Title :
Stabilization of decentralized networked complex systems with multiple-packet transmission
Author :
Bakule, Lubomir ; Papik, Martin ; Rehak, Branislav
Author_Institution :
Inst. of Inf. Theor. & Autom., Prague, Czech Republic
Abstract :
The paper presents the decentralized control design for a class of networked continuous-time complex systems by using the multiple-packet transmission approach. Such a class is composed of identical nominal subsystems, symmetric nominal interconnections, and nonlinear perturbations. The system structure enables the model reduction and the subsequent usage of a single-packet transmission approach to select the robustly delay-dependent stabilizing gain matrix for the reduced model. The inclusion of the effect of data-packet dropout and communication delays in the feedback loop is enabled by using the linear matrix inequality approach. It is shown how such a gain matrix when implemented as local controllers in the local networked channel loops leads to a robustly delay-dependent stable overall closed-loop system with multiple delays. The simulation results illustrate the effectiveness of the proposed methodology.
Keywords :
decentralised control; linear matrix inequalities; multivariable systems; telecommunication control; closed-loop system; communication delays; data-packet dropout effect; decentralized control design; decentralized networked complex systems stabilization; feedback loop; identical nominal subsystems; linear matrix inequality; multiple-packet transmission; networked continuous-time complex systems; nonlinear perturbations; single-packet transmission; symmetric nominal interconnections; Closed loop systems; Delays; Feedback loop; Linear matrix inequalities; Robustness; Symmetric matrices;
Conference_Titel :
Cybernetics and Intelligent Systems (CIS), IEEE Conference on
Conference_Location :
Manila
Print_ISBN :
978-1-4799-1072-4
DOI :
10.1109/ICCIS.2013.6751576