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Adaptive and Predictive Path Tracking Control for Off-road Mobile Robots., , , and . Eur. J. Control, 13 (4): 419-439 (2007)Automatic guidance of a four-wheel-steering mobile robot for accurate field operations., , , and . J. Field Robotics, 26 (6-7): 504-518 (2009)Data-centric UML profile for agroecology applications: Agricultural autonomous robots monitoring case study., , , , , , , , , and 4 other author(s). Comput. Sci. Inf. Syst., 20 (1): 459-489 (2023)Autonomous Maneuvers of a Farm Vehicle with a Trailed Implement in Headland., , , and . ICINCO (2), page 109-114. INSTICC Press, (2010)Optimal Deformation Control Framework for Elastic Linear Objects., , , , , and . CASE, page 722-728. IEEE, (2022)Data Collection from Buried Sensor Nodes by Means of an Unmanned Aerial Vehicle., , , and . Sensors, 22 (15): 5926 (2022)Evolutionary Algorithm with Geometrical Heuristics for Solving the Close Enough Traveling Salesman Problem: Application to the Trajectory Planning of an Unmanned Aerial Vehicle., , , and . Algorithms, 16 (1): 44 (January 2023)A predictive control framework for edge following: Application to two types of mobile robots., , , , and . CCTA, page 254-260. IEEE, (2020)Sideslip Angles Observer for Vehicle Guidance in Sliding Conditions: Application to Agricultural Path Tracking Tasks., , , and . ICRA, page 3183-3188. IEEE, (2006)Path following of a vehicle-trailer system in presence of sliding: Application to automatic guidance of a towed agricultural implement., , , and . IROS, page 4976-4981. IEEE, (2010)