IEEE Transactions on Automatic Control, Vol.64, No.12, 5132-5139, 2019
Dynamic State Feedback Stabilization of Stochastic Cascade Nonlinear Time-Delay Systems With SISS Inverse Dynamics
This paper investigates state feedback stabilization problem of a class of stochastic cascade nonlinear time-delay systems with stochastic inverse dynamics. By characterizing unmeasured stochastic inverse dynamics with stochastic input-to-state stability condition, without imposing any growth condition on time-delay system nonlinearities, a delay-independent, dynamic state feedback controller is constructed. It is shown that the equilibrium at the origin of the closed-loop system is globally asymptotically stable in probability.
Keywords:State feedback;Nonlinear dynamical systems;Asymptotic stability;Stability criteria;Closed loop systems;Control design;Asymptotical stabilization;stochastic cascade nonlinear time-delay systems;stochastic input-to-state stability (SISS) inverse dynamics;state feedback