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  4. Multiobjective model predictive control of an industrial laundry
 
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2016
Journal Article
Title

Multiobjective model predictive control of an industrial laundry

Abstract
In a wide range of applications, it is desirable to optimally control a system with respect to concurrent, potentially competing goals. This gives rise to a multiobjective optimal control problem where, instead of computing a single optimal solution, the set of optimal compromises, the so-called Pareto set, has to be approximated. When it is not possible to compute the entire control trajectory in advance, for instance due to uncertainties or unforeseeable events, model predictive control methods can be applied to control the system during operation in real time. In this article, we present an algorithm for the solution of multiobjective model predictive control problems. In an offline scenario, it can be used to compute the entire set of optimal compromises whereas in a real time scenario, one optimal compromise is computed according to an operator's preference. The results are illustrated using the example of an industrial laundry. A logistics model of the laundry is developed and then utilized in the optimization routine. Results are presented for an offline as well as an online scenario.
Author(s)
Peitz, S.
Gräler, M.
Henke, C.
Hessel-von Molo, M.
Dellnitz, M.
Trächtler, A.
Journal
Procedia Technology  
Conference
International Conference on System-Integrated Intelligence (SysInt) 2016  
Open Access
DOI
10.1016/j.protcy.2016.08.061
Additional link
Full text
Language
English
Fraunhofer-Institut für Entwurfstechnik Mechatronik IEM  
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