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Distributed formation control for fractional-order systems: Dynamic interaction and absolute/relative damping

机译:分数阶系统的分布式编队控制:动态相互作用和绝对/相对阻尼

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摘要

This paper studies the distributed formation control problem for multiple fractional-order systems under dynamic interaction and with absolute/relative damping. In the context of this paper, formation control means that a group of systems reaches the desired state deviations via a local interaction. We first study a formation control algorithm in the case of a directed dynamic network topology. The convergence conditions on both the network topology and the fractional orders are presented. When the fractional order satisfies 2 .0; 1/S.1C2 n /, sufficient conditions on the network topology are given to ensure the formation control. We then propose fractional-order formation control algorithms with absolute/relative damping and study the conditions on the network topology and the control gains such that the formation control will be achieved under a directed fixed network topology. The final equilibria are also given explicitly. Finally, several simulation examples are presented as a proof of concep.
机译:本文研究了在动态相互作用和绝对/相对阻尼下多分数阶系统的分布地层控制问题。在本文的上下文中,编队控制是指一组系统通过局部交互作用达到所需的状态偏差。我们首先研究定向动态网络拓扑情况下的编队控制算法。给出了网络拓扑和分数阶的收敛条件。当分数阶满足2 .0时; 1 / S.1C2 n /,在网络拓扑上给出了足够的条件以确保形成控制。然后,我们提出具有绝对/相对阻尼的分数阶编队控制算法,并研究网络拓扑的条件和控制增益,以便在定向固定网络拓扑下实现编队控制。最终平衡也明确给出。最后,给出了几个仿真示例作为概念证明。

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