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Control Strategies for Heterogeneous, Autonomous Robot Swarms.

, , , , , and . RiTA, volume 208 of Advances in Intelligent Systems and Computing, page 525-535. Springer, (2012)

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Deep, spatially coherent Occupancy Maps based on Radar Measurements., , and . CoRR, (2019)General vegetation Detection using an Integrated Vision System., , and . I. J. Robotics and Automation, (2013)3D object recognition and localization employing analysis by synthesis., , , , , and . IADIS AC (1), page 132-140. IADIS Press, (2009)Probabilistic approach to self-localization for autonomous mobile outdoor robotics based on hybrid map knowledge., , and . ITSC, page 1791-1798. IEEE, (2013)Structure overview of vegetation detection. A novel approach for efficient vegetation detection using an active lighting system., , and . Robotics and Autonomous Systems, 60 (4): 498-508 (2012)Architecture of an autonomous mini unmanned aerial vehicle based on a commercial platform., , , , and . ISR/ROBOTIK, page 1-6. VDE Verlag, (2010)Control Strategies for Heterogeneous, Autonomous Robot Swarms., , , , , and . RiTA, volume 208 of Advances in Intelligent Systems and Computing, page 525-535. Springer, (2012)Optical Position Stabilization of an UAV for Autonomous Landing., , , , and . ROBOTIK, VDE-Verlag, (2012)Spreading algorithm for efficient vegetation detection in cluttered outdoor environments., , and . Robotics and Autonomous Systems, 60 (12): 1498-1507 (2012)A novel approach for a double-check of passable vegetation detection in autonomous ground vehicles., , , , and . ITSC, page 230-236. IEEE, (2012)