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Hierarchical-Structure-Based Fault Estimation and Fault-Tolerant Control for Multiagent Systems

机译:多主体系统的基于层次结构的故障估计和容错控制

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This paper proposes a hierarchical-structure-based fault estimation and fault-tolerant control design with bidirectional interactions for nonlinear multiagent systems with actuator faults. The hierarchical structure consists of distributed multiagent system hierarchy, undirected topology hierarchy, decentralized fault estimation hierarchy, and distributed fault-tolerant control hierarchy. The states and faults of the system are estimated simultaneously by merging the unknown input observer in a decentralized fashion. The distributed-constant-gain-based and node-based fault-tolerant control schemes are developed to guarantee the asymptotic stability and H-infinity performance of multiagent systems, respectively, based on the estimated information in the fault estimation hierarchy and the relative output information from neighbors. Two simulation cases validate the efficiency of the proposed hierarchical structure control algorithm.
机译:针对具有执行器故障的非线性多智能体系统,提出了一种基于双向交互的基于层次结构的故障估计和容错控制设计。层次结构由分布式多主体系统层次结构,无向拓扑层次结构,分散式故障估计层次结构和分布式容错控制层次结构组成。通过以分散的方式合并未知的输入观察器,可以同时估计系统的状态和故障。基于故障估计层次结构中的估计信息和相对输出信息,分别开发了基于分布式恒定增益和基于节点的容错控制方案,以分别保证多主体系统的渐近稳定性和H-∞性能。来自邻居。两个仿真案例验证了所提出的分层结构控制算法的效率。

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