Design of fast state observers using a backstepping-like approach with application to synchronization of chaotic systems
DOI10.1063/1.2907737zbMath1307.93084OpenAlexW2086929022WikidataQ39852157 ScholiaQ39852157MaRDI QIDQ5179184
Publication date: 19 March 2015
Published in: Chaos: An Interdisciplinary Journal of Nonlinear Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.2907737
Design techniques (robust design, computer-aided design, etc.) (93B51) Observability (93B07) Time series analysis of dynamical systems (37M10) Complex behavior and chaotic systems of ordinary differential equations (34C28) Synchronization of solutions to ordinary differential equations (34D06)
Related Items (2)
Cites Work
- An equation for hyperchaos
- On self-synchronization and controlled synchronization
- The synchronization of chaotic systems
- Nonlinear control of systems with multiple equilibria and unknown sinusoidal disturbance
- An equation for continuous chaos
- Chaos Q-S synchronization between Rössler system and the new unified chaotic system
- Controlling and tracking hyperchaotic Rössler system via active backstepping design
- Adaptive complete synchronization of two identical or different chaotic (hyperchaotic) systems with fully unknown parameters
- Tracking control and synchronization of four-dimensional hyperchaotic Rössler system
- A UNIFIED FRAMEWORK FOR SYNCHRONIZATION AND CONTROL OF DYNAMICAL SYSTEMS
- An observer-based approach for chaotic synchronization with applications to secure communications
- Master-slave synchronization from the point of view of global dynamics
- Deterministic Nonperiodic Flow
- Master-slave synchronization and the Lorenz equations
- Synchronization in chaotic systems
- A nonlinear controller design for permanent magnet motors using a synchronization-based technique inspired from the Lorenz system
- SYNCHRONIZATION CONTROL FOR A CLASS OF CHAOTIC SYSTEMS WITH UNCERTAINTIES
- Impulsive synchronization of chaotic systems
- A dynamical control view on synchronization
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