This paper proposes an approach for the robust stability of uncertain systems with interval time-varying delay. The key features of the approach include the introduction of uncorrelated augmented matrix items into the Lyapunove functional and the use of a tighter bounding technology. Unlike existing methodologies, the proposed approach involves neither free weighting matrices nor any model transformation. It can, however, lead to much less conservative stability criteria than the existing ones for the systems under consideration. Numerical examples show that the proposed criteria improve the existing results significantly with much less computational effort
This paper deals with the problem of stability for systems with delay varying in an interval. A new ...
Interval time-varying delay is common in control process, e.g., automatic robot control system, and ...
[[abstract]]New stability criteria are provided for a class of uncertain linear time-delay systems w...
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\ud uncertain systems with interval time-...
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...
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 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 stability analysis for uncertain systems with interval time-varying...
This paper is concerned with the stability analysis for uncertain systems with interval time-varying...
AbstractThis paper considers the robust stability for a class of linear systems with interval time-v...
This paper deals with the problem of stability for systems with delay varying in an interval. A new ...
Interval time-varying delay is common in control process, e.g., automatic robot control system, and ...
[[abstract]]New stability criteria are provided for a class of uncertain linear time-delay systems w...
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\ud uncertain systems with interval time-...
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...
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 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 stability analysis for uncertain systems with interval time-varying...
This paper is concerned with the stability analysis for uncertain systems with interval time-varying...
AbstractThis paper considers the robust stability for a class of linear systems with interval time-v...
This paper deals with the problem of stability for systems with delay varying in an interval. A new ...
Interval time-varying delay is common in control process, e.g., automatic robot control system, and ...
[[abstract]]New stability criteria are provided for a class of uncertain linear time-delay systems w...