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Omni-Directional Hovercraft Design As a Foundation for MAV Education

机译:全方位气垫船设计为MAV教育的基础

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Quad-rotor Micro Aerial Vehicles (MAVs) are used widely in research and increasingly in commercial applications as the cost of these platforms has dropped. The cost of entry, however, is still high in large part due to the time and effort involved in repairing vehicles after crashes while learning about the system design and dynamics. In this paper, we present an omni-directional hovercraft, which has dynamics similar to MAVs and can be used as an educational platform to teach students about the behavior and control of MAV-like platforms with minimal cost and effort. Teaching students about the capabilities and challenges associated with MAVs is critical for educating future engineers and scientists that will develop and use the next generation of MAVs. In addition, the hovercraft provides a safe platform for researchers to test control and coordination algorithms before trying them on higher-cost MAVs.
机译:当这些平台的成本下降时,Quad-Rotor Micro Acial车辆(MAVS)广泛使用,越来越多地用于商业应用。 然而,由于在学习系统设计和动态的情况下修复车辆的时间和努力,进入的进入费用仍然很高。 在本文中,我们介绍了一个全方位气垫船,它具有类似于MAV的动态,可以用作教育平台,以教学学生以最小的成本和努力为学生教授MAV样平台的行为和控制。 教学学生关于与MAV公司相关的能力和挑战对于教育将开发和使用下一代MAV的未来工程师和科学家来说至关重要。 此外,气垫船为研究人员提供了一个安全的平台,用于测试控制和协调算法,然后在更高的价格上尝试它们。

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