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Human-Initiative Variable Autonomy: An Experimental Analysis of the Interactions Between a Human Operator and a Remotely Operated Mobile Robot which also Possesses Autonomous Capabilities.

, , , and . AAAI Fall Symposia, AAAI Press, (2016)

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Mixed-Initiative variable autonomy for remotely operated mobile robots., , and . CoRR, (2019)A Bayesian-Based Approach to Human Operator Intent Recognition in Remote Mobile Robot Navigation., , , , and . SMC, page 125-131. IEEE, (2021)Fessonia: a Method for Real-Time Estimation of Human Operator Workload Using Behavioural Entropy., , , and . SMC, page 1325-1331. IEEE, (2021)Variable Autonomy for Human-Robot Teaming (VAT)., , , , and . HRI (Companion), page 932-934. ACM, (2023)Who's in Charge Here? A Survey on Trustworthy AI in Variable Autonomy Robotic Systems., , , and . ACM Comput. Surv., 56 (7): 184:1-184:32 (July 2024)A Taxonomy of Semantic Information in Robot-Assisted Disaster Response., , , and . SSRR, page 285-292. IEEE, (2022)VFH+ based shared control for remotely operated mobile robots., , , , and . SSRR, page 366-373. IEEE, (2020)Learning effects in variable autonomy human-robot systems: how much training is enough?, , and . SMC, page 720-727. IEEE, (2019)Experimental analysis of a variable autonomy framework for controlling a remotely operating mobile robot., , , , , and . IROS, page 3581-3588. IEEE, (2016)Human-Initiative Variable Autonomy: An Experimental Analysis of the Interactions Between a Human Operator and a Remotely Operated Mobile Robot which also Possesses Autonomous Capabilities., , , and . AAAI Fall Symposia, AAAI Press, (2016)