AbstractThis paper considers the robust stability for a class of linear systems with interval time-varying delay and nonlinear perturbations. A Lyapunov–Krasovskii functional, which takes the range information of the time-varying delay into account, is proposed to analyze the stability. A new approach is introduced for estimating the upper bound on the time derivative of the Lyapunov–Krasovskii functional. On the basis of the estimation and by utilizing free-weighting matrices, new delay-range-dependent stability criteria are established in terms of linear matrix inequalities (LMIs). Numerical examples are given to show the effectiveness of the proposed approach
In this paper, the stability analysis of linear systems with an interval time-varying delay is inves...
This paper proposes an innovative method for robust stability analysis of dynamic systems with inter...
This paper proposes an innovative method for robust stability analysis of dynamic systems with inter...
AbstractThis paper considers the robust stability for a class of linear systems with interval time-v...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper proposes an approach for the robust stability of\ud uncertain systems with interval time-...
This paper discusses the delay-range-dependent stability for systems with interval time-varying dela...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper investigates robust stability of uncertain linear systems with interval time-varying dela...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper proposes an approach for the robust stability of uncertain systems with interval time-var...
This paper proposes an approach for the robust stability of uncertain systems with interval time-var...
In this paper, the problem of robust stability for uncertain linear systems with time-varying delay ...
This paper deals with the problem of stability for systems with delay varying in an interval. A new ...
In this paper, the stability analysis of linear systems with an interval time-varying delay is inves...
This paper proposes an innovative method for robust stability analysis of dynamic systems with inter...
This paper proposes an innovative method for robust stability analysis of dynamic systems with inter...
AbstractThis paper considers the robust stability for a class of linear systems with interval time-v...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper proposes an approach for the robust stability of\ud uncertain systems with interval time-...
This paper discusses the delay-range-dependent stability for systems with interval time-varying dela...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper investigates robust stability of uncertain linear systems with interval time-varying dela...
This paper is concerned with the delay-dependent robust stability problem for uncertain linear syste...
This paper proposes an approach for the robust stability of uncertain systems with interval time-var...
This paper proposes an approach for the robust stability of uncertain systems with interval time-var...
In this paper, the problem of robust stability for uncertain linear systems with time-varying delay ...
This paper deals with the problem of stability for systems with delay varying in an interval. A new ...
In this paper, the stability analysis of linear systems with an interval time-varying delay is inves...
This paper proposes an innovative method for robust stability analysis of dynamic systems with inter...
This paper proposes an innovative method for robust stability analysis of dynamic systems with inter...