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Distributed Finite-Time Containment Control for Double-Integrator Multiagent Systems

机译:双集成多主体系统的分布式有限时间控制

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摘要

In this paper, the distributed finite-time containment control problem for double-integrator multiagent systems with multiple leaders and external disturbances is discussed. In the presence of multiple dynamic leaders, by utilizing the homogeneous control technique, a distributed finite-time observer is developed for the followers to estimate the weighted average of the leaders' velocities at first. Then, based on the estimates and the generalized adding a power integrator approach, distributed finite-time containment control algorithms are designed to guarantee that the states of the followers converge to the dynamic convex hull spanned by those of the leaders in finite time. Moreover, as a special case of multiple dynamic leaders with zero velocities, the proposed containment control algorithms also work for the case of multiple stationary leaders without using the distributed observer. Simulations demonstrate the effectiveness of the proposed control algorithms.
机译:本文讨论了具有多个领导和外部干扰的双积分多智能体系统的分布式有限时间控制问题。在存在多个动态领导者的情况下,通过利用齐次控制技术,为跟随者开发了一个分布式有限时间观察者,以首先估计领导者速度的加权平均值。然后,基于估计值和广义的功率积分器方法,设计了分布式有限时间遏制控制算法,以确保跟随者的状态在有限时间内收敛到领导者跨越的动态凸包。此外,作为具有零速度的多个动态领导者的特例,所提出的遏制控制算法也适用于多个静止领导者而无需使用分布式观测器的情况。仿真结果表明了所提控制算法的有效性。

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