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Gesture Commands for Controlling High-Level UAV Behavior

机译:用于控制高级无人机行为的手势命令

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In this paper, an accelerometer and gyroscope are used to sense gesture commands, which are then classified using a logistic regression model. Seven gestures were chosen and mapped to specific behaviors that a fixed wing unmanned air vehicle could accomplish. These behaviors specified various searching, following, and tracking patterns that could be used in a dynamic environment. The system was trained to recognize the seven gestures and then tested in a hardware-in-the-loop simulation. The system was able to identify all gestures with an overall accuracy of 90% and with five of the seven gestures being accurately identified at least 94% of the time. Each of the behaviors associated with the gestures was tested in simulation and the ability to dynamically switch between behaviors was proven. The results show that the system can be used as a natural interface to assist an operator in directing an unmanned air vehicle’s behaviors.
机译:在本文中,加速度计和陀螺仪用于感测手势命令,然后使用逻辑回归模型对其进行分类。选择了七个手势并将其映射到固定翼无人飞行器可以完成的特定行为。这些行为指定了可以在动态环境中使用的各种搜索,跟踪和跟踪模式。该系统经过培训可以识别这七个手势,然后在硬件在环仿真中进行了测试。该系统能够以90%的总体准确度识别所有手势,并且至少在94%的时间中可以准确识别出七个手势中的五个。在模拟中测试了与手势相关的每个行为,并证明了在行为之间进行动态切换的能力。结果表明,该系统可以用作自然界面,以帮助操作员指示无人驾驶飞机的行为。

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