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Cooperative Optimal Synchronization of Networked Uncertain Nonlinear Euler-Lagrange Heterogeneous Multi-Agent Systems With Switching Topologies

机译:具有切换拓扑的不确定非线性网络欧拉-拉格朗日异构多Agent系统的协同最优同步

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This paper is concerned with design of distributed optimal synchronization control strategies for a class of networked nonlinear heterogeneous multi-agent (HMA) systems whose dynamics are governed by Euler-Lagrange (EL) equations. We employ optimal control techniques to design synchronization (consensus seeking) and set-point regulation controllers for HMA systems through optimization of individual cost functions. We introduce an analytical solution to the optimization problem and show that the developed optimal control laws can manage switchings in the communication network topology. Additionally, we propose two control strategies (namely, adaptive and robust) to modify and generalize the developed optimal control laws in presence of parametric uncertainties in the HMA systems. Simulation results for the attitude synchronization control of a network of eight spacecraft are presented to demonstrate the effectiveness and capabilities of our proposed control algorithms.
机译:本文涉及一类网络动力学由欧拉-拉格朗日(EL)方程支配的网络非线性异构多代理(HMA)系统的分布式最优同步控制策略的设计。我们采用最佳控制技术,通过优化单个成本函数,为HMA系统设计同步(共识寻求)和设定点调节控制器。我们介绍了针对优化问题的解析解决方案,并表明开发的最优控制律可以管理通信网络拓扑中的切换。此外,我们提出了两种控制策略(即自适应和鲁棒),以在HMA系统中存在参数不确定性的情况下修改和推广已开发的最优控制律。提出了八个航天器网络姿态同步控制的仿真结果,以证明我们提出的控制算法的有效性和功能。

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