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Self-triggering in nonlinear systems: a small-gain theorem approach (CROSBI ID 608701)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Tolić, Domagoj ; Sanfelice, Ricardo G. ; Fierro, Rafael Self-triggering in nonlinear systems: a small-gain theorem approach // Proc. of 20th IEEE Mediterranean Conference on Control and Automation. 2012. str. 935-941

Podaci o odgovornosti

Tolić, Domagoj ; Sanfelice, Ricardo G. ; Fierro, Rafael

engleski

Self-triggering in nonlinear systems: a small-gain theorem approach

This paper investigates stability of nonlinear control systems under intermittent information. Building on the small-gain theorem, we develop self-triggered control yielding stable closed-loop systems. We take the violation of the small-gain condition to be the triggering event, and develop a sampling policy that precludes this event by executing the control law with up-to-date information. Based on the properties of the external inputs to the plant, the developed sampling policy yields regular stability, asymptotic stability and Lp-stability. Control loops are modeled as interconnections of hybrid systems, and novel results on Lp-stability of hybrid systems are presented. Prediction of the triggering event is achieved by employing Lp-gains over a finite horizon. In addition, Lp-gains over a finite horizon produce larger intersampling intervals when compared with standard Lp-gains. Furthermore, a novel approach for calculation of Lp-gains over a finite horizon is devised. Finally, our approach is successfully applied to a trajectory tracking control system.

nonlinear systems; small-gain theorem; Lp-stability

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Podaci o prilogu

935-941.

2012.

objavljeno

Podaci o matičnoj publikaciji

Proc. of 20th IEEE Mediterranean Conference on Control and Automation

Podaci o skupu

20th IEEE Mediterranean Conference on Control and Automation

predavanje

03.07.2012-06.07.2012

Barcelona, Španjolska

Povezanost rada

Povezane osobe




Elektrotehnika

Poveznice