Exponential finite-time couple-group consensus for agents in cooperative-competitive networks via pinning method
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Publication:6581027
DOI10.1002/asjc.3012MaRDI QIDQ6581027
Cuijuan Zhang, Liang-hao Ji, Shasha Yang, Rong Wu, Huaqing Li
Publication date: 30 July 2024
Published in: Asian Journal of Control (Search for Journal in Brave)
Cites Work
- Unnamed Item
- Finite-time command filtered backstepping control for a class of nonlinear systems
- Finite-time consensus of heterogeneous multi-agent systems with and without velocity measurements
- Finite-time containment control for nonlinear multi-agent systems with external disturbances
- Distributed finite-time bipartite consensus of multi-agent systems on directed graphs: theory and experiment in nano-quadcopters formation
- Adaptive finite-time bipartite consensus for second-order multi-agent systems with antagonistic interactions
- Finite-time consensus for heterogeneous multi-agent systems with mixed-order agents
- Distributed robust finite-time nonlinear consensus protocols for multi-agent systems
- Nonlinear finite-time bipartite consensus protocol for multi-agent systems associated with signed graphs
- Finite‐Time Consensus Problem for Second‐Order Multi‐Agent Systems Under Switching Topologies
- Finite‐Time Scaled Consensus in Discrete‐Time Networks of Agents
- Finite-Time Stability of Continuous Autonomous Systems
- Finite-time median-related group consensus over directed networks
- A new class of finite-time nonlinear consensus protocols for multi-agent systems
- Distributed exponential finite-time coordination of multi-agent systems: containment control and consensus
- Consensus Problems on Networks With Antagonistic Interactions
- Finite-time average consensus based approach for distributed convex optimization
- Finite-time leader-follower consensus control of multiagent systems with mismatched disturbances
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