Extended Predictive Control: Stability and Performance

Author:

Viúdez-Moreiras Daniel1

Affiliation:

1. IEEC Department, Universidad Nacional de Educacion a Distancia, Madrid 28040, Spain e-mail:

Abstract

The stability and performance of the extended predictive control depend on the driver block design and, specifically, on the three factors that determine this design, that is to say, the choice of the performance criterion, the reference trajectory dynamics, and the prediction horizon. This paper presents, for a particular choice of the performance criterion, a new method to determine the closed-loop stability and performance for the class of linear stable system, taking into account the reference trajectory dynamics and the prediction horizon value. Illustrative simulation examples show how, for a certain reference trajectory dynamics, which choice is based on specifications, the selection of the prediction horizon may determine the stability and the performance nature of the closed-loop.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference26 articles.

1. Adaptive Predictive Control System,1976

2. Adaptive Predictive Control System (CIP),1980

3. Adaptive Control for Time-Variant Processes;Int. J. Control,1986

4. Stable Discrete-Time Adaptive Control in the Presence of Unmodeled Dynamics;IEEE Trans. Autom. Control,1988

5. Comparison of an Auto-Tuned PID Regulator and an Adaptive Predictive Control System on an Industrial Bleach Plant;Automatica,1989

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