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Synchronization of uncertain Euler-Lagrange systems with unknown time-varying communication delays

机译:具有未知时变通信延迟的不确定Euler-Lagrange系统的同步

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A decentralized controller is presented along with sufficient conditions for stability in leader-based synchronization of communication-delayed networked agents. The agents have heterogeneous dynamics modeled by uncertain, nonlinear Euler-Lagrange equations of motion affected by heterogeneous, unknown, exogenous disturbances. The developed controller requires only one-hop (delayed) communication from network neighbors and the communication delays are assumed to be heterogeneous, uncertain and time-varying. The presented approach uses a Lyapunov-based stability analysis in conjunction with Lyapunov-Krasovskii functionals to provide sufficient conditions which depend on the upper bound of the heterogeneous delays, feedback gains, and network connectivity, among other factors.
机译:提出了一个分散的控制器,以及在通信延迟的网络代理的基于领导者的同步中具有足够稳定性的条件。这些代理具有异质动力学,该动力学通过受异质,未知,外源性扰动影响的不确定的非线性Euler-Lagrange运动方程建模。开发的控制器仅需要来自网络邻居的单跳(延迟)通信,并且假定通信延迟是异构的,不确定的且随时间变化的。提出的方法将基于Lyapunov的稳定性分析与Lyapunov-Krasovskii功能结合使用,以提供足够的条件,这些条件取决于异构延迟,反馈增益和网络连接性的上限,以及其他因素。

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