DocumentCode
1113340
Title
Linear Quadratic Optimal Discrete-Time Sliding-Mode Controller for Connection-Oriented Communication Networks
Author
Ignaciuk, Przemyslaw ; Bartoszewicz, Andrzej
Author_Institution
Inst. of Autom. Control, Tech. Univ. of Lodz, Lodz
Volume
55
Issue
11
fYear
2008
Firstpage
4013
Lastpage
4021
Abstract
In this paper, a new sliding-mode flow controller for connection-oriented communication networks is proposed. The networks are modeled as discrete-time nth-order systems. On the basis of the system state space description, a novel sliding-mode controller with a linear quadratic optimal switching plane is designed. Two control laws are proposed, each derived by minimizing different cost functionals. The first law is obtained when the whole state vector is considered in the optimization procedure, whereas in the latter case, the derivation concentrates on the system output variable with an additional weighting coefficient introduced into the cost functional. Closed-loop system stability is demonstrated, and the conditions for no data loss and full bottleneck link bandwidth utilization in the network are presented and strictly proved. According to the best of the authors´ knowledge, this paper presents the first attempt to design a discrete-time sliding-mode flow control algorithm for connection-oriented communication networks.
Keywords
closed loop systems; telecommunication control; variable structure systems; closed-loop system stability; connection-oriented communication networks; discrete-time sliding-mode controller; optimal control; Communication networks; communication networks; discrete time systems; discrete-time systems; optimal control; sliding mode control; sliding-mode control;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2008.921464
Filename
4476419
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