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On-demand Trajectory Planning with Load Sway Suppression and Obstacles Avoidance in Automated Overhead Traveling Crane System., , and . CASE, page 1321-1326. IEEE, (2019)An algorithm for on-line path planning of autonomous mobile overhead traveling crane based on obstacle information., , , , and . CASE, page 914-919. IEEE, (2012)Trajectory Control with Consideration of Vibration Suppression in Straight Transfer System with Arbitrary Initial State., , and . SII, page 339-344. IEEE, (2024)The Development of an Autonomous Mobile Crane System Considering On-Line Obstacle Recognition and Path Planning., , and . IJAT, 2 (2): 131-140 (2008)Experiment of virtual tug-of-war via internet with multilateral telecontrol., , , , , , , , , and 7 other author(s). NETGAMES, page 1-3. IEEE, (2014)Trajectory Planning with Consideration for Load Sway Suppression and Obstacles Avoidance using Artificial Potential Method and Sequential Quadratic Programming in Automated Overhead Traveling Crane., , and . SII, page 371-376. IEEE, (2020)A design of an overhead crane tele-operation control system., , , , and . ICM, page 868-873. IEEE, (2013)Robust Sliding Mode Control with Integral Sliding surface of an underactuated rotary hook system., , , , and . AIM, page 998-1003. IEEE, (2017)Load-position control of overhead travelling crane in terms of fixed-pole approach for 3-D transfer path., and . ECC, page 1070-1075. IEEE, (1999)