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Hierarchic Stabilization of Flying Convex-Path-Following Formations Part I: Fully-Actuated Agents

机译:飞行的凸路径跟踪编队的层次稳定化第一部分:全动代理

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The paper presents a hierarchical approach for distributed stabilization of a class of flying formations. The agents are considered as rigid bodies in three-dimensional space. The formation is composed of three aspects: a path following aspect where the agents are required to follow similar smooth Jordan paths that are strictly convex; and two geometric aspects that specify the desired relative displacements of the paths, and the relative positions of the agents on these paths. The solution is based on tools of set stabilization and reduction. The modularity of the approach allows for achieving multiple specifications simultaneously, and for extending, in Part II of this paper, the solution to handle underactuation. The solution is illustrated through simulations, and the relevance of the results in aerial and space vehicles applications is discussed.
机译:本文提出了一种分层的方法来稳定一类飞行编队的分布。这些代理被视为三维空间中的刚体。地层由三个方面组成:一个路径跟随一个方面,在该路径中,要求代理商遵循相似的,严格凸的光滑约旦路径;以及两个几何方面,它们指定了路径的所需相对位移以及这些路径上代理的相对位置。该解决方案基于集稳定和缩减的工具。该方法的模块化允许同时实现多种规格,并在本文的第二部分中扩展了解决欠驱动问题的解决方案。通过仿真说明了该解决方案,并讨论了结果在航空航天器应用中的相关性。

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