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A Distributed Architecture for Human-Drone Teaming: Timing Challenges and Interaction Opportunities

机译:用于人机合作的分布式架构:时间挑战和互动机会

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Drones are expected to operate autonomously, yet they will also interact with humans to solve tasks together. To support civilian human-drone teams, we propose a distributed architecture where sophisticated operations such as image recognition, coordination with humans, and flight-control decisions are made, not on-board the drone, but remotely. The benefits of such an architecture are the increased computational power available for image recognition and the possibility to integrate interfaces for humans. On the downside, communication is necessary, resulting in the delayed reception of commands. In this article, we discuss the design considerations of the distributed approach, a sample implementation on a smartphone, and an application to the concrete use case of bookshelf inventory. Further, we report experimentally-derived first insights into messaging and command response delays with a custom drone connected through Wi-Fi.
机译:预计无人机将自动运营,但它们也将与人类互动以解决任务。 为了支持民用人机团队,我们提出了一种分布式架构,其中进行了复杂的操作,如图像识别,与人类的协调和飞行控制决策,而不是在寄生机上,但远程。 这种架构的好处是可用于图像识别的增加的计算能力以及为人类集成界面的可能性。 在缺点时,需要进行通信,导致命令延迟接收。 在本文中,我们讨论了分布式方法的设计考虑因素,智能手机上的示例实现,以及对书架库存的具体用例的应用。 此外,我们将通过Wi-Fi连接的自定义驱动器报告到消息传递和命令响应延迟中的实验派生的首次见解。

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