非仿射多智能体网络的预定性能全局共识控制

Ningli Wang, Xiaolin Wang, Wenjie Tian, Lei Zhang
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引用次数: 0

摘要

研究了拓扑结构为有向交换的非仿射非线性多智能体网络的预定性能全局一致控制问题。该方法的核心特点在于引入了一种新的分段可微函数,该函数不仅使各切换时刻的一致性误差为零,而且可以防止控制器在切换时刻的意外动作。在此基础上,为每个agent设计了一种低复杂度的重构机制,实现了完全分布式。一致性误差可以被调节到一个预先指定的任意小残差集。通过仿真验证了所得结果的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prescribed Performance Global Consensus Control of Non-Affine Multi-Agent Networks
This work studies the prescribed performance global consensus control problem for non-affine nonlinear multi-agent networks whose topologies are directed switching. The core characteristic of the presented method lies in the introduction of a new piecewise differentiable function, which not only renders the consensus errors zero at each switching time instant, but against the unexpected controller action at switching time instant. Based on this, a low-complexity reconstructed mechanism was devised for each agent which achieves fully distributed manner. The consensus errors can be regulated to a prespecified arbitrary small residual set. Simulations are performed to validate the effectiveness of the acquired results.
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