DocumentCode :
3364375
Title :
Discrete-time sliding mode control for networked systems with random communication delays
Author :
Argha, Ahmadreza ; Li Li ; Su, Steven W. ; Hung Nguyen
Author_Institution :
Fac. of Eng. & Inf. Technol., Univ. of Technol., Sydney, NSW, Australia
fYear :
2015
fDate :
1-3 July 2015
Firstpage :
6016
Lastpage :
6021
Abstract :
This paper aims to design a robust discrete-time sliding mode control (DSMC) for the uncertain discrete-time networked systems involving time-varying Communication delays. To this end, the so-called Bernoulli random binary distribution is utilized to model the random time-varying delays. Then, by exploiting a specific sliding surface, a discrete-time sliding mode controller is designed such that the derived closed-loop system state and sliding function remain bounded in the presence of uncertainties and exogenous disturbances. Since the system state and sliding function are involved time-varying delays, the notion of exponentially mean square stability will be used to guarantee the stability/boundedness of the derived closed-loop system. The proposed robust DSMC can also overcome the conservatism of the existing methods in the literature. An illustrative example is presented to show the effectiveness of the proposed approach.
Keywords :
asymptotic stability; closed loop systems; control system synthesis; delays; discrete time systems; networked control systems; robust control; statistical distributions; variable structure systems; Bernoulli random binary distribution; DSMC design; boundedness guarantee; closed-loop system; discrete-time sliding mode control; exponentially mean square stability; networked systems; random communication delays; robust DSMC; sliding function; sliding surface; stability guarantee; time-varying communication delays; Closed loop systems; Delays; Discrete-time systems; Sliding mode control; Stochastic systems; Trajectory;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference (ACC), 2015
Conference_Location :
Chicago, IL
Print_ISBN :
978-1-4799-8685-9
Type :
conf
DOI :
10.1109/ACC.2015.7172284
Filename :
7172284
Link To Document :
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