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Multi-objective optimal control of dynamic bioprocesses using ACADO Toolkit
Author(s) -
Filip Logist,
Dries Telen,
Boris Houska,
Moritz Diehl,
Jan Van Impe
Publication year - 2012
Publication title -
bioprocess and biosystems engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.628
H-Index - 68
eISSN - 1615-7605
pISSN - 1615-7591
DOI - 10.1007/s00449-012-0770-9
Subject(s) - bioprocess , mathematical optimization , intersection (aeronautics) , pareto principle , set (abstract data type) , decision maker , computer science , constraint (computer aided design) , industrial and production engineering , multi objective optimization , pareto optimal , operations research , mathematics , engineering , programming language , aerospace engineering , geometry , electrical engineering , chemical engineering
The optimal design and operation of dynamic bioprocesses gives in practice often rise to optimisation problems with multiple and conflicting objectives. As a result typically not a single optimal solution but a set of Pareto optimal solutions exist. From this set of Pareto optimal solutions, one has to be chosen by the decision maker. Hence, efficient approaches are required for a fast and accurate generation of the Pareto set such that the decision maker can easily and systematically evaluate optimal alternatives. In the current paper the multi-objective optimisation of several dynamic bioprocess examples is performed using the freely available ACADO Multi-Objective Toolkit ( http://www.acadotoolkit.org ). This toolkit integrates efficient multiple objective scalarisation strategies (e.g., Normal Boundary Intersection and (Enhanced) Normalised Normal Constraint) with fast deterministic approaches for dynamic optimisation (e.g., single and multiple shooting). It has been found that the toolkit is able to efficiently and accurately produce the Pareto sets for all bioprocess examples. The resulting Pareto sets are added as supplementary material to this paper.

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