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Mixed-initiative strategies for real-time scheduling of multiple unmanned vehicles.

, , and . ACC, page 676-682. IEEE, (2012)

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A Field Study of Multimodal Alerts for an Autonomous Threat Detection System., , and . HCI (6), volume 10276 of Lecture Notes in Computer Science, page 393-412. Springer, (2017)Human Augmentation of UAV Cyber-Attack Detection., , , , and . HCI (16), volume 10916 of Lecture Notes in Computer Science, page 154-167. Springer, (2018)Security-Aware Synthesis of Human-UAV Protocols., , , and . ICRA, page 8011-8017. IEEE, (2019)Metric selection for evaluating human supervisory control of unmanned vehicles., and . PerMIS, page 14-21. ACM, (2010)Platform for security-aware design of human-on-the-loop cyber-physical systems., , , , , , and . ICCPS, page 93. ACM, (2017)The tactical Tomahawk conundrum: designing decision support systems for revolutionary domains., and . SMC, page 1583-1588. IEEE, (2003)Identifying Predictive Metrics for Supervisory Control of Multiple Robots., and . IEEE Trans. Robotics, 23 (5): 942-951 (2007)Ethical and social issues in the design of weapon control computer interfaces.. ISTAS/CPTED, page 14-18. IEEE, (2003)Predictive Model for Human-Unmanned Vehicle Systems., , and . JACIC, 6 (11): 585-603 (2009)The Need for Command and Control Instant Message Adaptive Interfaces: Lessons Learned from Tactical Tomahawk Human-in-the-Loop Simulations.. Cyberpsy., Behavior, and Soc. Networking, 7 (6): 653-661 (2004)