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Courses of Action Display for Multi-Unmanned Vehicle Control: A Multi-Disciplinary Approach.

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

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Comparing mouse and steady-state visual evoked response-based control., , , , and . Interact. Comput., 15 (4): 603-621 (2003)Future Unmanned Aerial Systems Control: Feedback on Highly Flexible Operator-Automation Delegation Interface Concept., , , , , and . Infotech@Aerospace, (2012)Multi-Unmanned Vehicle Supervisory Control: An Initial Evaluation of Personality Drivers., , and . Infotech@Aerospace, (2012)Human-Autonomy Teaming for Unmanned Vehicle Control: Examination of the Role of Operator Individual Differences., , and . AHFE (10), volume 1210 of Advances in Intelligent Systems and Computing, page 17-23. Springer, (2020)Multiple Remotely Piloted Aircraft Control: Visualization and Control of Future Path., , , , , and . HCI (19), volume 8022 of Lecture Notes in Computer Science, page 231-240. Springer, (2013)Enabling Dynamic Delegation Interactions with Multiple Unmanned Vehicles; Flexibility from Top to Bottom., , , , , and . HCI (17), volume 8020 of Lecture Notes in Computer Science, page 282-291. Springer, (2013)Adaptable (Not Adaptive) Automation: Forefront of Human-Automation Teaming.. Hum. Factors, 64 (2): 269-277 (2022)Visualizations for Communicating Intelligent Agent Generated Courses of Action., , , , , and . HCI (10), volume 11575 of Lecture Notes in Computer Science, page 19-33. Springer, (2019)Evaluation of Interface Modality for Control of Multiple Unmanned Vehicles., , , and . HCI (6), volume 10276 of Lecture Notes in Computer Science, page 15-34. Springer, (2017)Adaptable Operator-Automation Interface for Future Unmanned Aerial Systems Control: Development of a Highly Flexible Delegation Concept Demonstration., , , , , and . Infotech@Aerospace, (2012)