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Byzantine fault tolerance for collaborative editing with commutative operations.

, , , , , , , and . EIT, page 246-251. IEEE, (2016)

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A computationally efficient neural dynamics approach to trajectory planning of an intelligent vehicle., , , and . IJCNN, page 934-939. IEEE, (2014)Optimal Trajectory Planning for Multiple Waypoint Path Planning using Tabu Search., and . UEMCON, page 497-501. IEEE, (2018)Real-time area-covering operations with obstacle avoidance for cleaning robots., , and . IROS, page 2359-2364. IEEE, (2002)Magnetic Bacterial Optimization Algorithm for Mobile Robot Path Planning., , and . BIC-TA (2), volume 682 of Communications in Computer and Information Science, page 334-339. Springer, (2016)Robust control design for multi-player nonlinear systems with input disturbances via adaptive dynamic programming., , , and . Neurocomputing, (2019)Inverse motion method for the stabilization of underactuated inertia wheel pendulum., , , , , and . I. J. Robotics and Automation, (2019)Complete Coverage Path Planning of Autonomous Underwater Vehicle Based on GBNN Algorithm., , , and . J. Intell. Robotic Syst., 94 (1): 237-249 (2019)Sensor-based autonomous robot navigation under unknown environments with grid map representation., , , , and . SIS, page 98-104. IEEE, (2014)A hybrid system for multi-goal navigation and map building of an autonomous vehicle in unknown environments., , , , and . ROBIO, page 1228-1233. IEEE, (2013)Real-time Map Building and Area Coverage in Unknown Environments., , and . ICRA, page 1736-1741. IEEE, (2005)