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Section focused on new horizons in telerobotics for real-life applications.

, , , , , and . Advanced Robotics, 32 (13): 681-682 (2018)

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Robust sequential view planning for object recognition using multiple cameras., , and . Image Vision Comput., 27 (8): 1072-1082 (2009)Maneuverability and grasping experiments in teleoperation of nonholonomic/twin-armed robots., and . HAPTICS, page 203-209. IEEE, (2012)Stable Non-linear Force/Position Mapping for Enhanced Telemanipulation of Soft Environments., and . ICRA, page 4307-4312. IEEE, (2007)Improved transparency in bilateral teleoperation with variable time delay., and . IROS, page 4616-4621. IEEE, (2009)Trilateral teleoperation control of kinematically redundant robotic manipulators., and . I. J. Robotics Res., 30 (13): 1643-1664 (2011)Nonlinear modeling and design of initial position estimation and polarity detection of IPM drives., , , and . IECON, page 4059-4064. IEEE, (2015)Cooperative teleoperation control with projective force mappings., and . HAPTICS, page 301-308. IEEE Computer Society, (2010)Discrete-time Multi-model Control for Cooperative Teleoperation under Time Delay., , and . ICRA, page 2921-2926. IEEE, (2006)MILP-based rolling horizon control for microgrids with battery storage., , and . IECON, page 2099-2104. IEEE, (2013)Optimization-based design of a novel hybrid aerial/ground mobile manipulator., , and . IROS, page 2467-2472. IEEE, (2015)