Modeling and control of in-situ decontamination of large water resources
ESAIM. Proceedings, Tome 57 (2017), pp. 70-85.

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We address the problem of the optimal control of in situ decontamination of water resources. We review several modeling, simulation and optimization techniques for this problem and their results. We show the benefit of combining tools from finite dimensional optimal control theory and numerical simulations of hydrodynamics equations, for providing simple and efficient feedback strategies.
DOI : 10.1051/proc/201657070

Pedro Gajardo 1 ; Jérôme Harmand 2 ; Héctor Ramirez 3 ; Alain Rapaport 4 ; Victor Riquelme 3 ; Antoine Rousseau 5

1 Departamento de Matemática, Universidad Técnica Federico Santa María, Valparaíso, Chile;
2 LBE, INRA, 11100, Narbonne, France;
3 Departamento de Ingeniería Matemática and Centro de Modelamiento Matemático (UMI 2807, CNRS), Universidad de Chile. Casilla 170-3 Santiago 3, Chile;
4 UMR INRA/SupAgro 729 ’MISTEA’, Montpellier, France;
5 Inria team LEMON, Inria Chile and UMR 5149 France;
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     author = {Pedro Gajardo and J\'er\^ome Harmand and H\'ector Ramirez and Alain Rapaport and Victor Riquelme and Antoine Rousseau},
     title = {Modeling and control of in-situ decontamination of large water resources},
     journal = {ESAIM. Proceedings},
     pages = {70--85},
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     year = {2017},
     doi = {10.1051/proc/201657070},
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     url = {http://geodesic.mathdoc.fr/articles/10.1051/proc/201657070/}
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Pedro Gajardo; Jérôme Harmand; Héctor Ramirez; Alain Rapaport; Victor Riquelme; Antoine Rousseau. Modeling and control of in-situ decontamination of large water resources. ESAIM. Proceedings, Tome 57 (2017), pp. 70-85. doi : 10.1051/proc/201657070. http://geodesic.mathdoc.fr/articles/10.1051/proc/201657070/

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