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In this project different systems for direct user-control for quadcopters are explored.Further more a control interface is developed which combines the display of the video-stream of the aircraft using a head-mounted display with gesture-based flight control using gesture capturing devices (e.g. LeapMotion, Kinect, Myo) and the use of tactile feedback to indicate obstacles in the surrounding of the quadcopter.
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In this project different systems for direct user-control for quadcopters are explored. Furthermore a control interface is developed which combines the display of the video-stream of the aircraft using a head-mounted display with gesture-based flight control using gesture capturing devices (e.g. LeapMotion, Kinect, Myo) and the use of tactile feedback to indicate obstacles in the surrounding of the quadcopter.
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