identically distributed intervals between transitions. Our approach involves the derivation of novel results for Volterra integral equations with positive kernel. We highlight several applications of these results, and show that when applied to the analysis of impulsive systems they allow us to (i) provide necessary and sufficient conditions for mean square stability, stochastic stability and mean exponential stability, which can be equivalently tested in terms of a matrix eigenvalue computation, an LMI feasibility problem, and a Nyquist criterion condition; (ii) assess performance of the impulsive system by computing a second moment Lyapunov exponent. The applicability of our results is illustrated in a benchmark problem considering networ...
This paper investigates stability for systems with practical levels of complexity including nonlinea...
In this paper, we consider input-to-state stability (ISS) of impulsive con-trol systems with and wit...
The investigations are made on the exponential synchronization of the stochastic Lur'e system with n...
identically distributed intervals between transitions. Our approach involves the derivation of novel...
Necessary and sufficient conditions are provided for stochastic stability and mean exponential stabi...
Abstract — Necessary and sufficient conditions are provided for stochastic stability and mean expone...
We consider networked control systems in which sensors, actuators, and controller transmit through a...
We consider impulsive systems with several reset maps triggered by independent renewal processes, i....
We consider the control of impulsive systems with independent and identically distributed intervals ...
This paper presents a novel impulsive system approach to input-to-state stability (ISS) analysis of ...
This paper introduces appropriate concepts of input-to-state stability (ISS) and integral-ISS for im...
We consider Stochastic Hybrid Systems (SHSs) for which the lengths of times that the system stays in...
This paper investigates stability for systems with practical levels of complexity including nonlinea...
In this paper, we consider input-to-state stability (ISS) of impulsive con-trol systems with and wit...
The investigations are made on the exponential synchronization of the stochastic Lur'e system with n...
identically distributed intervals between transitions. Our approach involves the derivation of novel...
Necessary and sufficient conditions are provided for stochastic stability and mean exponential stabi...
Abstract — Necessary and sufficient conditions are provided for stochastic stability and mean expone...
We consider networked control systems in which sensors, actuators, and controller transmit through a...
We consider impulsive systems with several reset maps triggered by independent renewal processes, i....
We consider the control of impulsive systems with independent and identically distributed intervals ...
This paper presents a novel impulsive system approach to input-to-state stability (ISS) analysis of ...
This paper introduces appropriate concepts of input-to-state stability (ISS) and integral-ISS for im...
We consider Stochastic Hybrid Systems (SHSs) for which the lengths of times that the system stays in...
This paper investigates stability for systems with practical levels of complexity including nonlinea...
In this paper, we consider input-to-state stability (ISS) of impulsive con-trol systems with and wit...
The investigations are made on the exponential synchronization of the stochastic Lur'e system with n...