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Autonomous navigation of mobile robot based on DGPS/INS sensor fusion by EKF in semi-outdoor structured environment., , , , и . IROS, стр. 1222-1227. IEEE, (2010)Intelligent Assembly/Disassembly System with a Haptic Device for Aircraft Parts Maintenance., и . International Conference on Computational Science (2), том 4488 из Lecture Notes in Computer Science, стр. 760-767. Springer, (2007)Urban localization method for mobile robots based on dead reckoning sensors, GPS, and map matching., , , и . SMC, стр. 2363-2368. IEEE, (2011)Artificial landmark map building method based on grid SLAM in large scale indoor environment., , , и . SMC, стр. 4251-4256. IEEE, (2010)Initial Development of Image Processing Based Computer Vision Technology on Robotic Arm Manipulator for Tool Wear Monitoring on Micro-milling., , , , , и . ICMRE, стр. 22-28. IEEE, (2021)Development of Robotic Arm Manipulator Mechanical System for Micromilling Tool Wear Monitoring Based on Computer Vision., , , , , и . ICMRE, стр. 156-163. IEEE, (2021)An enhanced haptic assembly simulation system for the efficiency of assembly tasks., , , и . IROS, стр. 1241-1246. IEEE, (2009)Augmented EKF localization for mobile robots in urban environments., , , и . ROBIO, стр. 986-991. IEEE, (2010)Development of Robotic Arm Manipulator Control System for Micromilling Tool Wear Monitoring Based on Computer Vision., , , , , и . ICMRE, стр. 69-76. IEEE, (2021)The Digital Twin Application for Micro-Tool Wear Monitoring with Open-Source CAD System., , и . APMS (2), том 664 из IFIP Advances in Information and Communication Technology, стр. 11-18. Springer, (2022)