DocumentCode :
184026
Title :
Passivity based control of a chemical process in isothermal reactors: Application to enzymatic hydrolysis of cellulose
Author :
Makkar, Mohit ; Dieulot, Jean-Yves
Author_Institution :
LAGIS, Univ. de Lille 1, Villeneuve d´Ascq, France
fYear :
2014
fDate :
8-10 Oct. 2014
Firstpage :
753
Lastpage :
758
Abstract :
This paper is exploring the energetic insight in both Mathematical model and Control to simplify the complex character of chemical reactions taking place in reactors. Special interest has been shown to processes at constant temperature and pressure. The Port-Hamiltonian model of network of chemical reactions both in the concentration space and the reaction space followed by the Interconnection and Damping Assignment-Passivity Based Control (IDA-PBC) for open chemical systems is formulated here. Futhermore, application to bioprocess in batch and continuous modes has opened the energetic way of looking in to the modeling and control of such reactions. The technique is applied to model and simulate the control of enzymatic hydrolisis of cellulose in a continuous reactor. Special care has been taken to not look loosely on the physical coherence of a system, hence this paper can be an inspiring alternative to pseudo formulations and artificial control in the domain of biochemical engineering.
Keywords :
batch processing (industrial); chemical engineering; chemical reactions; chemical reactors; damping; enzymes; interconnected systems; IDA-PBC; Port-Hamiltonian model; artificial control; batch modes; biochemical engineering domain; bioprocess; chemical process; chemical reactions; chemical reactors; concentration space; constant pressure process; constant temperature process; continuous modes; continuous reactor; energetics; enzymatic cellulose hydrolisis control; interconnection-and-damping assignment-passivity based control; isothermal reactors; mathematical model; open chemical systems; passivity based control; physical coherence; pseudoformulations; reaction space; Biochemistry; Chemicals; Entropy; Inductors; Kinetic theory; Mathematical model; Symmetric matrices; Entropy; Gibbs free energy; IDA-PBC; Michaelis-Menten kinetics; Port-Hamiltonian;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Applications (CCA), 2014 IEEE Conference on
Conference_Location :
Juan Les Antibes
Type :
conf
DOI :
10.1109/CCA.2014.6981431
Filename :
6981431
Link To Document :
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