Stability and stabilization of aperiodic sampled-data control systems: An approach using robust linear matrix inequalities | IEEE Conference Publication | IEEE Xplore

Stability and stabilization of aperiodic sampled-data control systems: An approach using robust linear matrix inequalities


Abstract:

Stability analysis of an aperiodic sampled-data control system is considered for application to network and embedded control. The stability condition is described in a li...Show More

Abstract:

Stability analysis of an aperiodic sampled-data control system is considered for application to network and embedded control. The stability condition is described in a linear matrix inequality to be satisfied for all possible sampling intervals. Although this condition is numerically intractable, a tractable sufficient condition can be constructed with the mean value theorem. Special attention is paid to tightness of the sufficient condition for less conservative stability analysis. A region-dividing technique for reduction of conservatism and generalization to stabilization are also discussed. Examples show the efficacy of the approach.
Date of Conference: 15-18 December 2009
Date Added to IEEE Xplore: 29 January 2010
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Conference Location: Shanghai, China
Department of Systems Design and Engineering, Nanzan University, Seto, Japan
Department of Applied Analysis and Complex Dynamical Systems, Kyoto University, Kyoto, Japan

I. Introduction

Sampled-data control is mature research area and established methodology is available both for analysis and design [2]. However, most of the existing results assume constant sampling interval and cannot be applied to network and embedded control systems, whose sampling interval is uncertain and varying with time.

Department of Systems Design and Engineering, Nanzan University, Seto, Japan
Department of Applied Analysis and Complex Dynamical Systems, Kyoto University, Kyoto, Japan
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