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Comparing Usability of User Interfaces for Robotic Telepresence.

, , , , and . VISIGRAPP (2: HUCAPP), page 46-54. SciTePress, (2017)

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Adjustable Autonomy for UAV Supervision Applications Through Mental Workload Assessment Techniques., , , , and . IHCI, volume 10688 of Lecture Notes in Computer Science, page 32-44. Springer, (2017)A Cloud Based Service for Management and Planning of Autonomous UAV Missions in Smart City Scenarios., , , , , , , and . MESAS, volume 8906 of Lecture Notes in Computer Science, page 20-26. Springer, (2014)Spatial Augmented Reality meets robots: Human-machine interaction in cloud-based projected gaming environments., , , and . ICCE, page 176-179. IEEE, (2017)An Application of Laser-Based Autonomous Navigation for Data-Center Monitoring., , , , , , and . IAS, volume 302 of Advances in Intelligent Systems and Computing, page 95-107. Springer, (2014)Immersive Virtual Reality-Based Simulation to Support the Design of Natural Human-Robot Interfaces for Service Robotic Applications., , , , , , and . AVR (1), volume 9768 of Lecture Notes in Computer Science, page 33-51. Springer, (2016)The Impact of Field of View on Robotic Telepresence Navigation Tasks., , , and . VISIGRAPP (Revised Selected Papers), volume 983 of Communications in Computer and Information Science, page 66-81. Springer, (2017)Comparing Usability of User Interfaces for Robotic Telepresence., , , , and . VISIGRAPP (2: HUCAPP), page 46-54. SciTePress, (2017)