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Work Models that Compute to Describe Multiagent Concepts of Operation: Part 1.

, , , and . J. Aerosp. Inf. Syst., 11 (10): 610-622 (2014)

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Learning to Predict Intent from Gaze During Robotic Hand-Eye Coordination., and . AAAI, page 4596-4602. AAAI Press, (2017)LTL-D*: Incrementally Optimal Replanning for Feasible and Infeasible Tasks in Linear Temporal Logic Specifications., , , , and . CoRR, (2024)Newtonian Action Advice: Integrating Human Verbal Instruction with Reinforcement Learning., and . AAMAS, page 720-727. International Foundation for Autonomous Agents and Multiagent Systems, (2019)Information Modification for Time-Limited Decision Making., and . ICHMS, page 1-6. IEEE, (2020)Committing to interdependence: Implications from game theory for human-robot trust., and . Paladyn J. Behav. Robotics, 12 (1): 481-502 (2021)Effects of Social Factors and Team Dynamics on Adoption of Collaborative Robot Autonomy., , , , , , and . HRI, page 149-157. ACM, (2021)Impact of Missing Information and Strategy on Decision Making Performance., and . SMC, page 3140-3145. IEEE, (2021)Differentiating 'Human in the Loop' Decision Process., and . SMC, page 3129-3133. IEEE, (2021)Work Models that Compute to Describe Multiagent Concepts of Operation: Part 1., , , and . J. Aerosp. Inf. Syst., 11 (10): 610-622 (2014)Toward Interactional Trust for Humans and Automation: Extending Interdependence., and . SmartWorld/SCALCOM/UIC/ATC/CBDCom/IOP/SCI, page 1348-1355. IEEE, (2019)