Demonstrates adaptive control strategies achieving lag quasi-synchronization in fractional-order networks, indicating new methods for system stability.
Key Points
The aim is to achieve successive lag quasi-synchronization in fractional-order dynamical networks using control strategies.
Developed linear feedback control and adaptive control strategies.
Employed Lyapunov-based methods and Laplace transforms of fractional derivatives.
Derived delay-independent sufficient conditions for synchronization.
Applied control method to a second-order multi-agent system.
Validated theoretical results through numerical simulations.
Successful achievement of successive lag quasi-synchronization in simulations.
Control methods effectively applied to a second-order multi-agent system.
Theoretical conditions derived were consistent with numerical findings.