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Then sufficient conditions are derived such that the fuzzy nonlinear Makovian jump delayed system exhibits stochastic finite-time boundedness.
This paper addresses a finite-time H∞ fuzzy control problem for a class of nonlinear Markovian jump delayed systems with partly uncertain transition descriptions, which is represented as a Takagi Sugeno (T S) fuzzy model.
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This study examines the problem of robust reliable control for Takagi-Sugeno (T-S) fuzzy Markovian jumping delayed neural networks with probabilistic actuator faults and leakage terms.
This paper investigates the problem of stochastic stability and stabilization of stochastic Markovian jump delay systems (SMJDSs) based on LaSalle theorem.
The main challenge is now simultaneous finite-time control and fault detection in the presence of some complicated factors, such as jump model uncertainty, mixed delay and disturbances for a class of singular Markovian jump delay systems under asynchronous switching.
It is interesting to show that the presented filter for the system with random jump delays can be designed by performing two sets of standard Riccati equations with the same dimension as that of the original system.
The same runway area could not be used for concurrent competitions, so the long jump was delayed 40 minutes.
The viscoelastic relaxation time of high molecular weight PS and PVME in the blends can be clearly separated and the onset of the phase separation process after a temperature jump is delayed to a later time.
This paper is concerned with the problem of enhanced results on robust finite-time passivity for uncertain discrete-time Markovian jumping BAM delayed neural networks with leakage delay.
This paper concerns the problem of enhanced results on robust finite time passivity for uncertain discrete time Markovian jumping BAM delayed neural networks with leakage delay.
This study is mainly concerned with the problem on synchronization criteria for Markovian jumping time delayed bidirectional associative memory neural networks and their applications in secure image communications.
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