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Selection of trajectory parameters for dynamic pouring tasks based on exploitation-driven updates of local metamodels., , и . Robotica, 36 (1): 141-166 (2018)IMACS: A Case Study in Real-World Planning., , и . IEEE Intelligent Systems, 13 (3): 49-60 (1998)Geometrical algorithms for automated design of side actions in injection moulding of complex parts., и . Comput. Aided Des., 39 (10): 882-897 (2007)Geometric algorithms for automated design of multi-piece permanent molds., и . Comput. Aided Des., 36 (3): 241-260 (2004)Systematic approach to analysing the manufacturability of machined parts., и . Comput. Aided Des., 27 (5): 323-342 (1995)Geometric algorithms for automated design of rotary-platen multi-shot molds., и . Comput. Aided Des., 36 (12): 1171-1187 (2004)Robotic bimanual cleaning of deformable objects with online learning of part and tool models., , , и . CASE, стр. 626-632. IEEE, (2016)Adaptive generation of challenging scenarios for testing and evaluation of autonomous vehicles., , , и . J. Syst. Softw., (2018)Finding Mold-Piece Regions Using Computer Graphics Hardware., и . GMP, том 4077 из Lecture Notes in Computer Science, стр. 655-662. Springer, (2006)GPU based generation of state transition models using simulations for unmanned surface vehicle trajectory planning., , и . Robotics Auton. Syst., 60 (12): 1457-1471 (2012)