DocumentCode :
114559
Title :
Stabilizing transmission intervals and delays for nonlinear Networked Control Systems: The large delay case
Author :
Tolic, Domagoj ; Hirche, Sandra
Author_Institution :
Fac. of Electr. Eng. & Comput., Univ. of Zagreb, Zagreb, Croatia
fYear :
2014
fDate :
15-17 Dec. 2014
Firstpage :
1203
Lastpage :
1208
Abstract :
This paper proposes a methodology for computing Maximally Allowable Transfer Intervals (MATIs) that provably stabilize nonlinear Networked Control Systems (NCSs) in the presence of disturbances and signal delays. Accordingly, given a desired level of system performance (in terms of ℒp-gains), quantitative MATI vs. delay trade-offs are obtained. By combining impulsive delayed system modeling with Lyapunov-Razumikhin type of arguments, we are able to consider even the so-called large delays. Namely, the computed MATIs can be smaller than delays existent in NCSs. In addition, our stability results are provided for the class of Uniformly Globally Exponentially Stable (UGES) scheduling protocols. The well-known Round Robin (RR) and Transmit-Once-Discard (TOD) protocols are examples of UGES protocols. Apart from the inclusion of large delays, another salient feature of our methodology is the consideration of corrupted data. To that end, we propose the notion of ℒp-stability with bias. Furthermore, the Zeno-free property of our methodology is demonstrated. Finally, a comparison with the state-of-the-art work is provided utilizing the benchmark problem of batch reactor.
Keywords :
delays; networked control systems; nonlinear control systems; stability; ℒp-gains; Lyapunov-Razumikhin type; NCS; RR protocols; TOD protocols; UGES protocols; Zeno-free property; batch reactor; benchmark problem; impulsive delayed system modeling; maximally allowable transfer intervals; nonlinear networked control systems; quantitative MATI; round robin protocols; signal delays; transmission interval stability; transmit-once-discard protocols; uniformly globally exponentially stable scheduling protocols; Control systems; Delays; Inductors; Noise; Protocols; Stability analysis; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2014 IEEE 53rd Annual Conference on
Conference_Location :
Los Angeles, CA
Print_ISBN :
978-1-4799-7746-8
Type :
conf
DOI :
10.1109/CDC.2014.7039545
Filename :
7039545
Link To Document :
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