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Up and away: A visually-controlled easy-to-deploy wireless UAV Cyber-Physical testbed

机译:向上和向外:一个视觉控制,易于部署的无线UAV网络物理测试台

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Cyber-Physical Systems (CPS) have the promise of presenting the next evolution in computing with potential applications that include aerospace, transportation, and various automation systems. These applications motivate advances in the different sub-fields of CPS such as mobile computing, context awareness, and computer vision. However, deploying and testing complete CPSs is known to be a complex and expensive task. In this paper, we present the design, implementation, and evaluation of Up and Away (UnA): a testbed for Cyber-Physical Systems that use Unmanned Aerial Vehicles (UAVs) as their main physical component. UnA aims to abstract the control of physical system components to reduce the complexity of UAV oriented CPS experiments. UnA provides APIs to allow for converting CPS algorithm implementations, developed typically for simulations, into physical experiments using a few simple steps. We present two scenarios of using UnA's API to bring mobile-camera-based surveillance algorithms to life, thus exhibiting the ease of use and flexibility of UnA.
机译:网络物理系统(CPS)有望在包括航空航天,交通运输和各种自动化系统在内的潜在应用中展示计算机的下一次发展。这些应用推动了CPS各个子领域的发展,例如移动计算,上下文感知和计算机视觉。但是,众所周知,部署和测试完整的CPS是一项复杂且昂贵的任务。在本文中,我们介绍了“起伏”(UnA)的设计,实施和评估:使用无人飞行器(UAV)作为其主要物理组件的网络物理系统的试验台。 UnA旨在抽象化物理系统组件的控制,以降低面向无人机的CPS实验的复杂性。 UnA提供的API允许使用一些简单的步骤将通常为仿真开发的CPS算法实现转换为物理实验。我们介绍了两种使用UnA API来实现基于移动摄像机的监视算法的方案,从而展示了UnA的易用性和灵活性。

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