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Algebraic criteria for second-order global consensus in multi-agent networks with intrinsic nonlinear dynamics and directed topologies

机译:具有固有非线性动力学和有向拓扑的多智能体网络中二阶全局共识的代数准则

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摘要

This paper discusses the second-order globally nonlinear consensus in general multi-agent directed networks with both non-time-delay and time-delay couplings. Some easily manageable delay-independent algebraic criteria are presented to unravel the underlying mechanics for reaching the second-order consensus. The obtained results are associated with the underlying network interactive topologies, inner coupling matrices and coupling gains between agents. Theoretical derivation is complemented by its validation on a simulation example.
机译:本文讨论了具有非时滞和时滞耦合的通用多智能体定​​向网络中的二阶全局非线性共识。提出了一些易于管理的与时延无关的代数准则,以阐明达到二阶共识的基本机制。获得的结果与基础网络交互拓扑,内部耦合矩阵以及代理之间的耦合增益相关。理论推导通过在仿真示例中的验证得到补充。

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