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A Neuro-Fuzzy Solution for Fine-Motion Control Based on Vision and Force Sensors.

, , and . ICRA, page 2965-2970. IEEE Computer Society, (1998)

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Fully Automatic Real-Time 3D Object Tracking using Active Contour and Appearance Models., and . J. Multim., 1 (7): 62-70 (2006)Trajectory Prediction Based on Planning Method Considering Collision Risk., , , and . ICARM, page 466-470. IEEE, (2020)CARDSFlow: An End-to-End Open-Source Physics Environment for the Design, Simulation and Control of Musculoskeletal Robots., , , , , and . Humanoids, page 245-250. IEEE, (2018)GPU accelerated ray launching for high-fidelity virtual test drives of VANET applications., , , and . HPCS, page 262-268. IEEE, (2015)Skripte als ereignisorientierte Repräsentationsmechanismen in der Robotik., , and . GI Jahrestagung (1), volume 126 of Informatik-Fachberichte, page 656-670. Springer, (1986)A New Type of Fuzzy Logic System for Adaptive Modeling and Control., , and . Fuzzy Days, volume 1226 of Lecture Notes in Computer Science, page 363-380. Springer, (1997)Kinodynamic Motion Planning Using Multi-Objective optimization., and . Intelligent Vehicles Symposium, page 1185-1190. IEEE, (2018)Development of a Robot Agent for Interactive Assembly., , and . DARS, page 277-286. Springer, (1998)Modelling multivariate data by neuro-fuzzy systems., and . CIFEr, page 267-270. IEEE, (1999)Fast dense stereo correspondences by binary locality sensitive hashing., , , and . ICRA, page 105-110. IEEE, (2015)