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GrowBag graphs for keyword ? (Num. hits/coverage)
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The graphs summarize 18 occurrences of 14 keywords
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Results
Found 63 publication records. Showing 63 according to the selection in the facets
Hits ?▲ |
Authors |
Title |
Venue |
Year |
Link |
Author keywords |
75 | A. Elizabeth Seward, Daniel H. Ashmead, Bobby Bodenheimer |
Discrimination and estimation of time-to-contact for approaching traffic using a desktop environment. |
APGV |
2006 |
DBLP DOI BibTeX RDF |
pedestrian traffic crossing, time-to-contact, psychophysics |
52 | Manolis I. A. Lourakis, Stelios C. Orphanoudakis |
Using Planar Parallax to Estimate the Time-to-Contact. |
CVPR |
1999 |
DBLP DOI BibTeX RDF |
Planar Parallax, Time to Contact, Optical Flow, Motion Analysis, Visual Navigation |
34 | A. Elizabeth Seward, Daniel H. Ashmead, Bobby Bodenheimer |
Using virtual environments to assess time-to-contact judgments from pedestrian viewpoints. |
ACM Trans. Appl. Percept. |
2007 |
DBLP DOI BibTeX RDF |
time-to-contact (TTC), Virtual reality (VR) |
33 | Edgard Morya, Marco Bertolassi, Adhemar Pettri Filho, Carlos Hitoshi Morimoto, Ronald Ranvaud |
Eye movements and motor programming in a Time-To-Contact task. |
ETRA |
2006 |
DBLP DOI BibTeX RDF |
|
28 | Guillem Alenyà, Amaury Nègre, James L. Crowley |
A comparison of three methods for measure of Time to Contact. |
IROS |
2009 |
DBLP DOI BibTeX RDF |
|
24 | Jun Sato, Roberto Cipolla |
Affine Reconstruction of Curved Surfaces from Uncalibrated Views of Apparent Contours. |
IEEE Trans. Pattern Anal. Mach. Intell. |
1999 |
DBLP DOI BibTeX RDF |
affine reconstruction, uncalibrated reconstruction, time-to-contact, epipolar geometry, Curved surfaces, apparent contours |
17 | Roberto Cipolla, Andrew Blake 0001 |
Surface Orientation and Time to Contact from Image Divergence and Deformation. |
ECCV |
1992 |
DBLP DOI BibTeX RDF |
|
12 | Chris McCarthy, Nick Barnes |
A Robust Docking Strategy for a Mobile Robot using Flow Field Divergence. |
IROS |
2006 |
DBLP DOI BibTeX RDF |
|
12 | Takayuki Shiose, Kiyohide Ito, Kazuhiko Mamada |
Identification of Acoustic Factors for Perception of Crossability Common to Blind and Sighted Pedestrians. |
ICCHP |
2006 |
DBLP DOI BibTeX RDF |
|
10 | Yuheng Shi, Zehao Huang, Yan Yan, Naiyan Wang, Xiaojie Guo 0001 |
TSTTC: A Large-Scale Dataset for Time-to-Contact Estimation in Driving Scenarios. |
CoRR |
2023 |
DBLP DOI BibTeX RDF |
|
10 | Urbano Miguel Nunes, Laurent Udo Perrinet, Sio-Hoi Ieng |
Time-to-Contact Map by Joint Estimation of Up-to-Scale Inverse Depth and Global Motion using a Single Event Camera. |
ICCV |
2023 |
DBLP DOI BibTeX RDF |
|
10 | Levi Burner, Nitin J. Sanket, Cornelia Fermüller, Yiannis Aloimonos |
TTCDist: Fast Distance Estimation From an Active Monocular Camera Using Time-to-Contact. |
ICRA |
2023 |
DBLP DOI BibTeX RDF |
|
10 | Levi Burner, Nitin J. Sanket, Cornelia Fermüller, Yiannis Aloimonos |
Fast Active Monocular Distance Estimation from Time-to-Contact. |
CoRR |
2022 |
DBLP DOI BibTeX RDF |
|
10 | Olaf Sikorski, Dario Izzo, Gabriele Meoni |
Event-Based Spacecraft Landing Using Time-To-Contact. |
CVPR Workshops |
2021 |
DBLP BibTeX RDF |
|
10 | Liang Wang, Berthold K. P. Horn |
Time-to-contact control: improving safety and reliability of autonomous vehicles. |
Int. J. Bio Inspired Comput. |
2020 |
DBLP DOI BibTeX RDF |
|
10 | Augusto Gómez Eguíluz, Juan Pablo Rodríguez-Gómez, José Ramiro Martinez de Dios, Aníbal Ollero |
Asynchronous Event-based Line Tracking for Time-to-Contact Maneuvers in UAS. |
IROS |
2020 |
DBLP DOI BibTeX RDF |
|
10 | Ángel Juan Sánchez-García, Homero V. Ríos-Figueroa, Hugues Garnier, Gustavo Quintana-Carapia, Ericka-Janet Rechy-Ramírez, Antonio Marín-Hernández |
Predicting collisions: time-to-contact forecasting based on probabilistic segmentation and system identification. |
Adv. Robotics |
2018 |
DBLP DOI BibTeX RDF |
|
10 | Laksmita Rahadianti, Wooseong Jeong, Fumihiko Sakaue, Jun Sato |
Time-to-Contact in Scattering Media. |
IEICE Trans. Inf. Syst. |
2017 |
DBLP DOI BibTeX RDF |
|
10 | Alexander Amini, Berthold K. P. Horn, Alan Edelman |
Accelerated Convolutions for Efficient Multi-Scale Time to Contact Computation in Julia. |
CoRR |
2016 |
DBLP BibTeX RDF |
|
10 | Haijie Zhang, Jianguo Zhao |
Biologically inspired vision based control using featureless time-to-contact estimations. |
AIM |
2016 |
DBLP DOI BibTeX RDF |
|
10 | Ángel Juan Sánchez-García, Homero Vladimir Ríos-Figueroa, Antonio Marín-Hernández, María Karen Cortés Verdín, Gerardo Contreras Vega |
Estimation of time-to-contact from Tau-margin and statistical analysis of behavior. |
IWSSIP |
2016 |
DBLP DOI BibTeX RDF |
|
10 | David Howard, Farid Kendoul |
Towards Evolved Time to Contact Neurocontrollers for Quadcopters. |
ACALCI |
2016 |
DBLP DOI BibTeX RDF |
|
10 | Laksmita Rahadianti, Fumihiko Sakaue, Jun Sato |
Time-to-Contact from Underwater Images. |
VISIGRAPP (3: VISAPP) |
2016 |
DBLP DOI BibTeX RDF |
|
10 | Guido C. H. E. de Croon, Daniel Alazard, Dario Izzo |
Controlling spacecraft landings with constantly and exponentially decreasing time-to-contact. |
IEEE Trans. Aerosp. Electron. Syst. |
2015 |
DBLP DOI BibTeX RDF |
|
10 | Keisuke Koyama, Yosuke Suzuki, Aiguo Ming, Makoto Shimojo |
Grasping control based on time-to-contact method for a robot hand equipped with proximity sensors on fingertips. |
IROS |
2015 |
DBLP DOI BibTeX RDF |
|
10 | Ángel Juan Sánchez-García, Homero Vladimir Ríos-Figueroa, Antonio Marín-Hernández, Gerardo Contreras Vega |
Decision making for obstacle avoidance in autonomous mobile robots by time to contact and optical flow. |
CONIELECOMP |
2015 |
DBLP DOI BibTeX RDF |
|
10 | Yukitoshi Watanabe, Fumihiko Sakaue, Jun Sato |
Time-to-contact from image intensity. |
CVPR |
2015 |
DBLP DOI BibTeX RDF |
|
10 | Wooseong Jeong, Laksmita Rahadianti, Fumihiko Sakaue, Jun Sato |
Time-to-Contact in Scattering Media. |
VISAPP (3) |
2015 |
DBLP DOI BibTeX RDF |
|
10 | Yukitoshi Watanabe, Fumihiko Sakaue, Jun Sato |
Time-to-Contact from Photometric Information. |
IPSJ Trans. Comput. Vis. Appl. |
2014 |
DBLP DOI BibTeX RDF |
|
10 | Farid Kendoul |
Four-dimensional guidance and control of movement using time-to-contact: Application to automated docking and landing of unmanned rotorcraft systems. |
Int. J. Robotics Res. |
2014 |
DBLP DOI BibTeX RDF |
|
10 | Yuichi Kawai, Kazuyuki Ito |
Estimation method for time to contact from visual information - A simple approach that requires no recognition of objects. |
ROBIO |
2014 |
DBLP DOI BibTeX RDF |
|
10 | Fatima Zahra Benamar, Sanaa El Fkihi, Cédric Demonceaux, El Mustapha Mouaddib, Driss Aboutajdine |
Gradient-based time to contact on paracatadioptric camera. |
ICIP |
2013 |
DBLP DOI BibTeX RDF |
|
10 | Carl Pankok, David B. Kaber |
Mitigating Biases in Time-to-Contact Judgments with Cockpit Displays of Traffic Information. |
SMC |
2013 |
DBLP DOI BibTeX RDF |
|
10 | N. Andrew Browning |
A Neural Circuit for Robust Time-to-Contact Estimation Based on Primate MST. |
Neural Comput. |
2012 |
DBLP DOI BibTeX RDF |
|
10 | Matthias S. Keil, Joan López-Moliner |
Unifying Time to Contact Estimation and Collision Avoidance across Species. |
PLoS Comput. Biol. |
2012 |
DBLP DOI BibTeX RDF |
|
10 | Toshihiro Kawase, Keiichi Ohishi, Kazuya Yoneyama, Hiroyuki Kambara, Yasuharu Koike |
Recalibration of time to contact. |
Robotics Auton. Syst. |
2012 |
DBLP DOI BibTeX RDF |
|
10 | Maximilian Muffert, Timo Milbich, David Pfeiffer, Uwe Franke |
May I enter the roundabout? A time-to-contact computation based on stereo-vision. |
Intelligent Vehicles Symposium |
2012 |
DBLP DOI BibTeX RDF |
|
10 | Chris McCarthy, Nick Barnes |
Time-to-contact maps for navigation with a low resolution visual prosthesis. |
EMBC |
2012 |
DBLP DOI BibTeX RDF |
|
10 | Fatima Zahra Benamar, Cédric Demonceaux, Sanaa El Fkihi, El Mustapha Mouaddib, Driss Aboutajdine |
Time to contact estimation on paracatadioptric cameras. |
ICPR |
2012 |
DBLP BibTeX RDF |
|
10 | Hiroyuki Kambara, Keiichi Ohishi, Yasuharu Koike |
Learning Strategy in Time-to-Contact Estimation of Falling Objects. |
J. Adv. Comput. Intell. Intell. Informatics |
2011 |
DBLP DOI BibTeX RDF |
|
10 | George A. Geri, Rob Gray, Richard Grutzmacher |
Simulating time-to-contact when both target and observer are in motion. |
Displays |
2010 |
DBLP DOI BibTeX RDF |
|
10 | Yukimasa Kaneta, Yuki Hagisaka, Kazuyuki Ito |
Determination of time to contact and application to timing control of mobile robot. |
ROBIO |
2010 |
DBLP DOI BibTeX RDF |
|
10 | Yukimasa Kaneta, Yasuhiro Katsuyama, Kazuyuki Ito |
Determination of time to contact using a compound eye sensor. |
Artif. Life Robotics |
2009 |
DBLP DOI BibTeX RDF |
|
10 | Maria Sagrebin, Josef Pauli |
Improved Time-to-Contact Estimation by Using Information from Image Sequences. |
AMS |
2009 |
DBLP DOI BibTeX RDF |
|
10 | Guillem Alenyà, Amaury Nègre, James L. Crowley |
Time To Contact for Obstacle Avoidance. |
ECMR |
2009 |
DBLP BibTeX RDF |
|
10 | Dennis Müller 0002, Josef Pauli, Christian Nunn, Steffen Michael Görmer, Stefan Müller-Schneiders |
Time to contact estimation using interest points. |
ITSC |
2009 |
DBLP DOI BibTeX RDF |
|
10 | Rong Liu, Max Q.-H. Meng |
Time-to-Contact Information Estimation for Monocular Mobile Robots. |
Int. J. Inf. Acquis. |
2008 |
DBLP DOI BibTeX RDF |
|
10 | Patricio Nebot, Enric Cervera |
Cooperative navigation using the optical flow and time-to-contact techniques. |
ICARCV |
2008 |
DBLP DOI BibTeX RDF |
|
10 | Mauro Di Marco, Andrea Garulli, Domenico Prattichizzo, Antonio Vicino |
A set theoretic approach for time-to-contact estimation in dynamic vision. |
Autom. |
2003 |
DBLP DOI BibTeX RDF |
|
10 | Paolo Questa, Giulio Sandini |
Time to contact computation with a space-variant retina-like C-mos sensor. |
IROS |
1996 |
DBLP DOI BibTeX RDF |
|
10 | Giacomo Indiveri, Jörg Kramer, Christof Koch |
Parallel analog VLSI architectures for computation of heading direction and time-to-contact. |
NIPS |
1995 |
DBLP BibTeX RDF |
|
10 | Jens Arnspang, Knud Henriksen, Robert Stahr |
Estimating Time to Contact with Curves, avoiding Calibration and Aperture Problem. |
CAIP |
1995 |
DBLP DOI BibTeX RDF |
|
10 | W. Brent Seales |
Measuring Time-To-Contact Using Active Camera Control. |
CAIP |
1995 |
DBLP DOI BibTeX RDF |
|
7 | Breno de Medeiros |
Community-Centric Vanilla-Rollback Access, or: How I Stopped Worrying and Learned to Love My Computer. |
Security Protocols Workshop |
2005 |
DBLP DOI BibTeX RDF |
|
7 | Sridhar R. Kundur, Daniel Raviv, Ernest Kent |
An image-based visual-motion-cue for autonomous navigatio. |
CVPR |
1997 |
DBLP DOI BibTeX RDF |
visual-motion-cue, visual motion cue, Hybrid Visual Threat Cue, 3D textured surface, sequence of images, active vision, active vision, collision avoidance, visual navigation, autonomous navigation |
7 | Cornelia Fermüller, Yiannis Aloimonos |
The role of fixation in visual motion analysis. |
Int. J. Comput. Vis. |
1993 |
DBLP DOI BibTeX RDF |
|
6 | Amaury Nègre, James L. Crowley, Christian Laugier |
Scale Invariant Detection and Tracking of Elongated Structures. |
ISER |
2008 |
DBLP DOI BibTeX RDF |
|
6 | David William Murray 0001, Kevin J. Bradshaw, Philip F. McLauchlan, Ian D. Reid 0001, Paul M. Sharkey |
Driving saccade to pursuit using image motion. |
Int. J. Comput. Vis. |
1995 |
DBLP DOI BibTeX RDF |
|
6 | Chris McCarthy, Nick Barnes, Robert E. Mahony |
A Robust Docking Strategy for a Mobile Robot Using Flow Field Divergence. |
IEEE Trans. Robotics |
2008 |
DBLP DOI BibTeX RDF |
|
6 | Yehu Shen, Xin Du, Jilin Liu |
Monocular Vision Based Obstacle Detection for Robot Navigation in Unstructured Environment. |
ISNN (1) |
2007 |
DBLP DOI BibTeX RDF |
|
6 | Jeffrey A. Fayman, Oded Sudarsky, Ehud Rivlin, Michael Rudzsky |
Zoom tracking and its applications. |
Mach. Vis. Appl. |
2001 |
DBLP DOI BibTeX RDF |
Zoom tracking, Depth from zoom, Optical flow, Active vision, Autofocus |
6 | Stephen Grossberg |
The Complementary Brain (Abstract). |
ICANN |
2001 |
DBLP DOI BibTeX RDF |
|
6 | David Sinclair, Boubakeur Boufama |
Independent motion segmentation and collision prediction for road vehicles. |
ECCV (1) |
1994 |
DBLP DOI BibTeX RDF |
occlusion, collision avoidance, Motion segmentation |
Displaying result #1 - #63 of 63 (100 per page; Change: )
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