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Schedulling Production Based on an Optimized Production Sequencer and Manufacturing Maps., , , , и . ICINCO (2), стр. 273-280. SCITEPRESS, (2023)STEAM Robotic Puzzles to Teach in Primary School. A Sustainable City Project Case., , , и . RiE, том 1023 из Advances in Intelligent Systems and Computing, стр. 65-76. Springer, (2019)Real-Time Path Planning Based on Harmonic Functions under a Proper Generalized Decomposition-Based Framework., , , , , , и . Sensors, 21 (12): 3943 (2021)Real-time solving of dynamic problem in industrial robots., , , , и . Ind. Robot, 38 (2): 119-129 (2011)A Generalized Matlab/ROS/Robotic Platform Framework for Teaching Robotics., , , и . RiE, том 1023 из Advances in Intelligent Systems and Computing, стр. 159-169. Springer, (2019)A Novel Real-Time MATLAB/Simulink/LEGO EV3 Platform for Academic Use in Robotics and Computer Science., , , и . Sensors, 21 (3): 1006 (2021)Mini-Sym 4.0. a Novel Simulation Tool to Calculate Real-time Production Line Productivity., , , , и . ICINCO (Selected Papers), том 793 из Lecture Notes in Electrical Engineering, стр. 1-16. Springer, (2020)Real-Time Matlab-Simulink-Lego EV3 Framework for Teaching Robotics Subjects., , , и . RiE, том 829 из Advances in Intelligent Systems and Computing, стр. 230-240. Springer, (2018)Solving the inverse dynamic control for low cost real-time industrial robot control applications., , , , , и . Robotica, 21 (3): 261-269 (2003)A Novel Model to Analyse the Effect of Deterioration on Machine Parts in the Line Throughput., , , , и . ICINCO, стр. 26-34. ScitePress, (2020)