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Distributed Fault-Tolerant Consensus Tracking Control of Multi-Agent Systems Under Fixed and Switching Topologies

Chun Liu, Bin Jiang, Ke Zhang, Ron J. Patton

2021IEEE Transactions on Circuits and Systems I Regular Papers111 citationsDOIOpen Access PDF

Abstract

This paper proposes a novel distributed fault-tolerant consensus tracking control design for multi-agent systems with abrupt and incipient actuator faults under fixed and switching topologies. The fault and state information of each individual agent is estimated by merging unknown input observer in the decentralized fault estimation hierarchy. Then, two kinds of distributed fault-tolerant consensus tracking control schemes with average dwelling time technique are developed to guarantee the mean-square exponential consensus convergence of multi-agent systems, respectively, on the basis of the relative neighboring output information as well as the estimated information in fault estimation. Simulation results demonstrate the effectiveness of the proposed fault-tolerant consensus tracking control algorithm.

Topics & Concepts

Network topologyComputer scienceFault toleranceMulti-agent systemConsensusTopology (electrical circuits)Distributed computingControl theory (sociology)Control (management)Computer networkEngineeringElectrical engineeringArtificial intelligenceDistributed Control Multi-Agent SystemsSecurity in Wireless Sensor NetworksStability and Control of Uncertain Systems
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