DocumentCode
3083760
Title
Comparative analysis of stabilization techniques for a Networked Control System with time-varying delays
Author
Bonala, S. ; Subudhi, Bidyadhar ; Ghosh, Sudip
Author_Institution
Dept. of Electr. Eng., Nat. Inst. of Technol., Rourkela, India
fYear
2012
fDate
7-9 Dec. 2012
Firstpage
1210
Lastpage
1213
Abstract
The paper presents stabilization of a Networked Control System (NCS) with uncertain, time-varying delays using two stabilization approaches namely, Parameter Dependant Lyapunov Function (PDLF) and Quadratic Lyapunov Function (QLF). The PDLF approach depends upon the time varying delay parameters. Thus, for larger delays the system´s stability is ensured. In NCS, the uncertainties arising out from the variations in time-delay is modeled using polytopic approach and the stability region of the system is presented in terms of controller gain and maximum tolerable delay. The overall NCS is represented in discrete domain. The proposed PDLF stabilization results have been compared with that of the QLF approach. Lyapunov-based stability criterion is presented in Linear Matrix inequalities (LMIs). The stabilized state feedback controller is designed using LMIs and considering the bounded time-varying delays. The proposed approach is illustrated by two numerical examples. From the results obtained, it is observed that the PDLF approach improves the stability region of the system.
Keywords
Lyapunov methods; delays; discrete systems; linear matrix inequalities; networked control systems; stability; state feedback; time-varying systems; uncertain systems; LMI; Lyapunov-based stability criterion; NCS; PDLF approach; QLF approach; bounded time-varying delays; comparative analysis; controller gain; discrete domain; linear matrix inequalities; maximum tolerable delay; networked control system; parameter dependant Lyapunov function; polytopic approach; quadratic Lyapunov function; state feedback controller; uncertain system; Communication networks; Delay; Networked control systems; Numerical stability; Stability criteria; Time varying systems; LMI; NCS; Stability analysis; communication channel; time-varying delay;
fLanguage
English
Publisher
ieee
Conference_Titel
India Conference (INDICON), 2012 Annual IEEE
Conference_Location
Kochi
Print_ISBN
978-1-4673-2270-6
Type
conf
DOI
10.1109/INDCON.2012.6420802
Filename
6420802
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