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首页> 外文期刊>International Journal of Robust and Nonlinear Control >Finite time distributed distance-constrained shape stabilization and flocking control for d-dimensional undirected rigid formations
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Finite time distributed distance-constrained shape stabilization and flocking control for d-dimensional undirected rigid formations

机译:d维无向刚性地基的有限时间分布距离约束形状稳定和植绒控制

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摘要

Most of the existing results on distributed distance-constrained rigid formation control establish asymptotic or exponential convergence. To further improve the convergence rate, we explain in this paper how to modify existing gradient controllers to obtain finite time stability. For point agents modeled by single integrators, the controllers proposed in this paper drive the whole formation to locally converge to a desired shape with finite settling time. We also show for undirected triangular formation shape control, if all the agents start with non-collinear positions, then the formation will converge to the desired shape in finite time. For agents modeled by double integrators, the proposed controllers allow all agents to both achieve the same velocity and reach a desired shape in finite time. All controllers are totally distributed. Simulations are also provided to validate the proposed control strategies. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:关于分布距离受限的刚性构造控制的大多数现有结果建立了渐近或指数收敛性。为了进一步提高收敛速度,我们在本文中解释了如何修改现有的梯度控制器以获得有限的时间稳定性。对于由单个积分器建模的点代理,本文提出的控制器驱动整个岩层在有限的建立时间下局部收敛到所需的形状。我们还显示了无向三角形地层形状控制,如果所有代理都从非共线位置开始,则地层将在有限时间内收敛到所需形状。对于由双重积分器建模的代理,建议的控制器允许所有代理在有限的时间内达到相同的速度并达到所需的形状。所有控制器都是完全分布式的。还提供了仿真来验证提出的控制策略。版权所有(c)2015 John Wiley&Sons,Ltd.

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