] K. Naser, V. Ricordel, P. Le Callet. PERFORMANCE ANALYSIS OF TEXTURE SIMILARITY METRICS IN HEVC INTRA PREDICTION. In Video Processing and Quality Metrics for Consumer Electronics (VPQM), février 2015, Chandler, Arizona, états-Unis.https://hal.science/hal-01150595v1
- [16] K. Naser, V. Ricordel, P. Le Callet. TEXTURE SIMILARITY METRICS APPLIED TO HEVC INTRA PREDICTION. In The third Sino-French Workshop on Information and Communication Technologies, SIFWICT 2015, juin 2015, Nantes, France.https://hal.science/hal-01164951v1
- [17] K. Naser, V. Ricordel, P. Le Callet. Local texture synthesis: A static texture coding algorithm fully compatible with HEVC. In International Conference on Systems, Signals and Image Processing (IWSSIP), septembre 2015, Londres, Royaume-Uni.https://hal.science/hal-01327166v1
- [18] K. Naser, V. Ricordel, P. Le Callet. Experimenting Texture Similarity Metric STSIM for Intra Prediction Mode Selection and Block Partitiong in HEVC. In Digital Signal Processing (DSP), août 2014, Hong Kong, Chine.https://hal.science/hal-01101084v1
- [19] J. Wang, M. Perreira da Silva, P. Le Callet, V. Ricordel. Study of Center-Bias in the Viewing of Stereoscopic Image and a Framework for Extending 2D Visual Attention Models to 3D. In SPIE Electronic Imaging, février 2013, San Francisco, états-Unis.https://hal.science/hal-01110368v1
- [20] M. Urvoy, M. Barkowsky, R. Cousseau, Y. Koudota, V. Ricordel, P. Le Callet, J. Gutierrez, N. Garcia. NAMA3DS1-COSPAD1: Subjective video quality assessment database on coding conditions introducing freely available high quality 3D stereoscopic sequences. In QoMEX - Fourth International Workshop on Quality of Multimedia Experience, juillet 2012, Yarra Valley, Australie.https://hal.science/hal-00717865v1
- [21] J. Wang, M. Barkowsky, V. Ricordel, P. Le Callet. Quantifying how the combination of blur and disparity affects the perceived depth. In SPIE Electronic Imaging, janvier 2011, San Francisco Airport, California, états-Unis.https://hal.science/hal-00561951v1
- [22] J. Wang, M. Barkowsky, V. Ricordel, P. Le Callet. Clarifying how defocus blur and disparity affect the perceived depth. In First Sino-French Workshop on Education and Research collaborations in Information and Communication Technologies, mai 2011, Nantes, France.https://hal.science/hal-00735782v1
- [23] J. Wang, P. Le Callet, V. Ricordel, S. Tourancheau. Quantifying depth bias in free viewing of still stereoscopic synthetic stimuli. In 16th European Conference on Eye Movements, août 2011, Marseille, France.https://hal.science/hal-00724395v1
- [24] C. Ramassamy, V. Ricordel, O. Cramariuc, B. Cramariuc. Lattice Vector Quantization for the Analysis of Molecular Data.. In Signal Processing and Applied Mathemathematics for Electronics and Communications (SPAMEC)., août 2011, Cluj-Napoca, Roumanie.https://hal.science/hal-00624283v1
- [25] O. Brouard, F. Delannay, V. Ricordel, D. Barba. SPATIO-TEMPORAL SEGMENTATION AND REGIONS TRACKING OF HIGH DEFINITION VIDEO SEQUENCES USING A MARKOV RANDOM FIELD MODEL. In International Conference on Image Processing - ICIP 2008, octobre 2008, San Diego, états-Unis.https://hal.science/hal-00343618v1
- [26] G. Jeannic, V. Ricordel, D. Barba. The Edge Driven Oriented Wavelet Transform: An Anisotropic Multidirectional Representation With Oriented Lifting Scheme. In VCIP 2007, janvier 2007, San Jose, états-Unis.https://hal.science/hal-00251796v1
- [27] G. Jeannic, V. Ricordel, D. Barba. A multiresolution approach for the coding of edges of still images using adaptive arithmetic coding. In PCS 2007, novembre 2007, Liboa, Portugal.https://hal.science/hal-00251802v1
- [28] O. Brouard, F. Delannay, V. Ricordel, D. Barba. Robust motion segmentation for high definition video sequences using a fast multi-resolution motion estimation based on spatio-temporal tubes. In Picture Coding Symposium, PCS 2007, novembre 2007, Lisbonne, Portugal.https://hal.science/hal-00252145v1
- [29] O. Brouard, F. Delannay, V. Ricordel, D. Barba. FAST LONG-TERM MOTION ESTIMATION FOR HIGH DEFINITION VIDEO SEQUENCES BASED ON SPATIO-TEMPORAL TUBES AND USING THE NELDER-MEAD SIMPLEX ALGORITHM. In Picture Coding Symposium (PCS), novembre 2007, Lisboa, Portugal.https://hal.science/hal-01110382v1
- [30] V. Ricordel, F. Autrusseau, W. Dupuy, D. Barba. 1D-mosaics grouping using lattice vector quantization for a video browsing application. In international workshop on Content-based multimedia indexing, juin 2005, Riga, Lituanie.https://hal.science/hal-00250788v1
- [31] V. Ricordel, P. Le Callet, M. Carnec, B. Parrein. Flexible Storage of Still Images with a Perceptual Quality Criterion. In Advanced Concepts for Intelligent Vision Systems (ACIVS), septembre 2005, Antwerp, Belgique.https://hal.science/hal-00451334v1
- [32] P. Verbert, V. Ricordel, J. Guédon. ANALYSIS OF MOJETTE TRANSFORM PROJECTIONS FOR AN EFFICIENT CODING. In Workshop on Image Analysis for Multimedia Interactive Services (WIAMIS, avril 2004, Lisboa, Portugal.https://hal.science/hal-00451338v1
- [33] V. Ricordel, S. Paris, J. Opderbecke. Trajectory Estimation for Ultrashort Baseline Acoustic Positioning Systems. In Aerospace Conference, mars 2001, Big Sky Montana, états-Unis.https://hal.science/hal-00451348v1
- [34] W. Puech, G. Passail, V. Ricordel. ANALYSIS AND OPTIMISATION OF 3D RECONSTRUCTION METHOD OF THE AORTA FROM A TOMOGRAPHIC IMAGES SEQUENCE. In European Signal Processing Conference (EUSIPCO), septembre 2000, Tampere, Finlande.https://hal.science/hal-00451354v1
- [35] W. Puech, G. Passail, S. Nicolay, V. Ricordel. Analyse et amélioration de méthodes de reconstruction 3D de l'aorte à partir d'une séquence d'images tomodensitométriques. In Colloque GRETSI sur le traitement du signal et des images (GRETSI), septembre 1999, Vannes, France.https://hal.science/hal-00451721v1
- [36] V. Ricordel, M. Gabbouj. Adaptive Tree-Structure Lattice Vector Quantization for Video Coding. In European Signal Processing Conference (EUSIPCO), septembre 1998, Rhodes, Grèce.https://hal.science/hal-00451700v1
- [37] V. Ricordel, C. Labit. Tree-Structured Lattice Vector Quantization. In European Signal Processing Conference (EUSIPCO), septembre 1996, Trieste, Italie.https://hal.science/hal-00451360v1
- [38] V. Ricordel, C. Labit. Vector Quantization by Hierarchical Packing of Embedded Truncated Lattices. In Visual Communications and Image Processing (VCIP), mai 1995, Taiwan, Chine.https://hal.science/hal-00451707v1
- [39] V. Ricordel, C. Labit. Vector Quantization by Packing of Embedded Truncated Lattices. In IEEE International Conference on Image Processing (ICIP), octobre 1995, Washington DC, états-Unis.https://hal.science/hal-00451365v1
- [40] G. Jeannic, V. Ricordel, D. Barba. Étude comparative de techniques de lifting orientées sur des contenus synthétiques représentant des structures rectilignes. In CORESA 2009, mars 2009, Toulouse, France.https://hal.science/hal-00404069v1
- [41] O. Brouard, V. Ricordel, D. Barba. Cartes de Saillance Spatio-Temporelle basées Contrastes de Couleur et Mouvement Relatif. In Compression et representation des signaux audiovisuels, CORESA 2009, mars 2009, Toulouse, France.https://hal.science/hal-00364867v1
- [42] G. Jeannic, V. Ricordel, D. Barba. Représentation structurelle d'images fixes par transformée en ondelettes orientées. In GRETSI 2007, septembre 2007, Troyes, France.https://hal.science/hal-00251797v1
- [43] O. Brouard, F. Delannay, V. Ricordel, D. Barba. Estimation Robuste du Mouvement Global au sein de Séquences Vidéo Haute Définition après une Estimation du Mouvement basée Tubes Spatio-Temporels. In Compression et representation des signaux audiovisuels, CORESA 2007, novembre 2007, Montpellier, France.https://hal.science/hal-00252133v1
- [44] G. Jeannic, V. Ricordel, D. Barba. Extraction de contours multirésolution pour un codage d'images par bandelettes. In CORESA 2006, novembre 2006, Caen, France.https://hal.science/hal-00251761v1
- [45] J. Michelis, W. Puech, V. Ricordel, G. Passail, M. Dumas. Intégration d'applet JAVA dans un réseau d'images médicales : aide au télédiagnostic. In Compression et représentation des signaux audiovisuels (CORESA), octobre 2000, Poitiers, France.https://hal.science/hal-00451713v1
- [46] G. Passail, V. Ricordel, A. Kolesnikov, W. Puech. Mise en œuvre d'un réseau pour la communication d'images médicales. In Compression et représentation des signaux audiovisuels (CORESA), juin 1999, Nice-Sophia Antipolis, France.https://hal.science/hal-00451723v1
- [47] V. Ricordel, M. Gabbouj, C. Labit. Quantification vectorielle algébrique et arborescente : méthode d'actualisation du dictionnaire. Application au codage vidéo.. In Compression et représentation des signaux audiovisuels (CORESA), juin 1998, Lannion, France.https://hal.science/hal-00451779v1
- [48] V. Ricordel, C. Labit. Quantification vectorielle algébrique et arborescente.. In Compression et représentation des signaux audiovisuels (CORESA), février 1996, Grenoble, France.https://hal.science/hal-00451780v1
- [49] V. Ricordel, C. Labit. Quantification vectorielle par emboîtage de réseaux réguliers de points. In Colloque GRETSI sur le traitement du signal et des images (GRETSI), septembre 1995, Juans-les-Pins, France.https://hal.science/hal-00453067v1
- [50] K. Naser, V. Ricordel, P. Le Callet. Method for encoding video frames based on local texture synthesis and corresponding device. N° brevet : 15757951.https://hal.science/hal-01970883v1
- [51] K. Naser, V. Ricordel, P. Le Callet. Method for encoding video frames based on local texture synthesis and corresponding device. N° brevet : 15306367.2 - 1908.https://hal.science/hal-01327124v1
- [52] V. Ricordel, J. Wang, M. da Silva, P. Le Callet. 2D and 3D Visual Attention for Computer Vision. In 3D Printing: Breakthroughs in Research and Practice. 2017 https://hal.science/hal-01971132v1
- [53] K. Naser, V. Ricordel, P. Le Callet. Perceptual Texture Similarity for Machine Intelligence Applications. In Visual Content Indexing and Retrieval with Psycho-Visual Models. 11-2017 https://hal.science/hal-01645011v1
- [54] V. Ricordel, J. Wang, M. Perreira da Silva, P. Le Callet. 2D & 3D Visual Attention for Computer Vision: Concepts, Measurement, and Modeling. In Innovative Research in Attention Modeling and Computer Vision Applications.. 2015 https://hal.science/hal-01150634v1
- [55] V. Ricordel. Outils et méthodes pour le codage vidéo perceptuel. https://theses.hal.science/tel-02461613v1
- [56] V. Ricordel. Etude d'un schéma de quantification vectorielle algébrique et arborescente. Application à la compression de séquences d'images numériques. Thèses : Université Rennes 1. https://theses.hal.science/tel-00453081v1
- [57] V. Ricordel. Annual Training Activity Report (ATAR) - Provision ITN. https://hal.science/hal-01150655v1
- [58] J. Wang, J. Gautier, O. Le Meur, E. Bosc, V. Ricordel. Livrable D1.3 of the PERSEE project - Perceptual Modelling: Softwares results and final report.. https://hal.science/hal-00935562v1
- [59] M. Barkowsky, J. Wang, J. Gautier, O. Le Meur, E. Bosc, V. Ricordel. Perceptual Assessment: Final tests and Analysis.. https://hal.science/hal-00935620v1
- [60] V. Ricordel, C. Guillemot, L. Guillo, O. Le Meur, M. Cagnazzo, G. Valenzise, B. Pesquet-Popescu. Livrable D3.4 of the PERSEE project : 2D coding tools final report. https://hal.science/hal-00935590v1
- [61] V. Ricordel, V. Jantet, J. Gautier, C. Guillemot, L. Guillo, E. Bosc, F. Racapé, L. Morin, M. Pressigout, M. Cagnazzo, G. Valenzise, B. Pesquet-Popescu. 3D coding tools final report. https://hal.science/hal-00935604v1
- [62] P. Le Callet, V. Ricordel, J. Wang, J. Gautier, C. Guillemot, L. Guillo, O. Le Meur, E. Bosc, L. Morin, M. Cagnazzo, B. Pesquet-Popescu. Livrable D5.2 of the PERSEE project : 2D/3D Codec architecture. https://hal.science/hal-00598697v1
- [63] V. Ricordel, C. Guillemot, L. Guillo, O. Le Meur, M. Cagnazzo, B. Pesquet-Popescu. Livrable D3.2 of the PERSEE project : 2D coding tools (intermediate version of the software). https://hal.science/hal-00598615v1
- [64] J. Wang, E. Bosc, J. Li, V. Ricordel. Livrable D1.2 of the PERSEE project : Perceptual-Modelling-Definition-of-the-Models. https://hal.science/hal-00773158v1
- [65] J. Wang, J. Gautier, E. Bosc, J. Li, V. Ricordel. Livrable D6.1 of the PERSEE project : Perceptual Assessment : Definition of the scenarios. https://hal.science/hal-00773183v1
- [66] V. Ricordel, C. Guillemot, L. Guillo, O. Le Meur, M. Cagnazzo, B. Pesquet-Popescu. Livrable D3.3 of the PERSEE project : 2D coding tools. https://hal.science/hal-00773176v1
- [67] M. Barkowsky, E. Bosc, M. Cagnazzo, J. Gautier, C. Guillemot, V. Jantet, O. Le Meur, L. Morin, F. Racapé, V. Ricordel. Livrable D4.2 of the PERSEE project : Représentation et codage 3D - Rapport intermédiaire - Définitions des softs et architecture. https://hal.science/hal-00773180v1
- [68] V. Ricordel. Des images bien traitées. https://hal.science/hal-01150664v1
- [69] V. Ricordel, A. Drémeau, C. Guillemot, M. Cagnazzo, E. d'Acunto, B. Pesquet-Popescu. State of the art in 2D content representation and compression. https://hal.science/hal-00561449v1
- [70] V. Ricordel, J. Wang, J. Gautier, O. Le Meur, E. Bosc. Perceptual modelling for 2D and 3D. https://hal.science/hal-00561224v1
- [71] O. Brouard, F. Delannay, V. Ricordel, D. Barba. Manuel d'utilisation du logiciel de conditionnement et de pré-analyse du flux vidéo.. https://hal.science/hal-00469901v1
- [72] O. Brouard, F. Delannay, V. Ricordel, D. Barba. Rapport sur les tests des algorithmes de filtrage et de pré-analyse du flux vidéo.. https://hal.science/hal-00469899v1
- [73] F. Delannay, O. Brouard, V. Ricordel, D. Barba. Rapport sur les définitions d'algorithmes de filtrage et de pré-analyse du flux vidéo. https://hal.science/hal-00252678v1
- [74] O. Brouard, F. Delannay, V. Ricordel, D. Barba. Rapport d'étude sur les méthodes de conditionnement et de pré-analyse du flux vidéo. https://hal.science/hal-00255962v1
- [75] V. Ricordel, C. Labit. Quantification vectorielle par emboîtage d'une hiérarchie de réseaux réguliers de points. Rapport technique, 1995 ; INRIA.https://inria.hal.science/inria-00074023v1
- [76] P. Fiche, V. Ricordel, C. Labit. Etude d'algorithmes de quantification vectorielle arborescente pour la compression d'images fixes. Rapport technique, 1994 ; INRIA.https://inria.hal.science/inria-00074429v1