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Optimal deployment of robotic teams for autonomous wilderness search and rescue.

, , and . IROS, page 4544-4549. IEEE, (2011)

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A learning-based control architecture for an assistive robot providing social engagement during cognitively stimulating activities., and . ICRA, page 3928-3933. IEEE, (2011)Active Task-Space Sensing and Localization of Autonomous Vehicles., , and . ICRA, page 3770-3775. IEEE, (2005)Neural-network-based docking of autonomous vehicles., , , and . ITSC, page 1574-1579. IEEE, (2006)Directional-Sensor Network Deployment Planning for Mobile-Target Search., , , and . Robotics, 9 (4): 82 (2020)Multi-robot Deployment for Wilderness Search and Rescue., , , and . Int. J. Robotics Autom., (2016)A Multirobot Person Search System for Finding Multiple Dynamic Users in Human-Centered Environments., , and . IEEE Trans. Cybern., 53 (1): 628-640 (2023)The search for survivors: Cooperative human-robot interaction in search and rescue environments using semi-autonomous robots., , , and . ICRA, page 2858-2863. IEEE, (2010)Minimizing task-induced stress in cognitively stimulating activities using an intelligent socially assistive robot., and . RO-MAN, page 296-301. IEEE, (2011)A learning from demonstration system architecture for robots learning social group recreational activities., and . IROS, page 808-814. IEEE, (2016)End-to-End Deep Reinforcement Learning for Exoskeleton Control., , and . SMC, page 4294-4301. IEEE, (2020)