DocumentCode :
2831373
Title :
A graph-based method to introduce approximations in kinetic networks
Author :
Nauta, Maarten ; Weiland, Siep ; Backx, Ton
Author_Institution :
Eindhoven Univ. of Technol., Eindhoven
fYear :
2007
fDate :
12-14 Dec. 2007
Firstpage :
3345
Lastpage :
3350
Abstract :
Simplification of models of complex kinetic networks is essential for purposes of optimization and control. A common technique for complexity reduction is to use equilibrium assumptions for reactions and species to eliminate species from the network. For models of larger kinetic networks and multiple equilibrium relations, the manifold that characterizes the response of the model subject to the equilibrium relations can only be approximated. We introduce a greedy-type algorithm to select a set of equilibrium relations in such a manner this manifold can be expressed analytically. This algorithm uses the interaction graph that represents the dependencies between equilibrium relations. If the equilibrium relations are selected such that the interdependency is minimized, analytical expressions for decoupled groups of equilibrium relations can be found. An objective function characterizes the trade-off between the order, the accuracy and the complexity of the reduced model. This objective function is maximized through the selection of equilibrium relations.
Keywords :
approximation theory; graph theory; greedy algorithms; kinetic theory; optimisation; approximations; complex kinetic networks; complexity reduction; graph-based method; greedy-type algorithm; Algorithm design and analysis; Application software; Atmospheric modeling; Biological system modeling; Biological systems; Combustion; Equations; Kinetic theory; Optimization methods; USA Councils;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control, 2007 46th IEEE Conference on
Conference_Location :
New Orleans, LA
ISSN :
0191-2216
Print_ISBN :
978-1-4244-1497-0
Electronic_ISBN :
0191-2216
Type :
conf
DOI :
10.1109/CDC.2007.4434990
Filename :
4434990
Link To Document :
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