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Designing for Mixed-Initiative Interactions between Human and Autonomous Systems in Complex Environments.

, , and . SMC, page 1386-1390. IEEE, (2015)

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An Overview of Humans and Autonomy for Military Environments: Safety, Types of Autonomy, Agents, and User Interfaces., , , , and . HCI (17), volume 8020 of Lecture Notes in Computer Science, page 243-252. Springer, (2013)Antecedents of trust in human-robot collaborations., , , , and . CogSIMA, page 175-178. IEEE, (2011)Agent Transparency for Human-Agent Teaming Effectiveness., and . SMC, page 1381-1385. IEEE, (2015)Effects of operator spatial ability on uav-guided ground navigation.. HRI, page 139-140. ACM, (2010)Effects of unreliable automation and individual differences on supervisory control of multiple ground robots., , and . HRI, page 371-378. ACM, (2011)RoboLeader: an agent for supervisory control of multiple robots., , and . HRI, page 81-82. ACM, (2010)Human Performance Issues and User Interface Design for Teleoperated Robots., , and . IEEE Trans. Syst. Man Cybern. Part C, 37 (6): 1231-1245 (2007)A Meta-Analysis of Factors Influencing the Development of Trust in Automation: Implications for Understanding Autonomy in Future Systems., , , and . Hum. Factors, 58 (3): 377-400 (2016)Human-Autonomy Teaming and Agent Transparency., , , , , and . IUI Companion, page 28-31. ACM, (2016)A Proposed Approach for Determining the Influence of Multimodal Robot-of-Human Transparency Information on Human-Agent Teams., , , and . HCI (14), volume 9744 of Lecture Notes in Computer Science, page 296-307. Springer, (2016)