用于海上任务的无人机系统架构。设计及硬件描述

A. Zolich, T. Johansen, Krzysztof Cisek, Kristian Klausen
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引用次数: 29

摘要

人们对无人机系统(UAS)研究的兴趣日益浓厚,同时硬件价格也越来越便宜,这为研究机构将算法和仿真结果与应用于飞行中的性能进行比较创造了巨大的机会。然而,为这种努力开发必要的设备需要付出巨大的努力,往往超出现有的资源和主要的研究重点。作为一种解决方案,提出了一种能够进行高级实验的系统架构,使研究人员能够减少开发无人机系统所需的工作量。拟议的建筑与当前最先进的研究设施和标准兼容,促进了该领域专家之间的更多合作。在过去的两年中,考虑到各种算法和不同的设备,所提出的设置的功能已经发展并在密集的现场实验中得到了验证。本文提供了体系结构和实现细节的详细描述,例如使用的硬件和软件,因此对研究界和规划自己的UAS开发的设施具有潜在的参考价值。
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Unmanned aerial system architecture for maritime missions. design & hardware description
The growing interest in Unmanned Aerial Systems (UAS) research, alongside with increasingly affordable hardware, creates great opportunity for research facilities to compare algorithms and simulation results with applied in-flight performance. However, developing the necessary equipment for such endeavour requires significant effort, often beyond available resources and the main research focus. As a solution, a system architecture for enabling advanced experiments is presented, allowing researchers to reduce the amount of required effort in developing a UAS. The proposed architecture is compatible with current state-of-the-art research facilities and standards, promoting an increased cooperation between experts in the field. The capabilities of the presented setup have evolved and been verified during intensive field experiments over the past two years, considering various algorithms and distinct equipment. This paper provides a detailed description of both the architecture and implementation details, such as the used hardware and software, being therefore a potential reference for the research community and for facilities planning the development of their own UAS.
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