Integrated field testing of planetary robotics vision processing: the PRoVisG campaign in Tenerife 2011
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Mark Woods | Ran Li | Jan-Peter Muller | Gerhard Paar | Konrad Willner | Yang Gao | Dave Barnes | L. Waugh | H. R. Graf | T. Pajdla | T. Pajdla | R. Li | M. Woods | J. Muller | K. Willner | G. Paar | Y. Gao | L. Waugh | D. Barnes | Hans-Rainer Graf
[1] K. Di,et al. TOPOGRAPHIC MAPPING CAPABILITY ANALYSIS OF MARS EXPLORATION ROVER 2003 MISSION IMAGERY , 2007 .
[2] Matthew Gunn,et al. Multi-Spectral Vision Processing for the ExoMars 2018 Mission , 2011 .
[3] Yang Gao,et al. Review and analysis of localization and mapping techniques for planetary rovers , 2010 .
[4] Roland Siegwart,et al. A Flexible Technique for Accurate Omnidirectional Camera Calibration and Structure from Motion , 2006, Fourth IEEE International Conference on Computer Vision Systems (ICVS'06).
[5] Tat-Jen Cham,et al. Fast polygonal integration and its application in extending haar-like features to improve object detection , 2010, 2010 IEEE Computer Society Conference on Computer Vision and Pattern Recognition.
[6] Tomás Pajdla,et al. Hallucination-Free Multi-View Stereo , 2010, ECCV Workshops.
[7] T. Pajdla,et al. 3D Surface Models from Opportunity MER NavCam , 2010 .
[8] Yang Gao,et al. A survey on terrain assessment techniques for autonomous operation of planetary robots , 2010 .
[9] Gerhard Paar. Unification and Enhancement of Planetary Robotic Vision Ground Processing: The EC FP7 Project PRoVisG , 2009 .
[10] David R. Thompson,et al. Autonomous science during large‐scale robotic survey , 2011, J. Field Robotics.
[11] Raymond E. Arvidson,et al. MER Spirit rover localization: Comparison of ground image– and orbital image–based methods and science applications , 2011 .