Publication Type : Journal Article
Publisher : Elsevier
Source : Chaos, Solitons and Fractals, 142, 110312, 2021
Url : https://www.sciencedirect.com/science/article/abs/pii/S0960077920307086
Campus : Chennai
School : School of Engineering
Department : Mathematics
Year : 2021
Abstract : This paper states with the objective of investigating the synchronization problem of nonlinear delayed fractional-order chaotic systems in conjunction with quantization, actuator faults, randomly occurring parametric uncertainties and exogenous disturbances. Moreover, the actuator faults are randomly occurring at any instant of time. The resultant random variables obeying Bernoulli distribution are introduced to account stochastic behavior. In spite of ensuring the robust performance, the finite-time synchronization of the addressed system is achieved and satisfies passive disturbance attenuation level by developing robust quantized stochastic reliable control protocol. As a consequence, the fast synchronization of the considered system is ensured in a finite time period. Owing to this perspective, the desired controller gain matrices can be obtained by solving developed linear matrix inequality. Further, the effectiveness of the theoretical result developed in this paper is validated via numerical simulation.
Cite this Research Publication : S. Sweetha, R. Sakthivel and S. Harshavarthini, Finite-time synchronization of nonlinear fractional chaotic systems with stochastic actuator faults, Chaos, Solitons and Fractals, 142, 110312, 2021