DocumentCode :
2715841
Title :
Event-based reduced-attention predictive control for nonlinear uncertain systems
Author :
Varutti, P. ; Faulwasser, T. ; Kern, B. ; Kögel, M. ; Findeisen, R.
Author_Institution :
Lab. for Syst. Theor. & Autom. Control, Otto-von-Guericke Univ. Magdeburg, Magdeburg, Germany
fYear :
2010
fDate :
8-10 Sept. 2010
Firstpage :
1085
Lastpage :
1090
Abstract :
Event-based control is an alternative to traditional control where new measurements are sampled only if critical events occur. This not only allows to reduce the control effort but it satisfies nowadays application requirements, such for example reduction of information exchange, computational power, or energy consumption. The work in this field is, however, still sparse and only a few results are available. Properly choosing an event-detection logic can considerably improve the overall system´s performance. We propose a control algorithm which makes use of a model-based triggering strategy to reduce the control effort (reduced-attention control), while guaranteeing robustness against bounded additive perturbations for nonlinear continuous time systems. In particular, we derive conditions which guarantee that asymptotic stability of the nominal system implies practical stability of the real one in a neighborhood of the origin. A continuous stirred tank reactor is used as a benchmark problem to show the effectiveness of the presented algorithm.
Keywords :
asymptotic stability; continuous time systems; formal logic; nonlinear control systems; predictive control; uncertain systems; asymptotic stability; bounded additive perturbations; continuous stirred tank reactor; continuous time systems; event-based predictive control; event-detection logic; model-based triggering strategy; nonlinear uncertain systems; reduced-attention predictive control; Additives; Closed loop systems; Convergence; Cost function; Predictive control; Stability analysis; Trajectory; Additive Disturbances; Event-based Control; Model Predictive Control; Nonlinear Systems; Reduced-attention Control; Robustness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer-Aided Control System Design (CACSD), 2010 IEEE International Symposium on
Conference_Location :
Yokohama
Print_ISBN :
978-1-4244-5354-2
Electronic_ISBN :
978-1-4244-5355-9
Type :
conf
DOI :
10.1109/CACSD.2010.5612775
Filename :
5612775
Link To Document :
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