Constrained global adaptive controller for a plug-flow tubular reactor with partial temperature measurements

Author:

Beniich N1,El Bouhtouri A1,Dochain D2

Affiliation:

1. INMA, Département de Mathématique, Faculté des Sciences, El Jadida, Morocco

2. ICTEAM, Université catholique de Louvain, 4-6 avenue Georges Lemaître, Louvain-LaNeuve, Belgium

Abstract

Abstract In this work, a global constrained adaptive output feedback is presented for a class of plug-flow tubular reactors models described by non-linear partial differential equations. The output of the system is the measured temperature in a fixed zone of the reactor. It is then used to regulate the temperature throughout the reactor to a ball with radius $\lambda $ (arbitrarily small) centred at the fixed temperature profile.

Publisher

Oxford University Press (OUP)

Subject

Applied Mathematics,Control and Optimization,Control and Systems Engineering

Reference19 articles.

1. Optimal LQ-feedback regulation of a nonisothermal plug flow reactor model by spectral factorization;Aksikas;IEEE Trans. Aut. Control,2007

2. Global input constrained adaptative $\lambda $-tracking with application to a nonlinear distributed parameter exothermic chemical reaction models in tubular reactor;Beniich,2006

3. Input constrained adaptive tracking for a nonlinear distributed parameter tubular reactor;Beniich;Internat. J. Adapt. Control Signal Process.,2010

4. Global adaptive $\lambda $ tracking of a temperature profile in tubulr reactor;Beniich;ESAIM: Proceeding and Surveys,2015

5. Adaptive local tracking of a temperature profile in tubular reactor with partial measurements;Beniich;J. Process Control,2017

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