In this brief, we consider the robust (in terms of model uncertainty) off-line scheduling problem for networked control systems (NCSs) with time-triggered communication. We model the NCS as a hybrid switched system and we propose an efficient method to calculate the continuous-time ${cal L}_{2}$-gain of the resulting closed-loop system for a given communication sequence. Finding a periodic scheduling policy that minimizes this norm is the (combinatorial) optimization problem that is solved by fast stochastic algorithms. A case study of a networked vehicle control system in a hardware-in-the-loop implementation is provided as an example of application.
Published in:
Control Systems Technology, IEEE Transactions on
(Volume:20
,
Issue:
6
)
Date of Publication:
Nov. 2012
- Page(s):
-
1613
-
1621
- ISSN :
-
1063-6536
- Digital Object Identifier :
-
10.1109/TCST.2011.2170172
- Product Type:
-
Journals & Magazines
- Date of Publication :
-
25 October 2011
- Date of Current Version :
-
09 August 2012
- Issue Date :
-
Nov. 2012
- Sponsored by :
-
IEEE Control Systems Society