Disturbance observer-based PID synchronization control of complex networks with probabilistic interval time-varying delays and multiple disturbances
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Publication:6565691
DOI10.1002/OCA.3084MaRDI QIDQ6565691
Hongyang Lv, Yujing Shi, Dongyan Chen
Publication date: 2 July 2024
Published in: Optimal Control Applications \& Methods (Search for Journal in Brave)
\(H_\infty\) controlsynchronizationPID controldisturbance observerprobabilistic interval time-varying delays
Cites Work
- Adaptive finite-time synchronization of a class of pinned and adjustable complex networks
- Global synchronization stability for stochastic complex dynamical networks with probabilistic interval time-varying delays
- Delay-dependent criteria for robust stability of time-varying delay systems
- Stability analysis of swarms with interaction time delays
- Dynamic event-triggered mechanism for \(H_\infty\) non-fragile state estimation of complex networks under randomly occurring sensor saturations
- Composite synchronization control for delayed coupling complex dynamical networks via a disturbance observer-based method
- Pinning synchronization control for a class of discrete-time switched stochastic complex networks under event-triggered mechanism
- A dynamic event-triggered approach to observer-based PID security control subject to deception attacks
- Exponential \(H_{\infty}\) filtering for discrete-time switched singular systems with time-varying delays
- Composite anti-disturbance control for Markovian jump nonlinear systems via disturbance observer
- Composite disturbance-observer-based control and H ∞ control for complex continuous models
- Observer‐based adaptive event‐triggered PID control for networked systems under aperiodic DoS attacks
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