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COMPONENT-WISE BOUNDS FOR MIMO CONTROL SYSTEMS USING FINITE RESOLUTION QUANTIZERS

Mario Luca Fravolini, Simone Fiani, Antonio Moschitta

Abstract

This work presents a methodology that guarantees component-wise stability bounds for the states of a disturbed linear Multiple Input Multiple Output (MIMO) feedback control systems, featuring bounded uncertainties and bounded quantization errors both in the measurements and in the controls. The controller synthesis is based on the design of a robust invariant ellipsoidal set, which assumes that all the uncertainties sources introduce upper bounded signals. We show that the component-wise boundedness requirements for the states and controls of the closed loop uncertain system can be expressed as a Linear Matrix Inequality (LMI) problem. Thus, feasibility and optimal controller design can be effectively and advantageously computed solving a convex linear optimization problem. The approach is validated by means of a meaningful numerical example.

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IMEKO-IWADC-2011-63.pdf
DOI
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IMEKO TC
TC4 - Measurement of Electrical Quantities

Event details

Event
IWADC 2011
Technical Committee
TC4
Place
Orvieto, ITALY
Time
30 June 2011 - 1 July 2011
Website
http://www.iwadc2011.diei.unipg.it/Sito/IWADC2011.html

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