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Under conditions (H1 - H3), assume that the solution of (1.1) is p-uniformly bounded and p-point dissipative for p > 2, then (1.1) has an ω-periodic solution.
Then by Theorem 3.1, the perturbed system (3.1) is uniformly exponentially dissipative for any perturbation, provided is satisfied with sufficiently small.
They are too dissipative for direct simulations of turbulence and lack robustness when very-high-order versions are applied to complex flows.
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By using a parameter-dependent Lyapunov function and a novel extended dissipation inequality, a criterion is proposed to guarantee that the synchronization error system is extended (X,Y,Z -dissipative for all admissible uncertainties and actuator failures.
First, the dissipativity analysis is performed to determine the candidate dissipative functions for each subsystem such that desired global network performance criteria are achieved.
In [18], the robust dissipative filtering for continuous-time polytopic uncertain neutral systems was studied.
In [16], the dissipative filtering for discrete fuzzy systems was thoroughly studied.
In [17], the dissipative filtering for linear discrete-time systems via LMI was studied.
The no-slip boundary condition is achieved by employing effective dissipative coefficients for liquid solid interactions.
This paper deals with the problem of delay-dependent dissipative control for a class of linear time-delay systems.
This paper deals with the problem of reliable dissipative control for a class of stochastic hybrid systems.
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