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An Anticipative Control Approach and Interactive GUI to Enhance the Rendering of the Distal Robot Interaction with its Environment during Robotized Tele-Echography: Interactive Platform for Robotized Tele-Echography.

, , , , , , , , , and . Int. J. Monit. Surveillance Technol. Res., 1 (3): 1-19 (2013)

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Robotic Engineer's Specifications for a Well-Fitted Model-Driven Control Architecture for Robots., , , and . SIMPAR, volume 8810 of Lecture Notes in Computer Science, page 170-181. Springer, (2014)Inverse versus direct kinematics model based on flatness and escape lanes to control CyCab mobile robot., , and . ICRA, page 2240-2245. IEEE, (2008)A predictive control approach and interactive GUI to enhance distal environment rendering during robotized tele-echography: Interactive platform for robotized telechography., , , , , , , , , and . BIBE, page 233-239. IEEE Computer Society, (2012)Simulation and Experimental Evaluation of the EKF Simultaneous Localization and Mapping Algorithm on the Wifibot Mobile Robot., , , , and . J. Artif. Intell. Soft Comput. Res., 8 (2): 91-101 (2018)An Anticipative Control Approach and Interactive GUI to Enhance the Rendering of the Distal Robot Interaction with its Environment during Robotized Tele-Echography: Interactive Platform for Robotized Tele-Echography., , , , , , , , , and . Int. J. Monit. Surveillance Technol. Res., 1 (3): 1-19 (2013)Direct Model Navigation issue shifted in the continuous domain by a predictive control approach for mobile robots., , , and . ICRA, page 2566-2573. IEEE, (2011)A Pneumatic Haptic Probe Replica for Tele-Robotized Ultrasonography., , , , , , , and . ICSM, volume 11010 of Lecture Notes in Computer Science, page 79-89. Springer, (2018)Escape lanes navigator - to control "raoul" autonomous mobile robot., , and . ICINCO-RA (2), page 45-52. INSTICC Press, (2007)978-972-8865-83-2.