This paper investigates a defect appearing in 'Finite-time H fuzzy control of nonlinear jump systems with time delays via dynamic observer-based state feedback,' which the observer-based finite-time H controller via dynamic observer-based state feedback could not ensuring stochastic finite-time boundedness, and satisfying a prescribed level of H disturbance attenuation for the resulting closed-loop error fuzzy Markov jump systems. The corrected results are presented, and the improved optimal algorithms and new simulation results are also provided in this paper. © 2013 IEEE.

Comments on 'finite-time H fuzzy control of nonlinear jump systems with time delays via dynamic observer-based state feedback'

KARIMI, HAMID REZA
2014-01-01

Abstract

This paper investigates a defect appearing in 'Finite-time H fuzzy control of nonlinear jump systems with time delays via dynamic observer-based state feedback,' which the observer-based finite-time H controller via dynamic observer-based state feedback could not ensuring stochastic finite-time boundedness, and satisfying a prescribed level of H disturbance attenuation for the resulting closed-loop error fuzzy Markov jump systems. The corrected results are presented, and the improved optimal algorithms and new simulation results are also provided in this paper. © 2013 IEEE.
2014
Finite-time H control; linear matrix inequalities (LMIs); Markov jump systems (MJS); observer-based state feedback; Takagi-Sugeno (T-S) fuzzy model; Control and Systems Engineering; Artificial Intelligence; Computational Theory and Mathematics; Applied Mathematics
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1028691
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