Title :
Output Feedback Stabilization of Networked Control Systems With Packet Dropouts
Author :
Zhang, Wen-An ; Yu, Li
Author_Institution :
Zhejiang Univ. of Technol., Hangzhou
Abstract :
In this paper, we discuss the modeling and control of a class of networked control systems (NCSs) with packet dropouts. For the cases that there may be packet dropouts in both the backward and the forward channels in the communication network, and that the network-induced delays are shorter than one sampling period, the closed-loop NCS is modeled as a discrete-time switched system with four subsystems. By using the asynchronous dynamical systems approach and the average dwell-time method, sufficient conditions for the exponential stability of the closed-loop NCS are presented in terms of nonlinear matrix inequalities, and the relation between the packet dropout rate and the stability of the closed-loop NCS is explicitly established. A procedure involving an iterative algorithm is proposed to design the observer-based output feedback controllers. Lastly, an illustrative example is given to demonstrate the effectiveness of the proposed results.
Keywords :
asymptotic stability; control system synthesis; delays; discrete time systems; distributed control; iterative methods; matrix algebra; observers; state feedback; time-varying systems; asynchronous dynamical system; average dwell-time method; backward channel; closed-loop control; communication network; discrete-time switched system; exponential stability; forward channel; iterative algorithm; network-induced delay; networked control system; nonlinear matrix inequalities; observer-based output feedback controller; output feedback stabilization; packet dropout; state feedback; Communication networks; Communication system control; Iterative algorithms; Linear matrix inequalities; Networked control systems; Output feedback; Sampling methods; Stability; Sufficient conditions; Switched systems; Exponential stability; networked control systems; output feedback; packet dropouts; switched systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2007.904284